265 posts, March 2014, and some other publications on Ecology, environment, water, ecotoxicology, environmental science, hazard assessment, bioassays;
The list of 265 posts with links is at the end of this file.
http://5bio5.blogspot.com/2014/08/265-posts-march-2014-and-some-other.html
**
recently.
4 Russian ecology articles that were cited in the Chinese scientific paper recently. Citation in China.
http://5bio5.blogspot.com/2014/08/4-russian-ecology-articles-were-cited.html

These Russian ecology articles were cited:
2005a. On some issues of maintaining water quality and self-purification. Water Resources, 32 (3), 305- 313.
Full text: https://www.researchgate.net/publication/215586879_ ;
2005b. On the multifunctional role of the biota in the self-purification of aquatic ecosystems. Russian Journal of Ecology, 36 (6): 414-420.
Full text: https://www.researchgate.net/publication/227317445_ ;
2010. Biocontrol of Water Quality: Multifunctional Role of Biota in Water Self-Purification. Russian Journal of General Chemistry, 80 (13): 2754-2761.
Full text: https://www.researchgate.net/publication/227303635_
1999. The most important components of self-purification of ecosystems and its possible impairment as a result of chemical pollution. Vestnik Moskovskogo Universiteta Seriya XVI Biologiya, 1: 24-32.
These articles were cited
in the scientific publication:
J. Ocean Univ. China (Oceanic and Coastal Sea Research) 2013, 12 (1): 70-76;
Environmental Capacity of Petroleum Hydrocarbon Pollutants in Jiaozhou Bay, China: Modeling and Calculation;
LI Keqiang 1), 2),*, SU Ying 1), YING Jun 3), WANG Xiulin 1), and MU Jinbo 4)
1) College of Chemistry and Chemical Engineering, Ocean University of China, Qingdao 266100, P. R. China;
2) Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education, Ocean University of China, Qingdao 266100, P. R. China;
3) Shandong Entry-Exit Inspection and Quarantine Bureau, Qingdao 266001, P. R. China ;
4) Shandong Academy of Environmental Science, Jinan 250013, P. R. China ;
AUG 25
34-paper collection on Environmental sciences, ecology, biology at PubMed, 34 innovative papers,
34-paper collection on
Environmental sciences, ecology, biology at PubMed, 34 innovative papers, selected , updated August 25, 2014:
http://5bio5.blogspot.com/2014/08/34-paper-collection-on-environmental.html
http://5bio5.blogspot.com/2013/09/environmental-sciences-biosciences-at.html
also see:
http://5bio5.blogspot.com/2012/09/environmental-and-biosciences-at-pubmed.html
All these articles are at PubMed. However, PubMed does not show the abstracts of all of these papers. The abstracts of these papers are presented here, see them below.
Unique addition of what was missed at PubMed: a series of abstracts of the relevant publications.
What was updated: A series of useful abstracts were added.
Almost all of these papers -full texts - are available at ReseachGate.
The List of the papers (environmental science, water science, ecotoxicology, water quality improvement) authored and coauthored by Moscow State University, indexed at PubMed, selected. Also indexed by Web of Science, and Scopus. All papers contain new facts and fundamental conceptual innovations.
Updated: September 16, 2013:
KEY WORDS: priorities, fundamentals, ecology, environmental, science, life, bioassay, biomedical, sciences, geosciences, ecosystems, biosphere, organisms, levels, life systems, man-made impacts, anthropogenic, effects, terrestrial, aquatic, research, topics, hazards, pollutants, xenobiotics, aquatic, water, purification, quality, filtration, bivalves, surfactants, detergents, biosphere, SDS, sodium dodecylsulfate; TX100, Triton X-100; TDTMA, tetradecyltrimethylammonium bromide; functioning, function, molluscs, mollusks, mussels, oysters, Unio, tumidus, U. pictorum, Mytilus, galloprovincialis, edulis, Crassostrea gigas, ecological, hazard, sublethal, concentrations, synthetic, self-purification, bioassay, innovation, theory, new, conceptualization, Cu, Zn, Cd, Pb, experimental, systems, Ceratophyllum demersum, phytoremediation, innovations, hot topics,
1. The aquatic macrophyte Ceratophyllum demersum immobilizes Au nanoparticles after their addition to water.
Ostroumov S.A., Kolesov G.M.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2010 Mar-Apr; 431: 124-127.
Affiliation: M.V.Lomonosov Moscow State University, V.I.Vernadsky Institute of Geochemistry and Analytical Chemistry, Russian Academy of Sciences, Moscow, Russian Federation;
PMID: 20506851 [PubMed - indexed for MEDLINE] [© Pleiades Publishing, Ltd., ISSN 0012-4966].
DOI: 10.1134/S0012496610020158. http://scipeople.com/publication/69766/ .
Full text see online free: http://www.scribd.com/doc/45579375;
Abstract: This is the first time it was shown that the nanoparticles of gold (Au) in substantial amount bind to the living biomass of the aquatic macrophyte, Ceratophyllum demersum. The concentrations of Au were measured in the samples of the phytomass using neutron activation analysis (NAA). As a result of the binding and/or immobilization of the nanoparticles, the amount of Au in the samples of the phytomass increased manifold (by a factor of 430) above the background level of gold in the plant tissues. The increase was by two orders of magnitude. The new data added some new information to the modern vision of the multifunctional role of the biota in the migration of elements in aquatic ecosystems. Also, the result added new information to the studies of interactions of Au with organisms that may contribute to new biotechnologies.
Full text: http://www.scribd.com/doc/45579375;
The article is indexed by PubMed. It is on SpringerLink. www.springerlink.com/index/J487667871W02H28.pdf; http://www.springerlink.com/content/j487667871w02h28/;
DOI: 10.1134/S0012496610020158;
ISSN 0012-4966,
-*-*-*-*-
2. Decreasing the measurable concentrations of Cu, Zn, Cd, and Pb in the water of the experimental systems containing Ceratophyllum demersum: the phytoremediation potential.
Ostroumov S.A., Shestakova T.V.
Doklady Biological Sciences (Dokl. Biol. Sci.) 2009 Sep-Oct; 428:444-447.
PMID: 19994786 [PubMed - indexed for MEDLINE]. Abstract: Discovery of the fact that aquatic plants C. demersum induced a removal of the heavy metals Cu, Zn, Cd, and Pb from water. Using the method of inversion voltamperometry, the concentrations of the heavy metals Cu, Zn, Cd, Pb were measured in the water of the experimental microcosms. Aquatic macrophytes Ceratophyllum demersum were incubated in some of the microcosms. The measured concentrations of all four metals decreased in the microcosms with macrophytes much faster than in the control microcosms without any macrophytes.
[publisher: MAIK Nauka/Interperiodica] DOI: 10.1134/S0012496609050159; www.springerlink.com/index/ML1062K7271L318N.pdf; https://www.researchgate.net/file.FileLoader.html?key=8fd8998627b86102db72c9b237c25054; http://sites.google.com/site/9dbs444/decreasing-the-measurable-concentrations-of-cu-zn-cd-and-pb-in-the-water; PMID: 19994786 [PubMed - indexed for MEDLINE];
DOI: 10.1134/S0012496609050159;
Full text online free:
https://sites.google.com/site/9dbs444/decreasing-the-measurable-concentrations-of-cu-zn-cd-and-pb-in-the-water
-*-*-*-*-
3. Aquatic ecosystem as a bioreactor: water purification and some other functions.
Ostroumov S.A.
Rivista di Biologia / Biology Forum ( Riv. Biol.), 2004 Jan-Apr; 97(1):67-78.
PMID: 15648211 [PubMed - indexed for MEDLINE]. http://www.ncbi.nlm.nih.gov/pubmed/15648211; http://scipeople.com/uploads/materials/4389/4Rivista.Biologia97p39Aquatic..Bioreactor.RTF ; http://direct.bl.uk/bld/PlaceOrder.do?UIN=159337168&ETOC=RN&from=searchengine; Publisher ANICIA S.R.L.; Country of publication Italy; ISSN 0035-6050;
Full text: http://www.scribd.com/doc/48097462/-4Rivista-Biologia97p39Aquatic-Bioreactor;
Abstract: Ostroumov S. A. Aquatic ecosystem as a bioreactor: water purification and some other functions. - Rivista di Biologia / Biology Forum. 2004. vol. 97. p. 39-50. The author formulated a new fundamental concept of aquatic ecosystem as a bioreactor that carries out the function of water purification in natural water bodies and streams. According to his new concept, the ecosystem as a bioreactor has the following characteristic attributes: (1) it is a large-scale (large-volume) bioreactor; (2) it is a diversified (in terms of the number of taxa and the scope of functional activities) bioreactor; (3) it possesses a broad range of biocatalytic (chemical-transforming and degrading) capabilities. New experimental data on xenobiotics-induced inhibition of the functioning of the molluscs Unio tumidus, U. pictorum, M. galloprovincialis and Limnaea stagnalis emphasize the potential ecological hazard from sublethal concentrations of pollutants (including those exemplified by synthetic surfactants and detergents).
-*-*-*-*-
4. On the biotic self-purification of aquatic ecosystems: elements of the theory.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2004 May-Jun; 396: 206-211. Opinion paper.
PMID: 15354827 [PubMed - indexed for MEDLINE];
http://www.scribd.com/doc/48099028/4DBS-On-the-Biotic-Self-Purification-fulltext;
ABSTRACT: Ostroumov S.A. On the biotic self-purification of aquatic ecosystems: elements of the theory. - Doklady Biological Sciences, V. 396, 2004, p. 206–211. (Translated from DAN, V.396, No.1, 2004, p.136–141). Fundamental elements are formulated for a new qualitative theory of the polyfunctional role of the biota in improving water quality and doing self-purification of water in aquatic ecosystems. The elements of the theory covers the following: sources of energy for the mechanisms of water self-purification; the main functional blocks of the system of self-purification; the system of the main processes that are involved; the analysis of the degree of participation of the main large taxa; the reliability of the mechanisms of water self-purification; regulation of the processes; the response of the mechanisms of water self-purification towards the external influences (man-made impacts, pollution); and some conclusions relevant to the practice of environment protection. In support of the theory, the results are given of the author's experiments which demonstrated the ability of some pollutants (surfactants, detergents, and some others) to inhibit the water filtration activity of marine filter-feeders, namely, the bivalve mollusks Mytilus galloprovincialis, Mytilus edulis, and Crassostrea gigas. ISSN 0012-4966 (Print) 1608-3105 (Online). Distributed by Springer, orderdept@springer-sbm.com. DOI: 10.1023/B:DOBS.0000033278.12858.12; http://scipeople.ru/users/2943391/; https://www.researchgate.net/file.FileLoader.html?key=60f338228d6f3c5114d223ab81e15d3b; http://www.springerlink.com/content/t0nv6rk522230175/;
-*-*-*-*-
5. Medium-term and long-term priorities in ecological studies.
Ostroumov SA, Dodson SI, Hamilton D, Peterson SA, Wetzel RG.
Rivista di Biologia / Biology Forum ( Riv. Biol.), 2003 May-Aug; 96(2): 327-332. www.ncbi.nlm.nih.gov/pubmed/14595906 ;
PMID: 14595906 [PubMed - indexed for MEDLINE]; Abstracts in Eng. and Italian (p. 332). Bibliogr. 20 ref. Full text: http://www.scribd.com/doc/48100827/3Rivista-Bio-96-Priorities-2;
http://scipeople.com/uploads/materials/4389/3RivistaBio96Priorities2.rtf;
ABSTRACT: Ostroumov S.A., Dodson S., Hamilton D., Peterson S., Wetzel R.G. Medium-term and long-term priorities in ecological studies // Rivista di Biologia / Biology Forum. 2003. 96: 327-332. Abstracts in Eng. and Italian (p. 332). Bibliogr. 20 ref. PMID: 14595906 [PubMed - indexed for MEDLINE];
Research priorities in ecology and environmental sciences for the future are formulated. The priorities for both fundamental and applied ecology are proposed. The list of priorities includes 50 items. The priorities are relevant to terrestrial, aquatic, and general ecology. The list of priorities is helpful when grant proposals are being prepared, evaluated, and selected for funding.
KEY WORDS: priorities, fundamentals, ecology, environmental sciences, biospheric sciences, life and biomedical sciences, geosciences, ecosystems, biosphere, organisms, levels of life systems, man-made impacts, anthropogenic effects, terrestrial and aquatic, research topics.
-*-*-*-*-
6. Effect of a cationic amphiphilic compound on rotifers.
Ostroumov SA, Walz N, Rusche R.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2003 May-Jun;390: 252-255.
PMID: 12940156 [PubMed - indexed for MEDLINE]
Ostroumov S. A., Walz N., Rusche R. Effect of a cationic amphiphilic compound on rotifers. - Doklady Biological Sciences. 2003. Vol. 390. p.252-255, Full text online free: http://www.scribd.com/doc/52634169/; https://www.researchgate.net/file.FileLoader.html?key=74bb403b372f3adc298aacbef568b0ee; [ISSN 0012-4966 (Print) 1608-3105 (Online)]. Welfare of the biosphere depends on filter-feeders that contribute to making water clean and transparent. Important new facts on the hazard of man-made damage to the beneficial function of rotifers, which are the plankton filter-feeders, were discovered. In this paper, it is the first time that it was found that a chemical pollutant inhibits filtration activity of rotifers. As a chemical pollutant, a representative of synthetic surfactants was studied. The study featured an advanced technique that allows precise measurement of the filtration rate on the basis of measuring the rate of removal of algal cells from water by rotifers. The experiment was run in the following system: the two-species culture of rotifers (Brachionus calyciflorus) and algae (Nannochloropsis limnetica; Eustigmatophyceae) was studied in a two-stage turbidostat (temperature 20 °C) as described by Walz et al. (1997) with some modifications. Dilution rate (the higher the filtration activity of rotifers, the higher the dilution rate) was monitored in the turbidostat. As a model of a chemical pollutant, the cationic surfactant tetradecyltrimethylammonium bromide (TDTMA) was added to the water of the turbidostat. On the basis of previous studies (Ostroumov, 2000), the concentration of TDTMA was 0.5 mg/L. Dynamics of the dilution rate before and after addition of the chemical was monitored. The dilution rate decreased after the addition of TDTMA. Also, a comparison of the dilution rate in the experimental turbidostat (with the surfactant) with the control turbidostat (without the chemical) was made. Under conditions of the addition of TDTMA the dilution rate was lower than in the control turbidostat. The lower dilution rate means a lower filtration and grazing activity of the population of the rotifers. The results are in accord with the hypothesis that the cationic surfactant TDTMA can inhibit the filtering activity of populations of rotifers. The results support the conclusions of previous publications, in which analogous inhibitory effects of surfactants on filtration rate by another major group of filter-feeders (the bottom-dwelling bivalve mollusks) were discovered (Doklady of the Russian Academy of Sciences, 2001, 380, pp. 847-849; 2002, vol. 382, pp.138-141). www.springerlink.com/index/R3126462K122M13T.pdf; DOI 10.1023/A:1024417903077;
Key words: effects, cationic amphiphilic substance, rotifers, two-species culture, Brachionus calyciflorus, algae Nannochloropsis limnetica, turbidostat, filtration, cationic surfactant, tetradecyltrimethylammonium bromide, TDTMA, grazing, filtering, activity, populations, filter-feeders, chemical, pollution, pollutants, sublethal concentration, trophic interactions, man-made effects, anthropogenic, clearance rate
www.springerlink.com/index/R3126462K122M13T.pdf
http://www.citeulike.org/user/ATP/article/10054261
DOI 10.1023/A:1024417903077;
-*-*-*-*-
7. The synecological approach to the problem of eutrophication.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 Nov-Dec;381:559-562.
PMID: 12918433 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/50524170
http://www.scribd.com/doc/49065550/;
DOI: 10.1023/A:1013378505630;
Abstract (in addition to PubMed): the author suggests a new component of the measures against eutrophication: reducing the input of the pollutants that weaken the potential of the filter-feeders for removing algae from water. A new approach to combat eutrophication. Among new facts: the liquid detergent Fairy 2 mg/L inhibited filtration by bivalve filter-feeders mussels Mytilus galloprovincialis within 2-23 min after addition
-*-*-*-*-
8. The hazard of a two-level synergism of synecological summation of anthropogenic effects.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 Sep-Oct;380:499-501.
PMID: 12918416 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/50526301
http://www.scribd.com/doc/49065634/
DOI: 10.1023/A:1012348127085;
Abstract (in addition to PubMed): The author identified a new type of ecological hazard of anthropogenic impact (using chemical pollution as an example), which he proposed to term “synecological summation” or “synergistic summation” of anthropogenic effects on organisms of two adjacent trophic levels. In the paper, the hazard was found that even relatively mild influences on organisms of two adjacent trophic levels may eventually produce a synergistic, pronounced and definitely undesirable effect that will lead to an abnormal increase in the abundance of organisms of one of the trophic levels. The concrete examples of synergism were found when anthropogenic impacts affected organisms of two adjacent trophic levels (bivalves and algae). Bioeffects were described of the action of the synthetic detergent Vesna (1 mg/l) on oysters Crassostrea gigas, the detergent IXI (10 mg/l) on mussels Mytilus galloprovincialis, and the detergent Tide-Lemon (50 mg/l) on M. galloprovincialis. The hazard of simultaneous influence of contamination of environment (e.g., by detergents) on organisms of the two trophic levels may occur when the polluting chemicals produce effects on algae and bivalves that are filter-feeders.
-*-*-*-*-
9. Responses of Unio tumidus to mixed chemical preparations and the hazard of synecological summation of anthropogenic effects.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 Sep-Oct; 380: 492-495.
PMID: 12918414 [PubMed - indexed for MEDLINE]
www.scribd.com/doc/49065621
DOI: 10.1023/A:1012344026176;
Abstract (in addition to PubMed): Effects of commercial detergents, which are chemical mixtures, on bivalves (detergent OMO, freshwater mussels Unio tumidus) were studied. Detergents exert two types of hazardous effects on organisms and ecosystems: the phosphorus-induced stimulation of phytoplankton growth and surfactant-induced inhibition of filter-feeders. Because filter-feeders are an effective natural factor of control of unicellular plankton populations, the two types of the detergent-induced effects on ecosystem facilitate the growth of phytoplankton populations. Therefore, these effects sum together, thereby increasing the hazard of the man-made impact on the ecosystem. The results contribute to a better understanding of the potential ecological danger of pollutants for integral functions of ecosystems. It is the synecological summation of the effects of anthropogenic factors on plankton populations and filter-feeders that is of particular concern. The interaction between populations of plankton organisms and filter-feeders that feed on plankton should be taken into consideration in the studies on the ecological effects of synthetic detergents on these populations. Situations of man-made impact should be analyzed based on the synecological approach to the problem.
-*-*-*-*-
10. Pellets of some mollusks in the biogeochemical flows of C, N, P, Si, and Al.
Ostroumov S.A., Kolesnikov M.P.
Doklady Biological Sciences (Dokl. Biol. Sci.) 2001 Jul-Aug; 379: 378-381.
PMID: 12918380 [PubMed - indexed for MEDLINE]
Pellets of some mollusks in the biogeochemical flows of C, N, P, Si, and Al. — Doklady Biological Sciences, 2001. Vol. 379, P. 378-381. Bibliogr. 12 refs. [Authors: S.A.Ostroumov, Kolesnikov M.P.] (Translated from: DAN 2001. Vol. 379. No. 3. P. 426-429). ISSN 0012-4966. Distributed by Springer, orderdept@springer-sbm.com.
DOI 10.1023/A:1011620817764;
http://sites.google.com/site/2001dbs379p378pellets
http://www.scribd.com/doc/45911730
http://www.researchgate.net/publication/10614352_Pellets_of_some_mollusks_in_the_biogeochemical_flows_of_C_N_P_Si_and_Al
ABSTRACT: The author obtained new data on coupling of geochemical and ecological (hydrobiological) processes. The role of the freshwater mollusks Lymnaea stagnalis in the flows of chemical elements in the biosphere was studied by detecting the elemental composition and amount of pellets produced by the mollusks. For the first time, the following was quantitatively studied: the elemental composition (C, N, P, Si, Al) of the pellets formed by the mollusks Lymnaea stagnalis feeding on the leaves of the higher plants Nuphar lutea and Taraxacum officinale; the amount (wet weight, dry weight) of the pellets formed by L. stagnalis feeding on the leaves of N. lutea and T. officinale; the transfer of matter and chemical elements (C, N, P, Si, Al) with the pellets of freshwater bivalves (unionids Unio sp., etc.) per unit biomass of the mollusks and per unit area of the ecosystem of the river; the transfer of matter and chemical elements (C, N, P, Si, Al) with the pellets of L. stagnalis per unit biomass of mollusks and per unit area of the ecosystem of the pond. The synthetic surfactants ТDТМА 2 mg/l, SDS 1-2 mg/l, the detergent Tide-Lemon 75 mg/l inhibited the trophic activity of L. stagnalis. Percents of food assimilability of taxons of invertebrates, from Rotatoria (48-80) to Diptera (1-31)].
-------------------Full text see: http://www.scribd.com/doc/45911730;
http://sites.google.com/site/2001dbs379p378pellets/;
-*-*-*-*-
11. Imbalance of factors providing control of unicellular plankton populations exposed to anthropogenic impact.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 Jul-Aug;379:341-343.
PMID: 12918370 [PubMed - indexed for MEDLINE];
Full text: https://sites.google.com/site/1dbs379p341imbalance/
www.scribd.com/doc/49065596
DOI: 10.1023/A:1011600213221;
Abstract (in addition to PubMed):
The paper presents and analyzes new experimental data on the effects of chemical pollution of aquatic medium on the abundance of unicellular plankton organisms. The following 6 types of effects of filter-feeders and chemical pollutants [synthetic surfactants and detergents (mixtures)] on phytoplankton organisms were found (examples were given in this paper in Tab.2): (1) Inhibition of growth (and abundance); (2) Growth stimulation in the presence of surfactants and detergents; (3) Decrease in abundance as a result of elimination of plankton cells from water by the freshwater mollusks Unio tumidus and rotifers; (4) Abundance decrease as a result of water filtration by the marine mollusks Mytilus edulis, M. galloprovincialis, and Crassostrea gigas; (5) Decrease in the efficiency of cell elimination from water caused by the synthetic surfactant, Triton X-100 (TX-100), namely, the TX-100-induced (5 mg/l) inhibition of the filtration activity of the freshwater mollusks U. tumidus; (6) Decrease in the efficiency of cell elimination from water as a result of inhibition of the filtration activity of the marine mollusks Mytilus galloprovincialis and Crassostrea gigas induced by surfactants and Avon Herbal Care (hair shampoo). A new parameter and formula were suggested: the efficiency of cell elimination from water, ECE. The following maximum values of ECE were found (at the concentrations of the chemical, mg/l, in brackets): (1) Detergent OMO, Unio tumidus, 186.7 (50); (2) Detergent Losk-Universal, Mytilus galloprovincialis, 551.7 (7); (3) Detergent Tide-Lemon, Mytilus galloprovincialis, 206.9 (50); (4) Detergent IXI, M. galloprovincialis, 157.8 (10); (5) Detergent Deni-Automat, Crassostrea gigas, 10 800.0 (30); (6) Detergent Lanza, Crassostrea gigas, 261.7 (20); (7) Detergent Vesna-Delikat, Crassostrea gigas, 200.0 (1); The tables in the paper: Factors of regulation of unicellular plankton abundance (Tab.1); effects of surfactants and detergents on phytoplankton abundance (Tab.2); 7 detergents inhibit filtration of 3 species of marine and freshwater mollusks (Tab.3); Mytilus galloprovincialis eliminates from water the cells of Saccharomyces cerevisiae (these cells were used as a convenient model for particles suspended in water) and algae Pavlova lutheri = M. lutheri as a result of filtration (comparing the 2 processes at the same time, Tab. 4).
The results obtained in this work demonstrated and proved that certain pollutants (exemplified by synthetic surfactants and detergents) might cause a substantial imbalance of the factors controlling unicellular plankton populations. Direct and indirect (mediated by organisms-consumers) effects of certain surfactant-containing mixtures on unicellular plankton could sum with each other, giving rise to mutual amplification. This may cause a complete imbalance of the system. The conclusions made in this work may be applied to unicellular plankton of both marine and freshwater ecosystems, including ecosystems subjected to eutrophication. The results contribute to issues of environmental safety and resource use sustainability.
-*-*-*-*-
12. Effect of amphiphilic chemicals on filter-feeding marine organisms.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 May-Jun;378:248-250.
PMID: 12918342 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/49065593
http://www.scribd.com/doc/59417067
Abstract (in addition to PubMed):
For the first time, marine bivalve mollusks, the oysters Crassostrea gigas were used as the test-organisms in bioassay of some amphiphilic chemicals, namely, synthetic surfactants and detergents. This is the first paper to discover and report negative effects of synthetic surfactants and chemical mixtures (detergents) on water filtering activity of Crassostrea gigas. As a result, under the effect of the surfactants and detergents the removal of suspended particles from water by the oysters decreased. The amphiphilic chemicals (synthetic surfactants and detergents) are a new type of chemical pollutants that pollute the aquatic environment including oceans, seas and estuaries. The new data discovered a novel type of anthropogenic hazard to aquaculture of shellfish (aqua-farming, mariculture of oysters).
-*-*-*-*-
13. Anthropogenic effects on the biota: towards a new system of principles and criteria for analysis of ecological hazards.
Ostroumov S.A.
Rivista di Biologia / Biology Forum ( Riv. Biol.), 2003 Jan-Apr;96(1):159-169. Review.
PMID: 12852181 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/52636721
http://www.scribd.com/doc/52636721/3-System-of-Criteria;
Abstract (in addition to PubMed):
The currently accepted system of criteria for evaluating environmental and ecological hazards of man-made chemicals (pollutants) is vulnerable to criticism. In this paper, a new concept of the system of approaches towards criteria for evaluating the ecological hazard from man-made impact is proposed. It is suggested to assess the man-made impacts (including effects of pollutants and xenobiotics) on the biota according to the following four levels of disturbance in biological and ecological systems: (1) the level of individual responses; (2) the level of aggregated responses of groups of organisms; (3) the level of stability and integrity of the ecosystem; (4) the level of contributions of the ecosystem to biospheric processes. On the basis of the author’s experimental studies, an example is given of how to apply the proposed approach and the system of criteria to the analysis of concrete experimental data. To exemplify the efficiency of the proposed approach, it is shown how to use it to analyze new data on effects of a synthetic surfactant on water filtering by bivalves. It is concluded that the proposed approach will be helpful in better assessing environmental and ecological hazards from anthropogenic effects on the biota, including effects of man-made chemicals polluting ecosystems. New facts were discovered on effects of synthetic chemicals on marine organisms. The synthetic surfactant Triton X-100 (ТХ100) 0.5 mg/L inhibited the filtration of water (90 min, 16°С) by the marine bivalve mollusks mussels Mytilus edulis. As a result, this chemical inhibited the removal by the mussels of the cells of the algae Isochrysis galbana out of water. The abundance of unfiltered cells that stayed in water was twice as much than in the control system without TX100.
-*-*-*-*-
14. Identification of a new type of ecological hazard of chemicals: inhibition of processes of ecological remediation.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Jul-Aug; 385: 377-379.
Ostroumov S.A. Identification of a new type of ecological hazard of chemicals: inhibition of processes of ecological remediation. Doklady Biological Sciences. 2002. 385: 377-379. In Eng.; ISSN 0012-4966.
PMID: 12469618 [PubMed - indexed for MEDLINE]
DOI 10.1023/A:1019929305267; https://www.researchgate.net/file.FileLoader.html?key=8408a7cfaa984764b812ce79c77007f2; http://scipeople.ru/users/2943391/;
Full text see online free: http://www.scribd.com/doc/45911150;
Abstract (in addition to PubMed):
The author discovered and characterized a new type of environmental hazard of chemical pollution of water, which involves inhibition of important processes of ecological remediation of ecosystems (namely, the inhibition of water filtration by aquatic bivalves). The experiments were performed using the bivalve mollusks, oysters Crassostrea gigas, and the cell suspension of Saccharomyces cerevisiae (these cells were used as a convenient model of particles suspended in water). In the experiments, a laundry detergent (exemplified by the detergent Lanza-Automat) inhibited water filtration by the oysters C. gigas. As a result, the removal of the cells (S. cerevisiae) from water decreased. This demonstrated a new type of ecological hazard caused by water pollution with a chemical pollutant (detergent) at sublethal concentrations. This hazard is associated with the fact that chemical pollution of water causes a pronounced inhibition of the physiological activity of filter-feeders, thereby inhibiting the important ecological process of water filtration. This ecological process contributes significantly to improving water quality, water purification and the related remediation of aquatic ecosystems (their ecological repair).
[The innovative results presented in the paper included the following: a new parameter quantified: Effect on elimination efficiency (EEE); a new concept of ecological remediation as ecological repair; new data on the inhibitory effects of the detergent Lanza-Automat 20 mg/L on water filtration by the oysters Crassostrea gigas and removal of the cells of S. cerevisiae from water (Tabl. 1); a summary table of the effects of cationic, anionic, non-ionic surfactants, pesticides, potassium bichromate, on marine and freshwater bivalves, larvae of Ephemeroptera, rotifers, and Cladocera – mainly the data of the author, plus some data from literature (Tabl. 2). The author identified "a new type of ecological hazard caused by water pollution. This hazard is associated with the fact that chemical pollution of water causes inhibition of the physiological activity of hydrobionts, thereby inhibiting the ecological processes mediated by the hydrobionts. These processes contribute significantly to water purification and the related remediation of aquatic ecosystems (their ecological repair)" (p. 379)].
-*-*-*-*-
15. System of principles for conservation of the biogeocenotic function and the biodiversity of filter-feeders.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Mar-Apr; 383: 147-150.
PMID: 12053567 [PubMed - indexed for MEDLINE]
Full text: http://www.scribd.com/doc/45911862;
System of principles for conservation of the biogeocenotic function and the biodiversity of filter-feeders. - Doklady Biological Sciences. 2002 (March). Vol. 383: 147-150. Bibliogr.15 refs. ISSN 0012-4966 (Print) 1608-3105 (Online). Distributed by Springer, orderdept@springer-sbm.com.
Abstract (in addition to PubMed):
As a result of the author’s studies of filter-feeders (DAN, 1998, Vol. 362, P. 574-576; DAN, 2001, Vol. 378, P. 283-285), and the new experiments reported in this paper, it was firmly proved that the filtering activity of populations of filter-feeders in natural habitats might be significantly reduced if the concentrations of some pollutants (exemplified by synthetic detergents and surfactants) reach certain levels. To the author’s opinion, the ecological role of filter-feeders as factors of water purification in ecosystems is so important that the pollutant-induced inhibition of their filtering activity is a hazard to the well-being of the entire ecosystem. The author emphasizes that not only the biodiversity of filter-feeders but also their level of functional (filtration) activity is to be protected. In order to do so, the author suggested establishing a new type of protected areas whose main purpose is to protect functionally active populations of filter-feeders, including bivalve mollusks and other organisms. Those protected areas could be named hydrobiological (some variants: biofiltering, or malacological) reserves (some variants: refuges, sanctuaries, etc.). The author formulated 5 principles of nature conservation requirements in malacological and hydrobiological reserves (Tabl. 3). Among them is principle 2, protection or "conservation of filtration activity of organisms and populations". The paper contains data on how 5 synthetic detergents (1-50 mg/L) inhibited the filtration activity of the bivalve mollusks Unio tumidus, Mytilus galloprovincialis, Crassostrea gigas (Tabl. 2); on effects on the efficiency of elimination (EEE) of suspended matter from water that were measured (Tabl. 2); on the number of days (0.3 – 10) needed to filter the volume of aquatic (freshwater and marine) ecosystem by the local bivalve populations (a review of data from literature) (Tabl. 1). "I suggest that the existing system of protected terrestrial and water areas should be supplemented with special sites intended to conserve populations of filter-feeders. In addition to biodiversity conservation, these populations should be conserved because they fulfill a very important biogeocenotic function of water filtration and purification" (p.149). "The system of five principles…is proposed to provide an ecological basis of the environment conservation conditions at these sites (malacological and hydrobiological reserves)" (p.149)]. DOI 10.1023/A:1015398125876; www.springerlink.com/index/1MNVLNAYW36TC92R.pdf https://www.researchgate.net/file.FileLoader.html?key=888352078b275ef40a430eb5b4d7714c;
-*-*-*-*-
16. New definitions of the concepts and terms ecosystem and biogeocenosis.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Mar-Apr;383:141-143.
PMID: 12053565 [PubMed - indexed for MEDLINE]
www.scribd.com/doc/49065580;
DOI: 10.1023/A:1015393924967
[MAIK Nauka/Interperiodica distributed exclusively by Springer Science+Business Media LLC. ISSN 0012-4966 (Print) 1608-3105 (Online)]
Abstract (in addition to PubMed):
In 1935, the term 'ecosystem' was coined by A. Tansley. In the 1940s, another important term 'biogeocoenosis' was introduced by V. N. Sukachev. Since that time, a significant amount of new facts was accumulated in ecology. It is necessary to revisit the formulation of the basic concepts and terms in ecology, including the two terms mentioned above. The author proposed some new variants of the definition of the two terms that (1) reflect the modern vision of the basics of ecology; and (2) avoid the vicious circle of using other terms that in turn request their definitions. The author realizes that the new variants of the terms cannot be ideal and some other variants of the definitions are also possible. 5 specific features of the proposed definition of ecosystem (Table 1). 8 specific features of the proposed definition of biogeocenosis, and 8 distinctions between the proposed definition and the classical definition by V.N.Sukachev (Table 2)]. https://www.researchgate.net/file.FileLoader.html?key=997c8c86899d5a6e24531054ad1bcd1e; www.springerlink.com/index/VPG4YU2V3YD6T97B.pdf; DOI 10.1023/A:1015393924967; the Russian version of the paper: http://scipeople.ru/publication/66938/; http://ru.scribd.com/doc/49065580/
-*-*-*-*-
17.A new type of effect of potentially hazardous substances: uncouplers of pelagial-benthal coupling.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Mar-Apr;383:127-130.
PMID: 12053562 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/45913695; Ostroumov S.A. A new type of effect of potentially hazardous substances: uncouplers of pelagial–benthal coupling. - Doklady Biological Sciences. 2002 (March). Vol. 383 (1-6): 127-130. Bibliogr.15. ISSN 0012-4966.
Abstract. The paper presents a discovery of a new type of negative impact of pollutants on the biosphere, as a result of inhibition of water filtration by filter-feeders / suspension feeders. The water filtration and associated removal of suspended matter from water is part of migration of matter. As V.I. Vernadsky stressed, organisms are mediators of “biogenic migration of atoms in the biosphere”. This migration is partly implemented in the framework of pelagial–benthal coupling via the activity of filter-feeders, which remove the organic suspended matter from water and excrete pellets. The tables contains the following data: the average percentage of assimilated (16-90%) and non-assimilated (10-84%) food matter for 15 large taxa of invertebrates (Table 1); potassium bichromate inhibited water filtration by mussels Mytilus galloprovincialis (Table 2); surfactants, detergents, pesticides inhibited filtration by filter-feeders, marine and freshwater bivalves and rotifers (Table 3). A prediction was made: "Further research and experimental studies are expected to provide new evidence that sublethal concentrations of chemical pollutants induce a significant decrease in the filtration capacity of freshwater and marine filter feeders" (p.129). "The uncoupling process considered above is an anthropogenic violation of two basic laws (empirical rules or biogeochemical principles) of the biosphere functioning: (1) biogenic migration of atoms of chemical elements in the biosphere always tends toward its maximum expression; (2) on the geological time scale, the evolution of species gives rise to the forms of life that are stable in the biosphere, and is so directed that the biogenic migration of atoms in the biosphere increases" (p.129).]; DOI10.1023/A:1015385723150; https://www.researchgate.net/file.FileLoader.html?key=d988acb599e121964c48114374a87e8d;www.springerlink.com/index/28V23JBFADL1Y100.pdf;
Full text see online free: http://www.scribd.com/doc/45913695;
-*-*-*-*-
18. Biodiversity protection and quality of water: the role of feedbacks in ecosystems.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Jan-Feb;382:18-21.
PMID: 11998748 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/52567956
Abstract (in addition to PubMed):
The article presents a new vision of how biodiversity helps towards a better environmental stability and water quality. The author made an innovative analysis of his experimental data and formulated the following fundamental principle: to maintain water quality, it is vital to protect the functionally active biodiversity of water ecosystems. In other words, according to the author’s new concept, the protection of functionally active biodiversity, including filter-feeders, is a key to maintenance of water quality. Among new facts obtained and reported in the paper: a chemical pollutant (exemplified by the synthetic detergent IXI, a sublethal concentration 20 mg/L) inhibited water filtration by the marine bivalve mollusks, mussels Mytilus galloprovincialis (3-25 min, 18 pro mille, 22.8ºC). Another synthetic detergent Deni-Automat ( a sublethal concentration 30 mg/L) also inhibited the water filtration by the marine bivalves oysters Crassostrea gigas Thunberg (2-40 min, 25.2ºC).]. These new data as well as the other related data obtained by the same author and reported in his other publications, supported the author’s fundamental concept. DOI 10.1023/A:1014465220673. http://www.springerlink.com/content/p89cugy9ddk053g7/;
http://www.scribd.com/doc/42558469/; PMID: 11998748 [PubMed - indexed for MEDLINE]; MAIK Nauka/Interperiodica distributed exclusively by Springer Science+Business Media LLC. ISSN0012-4966 (Print) 1608-3105 (Online). http://scipeople.ru/users/2943391/; http://sites.google.com/site/2dbs382p18biodivers/; http://www.citeulike.org/user/ATP/article/9734342;
-*-*-*-*-
19.
[An amphiphilic substance inhibits the mollusk capacity to filter phytoplankton cells from water].
Ostroumov SA.
Izv Akad Nauk Ser Biol. (Izvestiya Akademii Nauk Seriya Biologicheskaya ) 2001 Jan-Feb;(1):108-116. Russian.
PMID: 11236572 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/63444377
http://www.scribd.com/doc/63444377/BiolBul2001-1p95-E-an-Amphiphilic-BB95-An-amphiphilic-substance-inhibits;
** in Eng, in the form:
BIOLOGY BULLETIN, Volume 28, Number 1 (2001), 95-102;
DOI: 10.1023/A:1026671024000;
-*-*-*-*-
20. An aquatic ecosystem: a large-scale diversified bioreactor with a water self-purification function.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2000 Sep-Oct; 374: 514-516.
PMID: 11103331 [PubMed - indexed for MEDLINE];
www.scribd.com/doc/49065542
http://www.scribd.com/doc/49069997
Abstract (in addition to PubMed):
The author developed a new fundamental concept of aquatic ecosystem as a multi-functional bioreactor. One of the key functions of that bioreactor is upgrading water quality via a multi-component biomachinery of water self-purification. The paper presented some new facts, new ideas, including the following. Contribution of the main groups of aquatic organisms (heterotrophic bacteria, fungi, cyanobacteria and microalgae, protozoans, higher plants, invertebrates, fish and amphibians) to water self-purification: comparison and analysis (Tabl.1). New data on biological effects of representatives of an understudied class of aquatic pollutants, synthetic surfactants. Relatively small effects of the surfactant Triton X-100 4-5 mg/L on the bacteria Hyphomonas sp. MHS-3 (5 mg/L) and Hyphomonas sp. VP-6 (5-10 mg/L), a significant inhibition by Triton X-100 of the filtration by the bivalve marine mollusk Mytilus edulis (4 mg/L), and by the bivalve freshwater mollusk Unio tumidus (5 mg/L). The inhibitory effects of the surfactant TDTMA 1 mg/L on the marine mollusk M. galloprovincialis (Tabl. 2); the inhibition of feeding: effects of TX100 1-5 mg/L on the freshwater bivalve mollusk Unio tumidus, TDTMA 1-2 mg/L on the freshwater bivalve U. pictorum. Also, new inhibitory effects of the synthetic surfactants TDTMA 1 mg/L, SDS 1.7 mg/L, various detergents 6.7 – 50 mg/L, Avon Hair Care (AHC) 5-60 mg/L (sublethal concentrations) on M. galloprovincialis; TX100, TDTMA (2 mg/L), the synthetic detergent Tide-Lemon 75 mg/L on the freshwater species Lymnaea stagnalis (Tabl. 3). "Sublethal concentrations of contaminants may inhibit vital activities of other organisms involved in the function of an ecosystem as an analogue of a bioreactor. This finding provides a deeper insight into the mechanisms of anthropogenic impact on the biosphere. The concept put forward in this work emphasizes that intactness of the whole range of biological diversity of hydrobionts (aquatic organisms) is required to provide effective functioning of an ecosystem as an analog of a water self-purification bioreactor. Therefore, the monetary cost estimates of ecosystems and biota should be increased" (p. 516)]. http://www.ncbi.nlm.nih.gov/pubmed/11103331;
-*-*-*-*-
21. Biocatalysis of matter transfer in a microcosm is inhibited by a contaminant: effects of a surfactant on Limnea stagnalis.
Ostroumov SA, Kolesnikov MP.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2000 Jul-Aug;373:397-399.
PMID: 11013843 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/49065530
www.scribd.com/doc/49069985;
Abstract (in addition to PubMed):
It is the first paper that reported two new experimental results. First, the new author’s experiments measured the biota-driven fluxes of the matter and chemical elements in a model ecosystem. Second, the authors got another innovative result: a discovery of effects of chemical pollutants. Namely, these biota-driven flows of the chemical elements were decreased by a chemical pollutant exemplified by a synthetic surfactant.
By excreting some massive amount of organic matter in the form of pellets, mollusks drive the transfer of organic matter and contribute to the biogeochemical flows of chemical elements in aquatic ecosystems. For the first time, the quantitative assessment of the biogeochemical flows was made. Also, for the first time, it was discovered that a synthetic chemical may inhibit those flows. The pellet excretion rate by the gastropod mollusks Lymnaea stagnalis feeding on the phytomass of macrophytes (such as the plants Nuphar lutea) was 4–7 mg dry weight per 1 gram wet weight of the mollusks per 72 h. The pellet sedimentation contributes to the vertical transfer of chemical elements in the ecosystem. The pellet composition depended on the species of the plants eaten by the mollusks. When the gastropods L. stagnalis feed on the plants N. lutea, the pellets contain, in addition to organic and inorganic carbon, nitrogen (N, 2.3–2.9%), phosphorus (P, 0.4–0.5%), and silicon (Si, 1.1–1.9%). The relative content of Si was 30% higher than in the food phytomass. The synthetic surfactant tetradecyltrimethylammonium bromide (TDTMA, 2 mg/L) inhibited the feeding rate of the mollusks and pellet production, their accumulation at the bottom of microcosms, and the matter transfer connected with this. The data obtained demonstrated a new aspect of the ecological hazard due to environmental pollution with synthetic surfactants (exemplified by TDTMA and other quaternary ammonium compounds) at sublethal concentrations. According to the author’s opinion, other contaminants may also suppress the pellet production, their accumulation at the bottom, and the matter transfer associated with that. http://scipeople.ru/users/2943391/; http://sites.google.com/site/2000dbs373p397biocatallstag/;
-*-*-*-*-
22. The concept of aquatic biota as a labile and vulnerable component of the water self-purification system.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2000 May-Jun;372:286-289. Review.
PMID: 10944725 [PubMed - indexed for MEDLINE]
http://sites.google.com/site/2000dbs372p286biotalabil
Translated from Doklady Akademii Nauk, Vol. 372, No. 2, 2000, pp. 279–282. Original Russian Text Copyright © 2000 by Ostroumov.
It is the first paper in which it was clearly shown that aquatic biota (the sum of organisms) is the core part of the ecological mechanism of water self-purification in healthy aquatic ecosystems. The important attributes of this core part of the mechanism are: 1) lability; 2) vulnerability to anthropogenic impact.
Self-purification of water is a complex process including physical, chemical, and biological components. The vulnerability of different components of the water self-purification system to anthropogenic factors is as yet insufficiently understood. The goal of this work was to review the literature and our own unpublished experimental findings concerning potential vulnerability of the biotic component of the water self-purification system to chemical pollutants.
A new role of biota as a core, labile, vulnerable part of ecosystem and upgrade of water quality
www.scribd.com/doc/49069991
-*-*-*-*-
23. Criteria of ecological hazards due to anthropogenic effects on the biota: searching for a system.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2000 Mar-Apr;371:204-206.
PMID: 10833660 [PubMed - indexed for MEDLINE]; Full text online free:
http://sites.google.com/site/2000dbs371p204criteria/;
http://ru.scribd.com/doc/49065476/; http://ru.scribd.com/doc/49069767/;
http://ru.scribd.com/doc/49088234/
Why this paper is useful: http://www.scribd.com/doc/60891549/;
Blog post:
http://5bio5.blogspot.com/2012/07/fundamentally-new-solution-to-problem.html
Abstract (in addition to PubMed):
Abstract in short: This paper formulated a fundamentally new solution to the problem of selecting criteria for identification and assessing environmental hazards of chemical pollutants, toxicants; the paper explains why the currently accepted set of criteria is non-efficient and leads to mistakes;
Abstract in more detail:
This paper formulated a fundamentally new solution to the problem of selecting criteria for identification and assessing environmental hazards of chemical pollutants, toxicants; the paper explains why the currently accepted set of criteria is non-efficient and leads to mistakes. The currently accepted system of criteria for evaluating ecological hazards from man-made chemicals (which is used in W.Europe, N.America and in some other countries) is outdated and vulnerable to criticism. The author proposed a new concept of the system of the criteria for evaluating the ecological hazard from man-made impact. The author suggested to assess man-made impacts (including effects of pollutants and xenobiotics) on the biota according to the following four levels of disturbance in biological and ecological systems: (1) the level of individual and populational responses; (2) the level of aggregated responses; (3) the level of stability and integrity of the ecosystem; (4) the level of contributions of the ecosystem into biospheric processes. An example is given of how to apply the proposed system of criteria to the analysis of concrete experimental data. To exemplify the efficiency of the proposed system of criteria, it is shown how to use it to analyze the new original data on effects of a non-ionic surfactant on water filtering by bivalves. It is concluded that the proposed system of criteria will be helpful in better assessing environmental hazards from anthropogenic effects on the biota including effects of man-made chemicals polluting ecosystems. The examples of the tables in this paper: A new system of principles for analysis of man-made impact: the level-block approach to analysis of ecological hazards (Tab.1); the synthetic surfactant Triton X-100 (0.5 mg/L) inhibits water filtering by the bivalve mussels Mytilus edulis
(Tab. 2). "The proposed level–block approach to analysis of ecological hazards of anthropogenic alterations in ecosystems allows the multiplicity of anthropogenic effects on the biota to be systematized. This approach may be used to develop criteria for estimation and classification of ecological hazards due to anthropogenic effects" (p.206)]. ISSN 0012-4966. Distributed by Springer,orderdept@springer-sbm.com; Full text free: http://ru.scribd.com/doc/49069767/;http://ru.scribd.com/doc/49065476/; http://ru.scribd.com/doc/49088234/;
http://sites.google.com/site/2000dbs371p204criteria/; PMID: 10833660 [PubMed - indexed for MEDLINE]http://www.ncbi.nlm.nih.gov/pubmed/10833660; http://scipeople.ru/users/2943391/;
-*-*-*-*-
24. Biological filtering and ecological machinery for self-purification and bioremediation in aquatic ecosystems: towards a holistic view.
Ostroumov S.A.
Rivista di Biologia / Biology Forum ( Riv. Biol.), 1998; 91(2):221-232.
PMID: 9857844 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/42830557
Abstract (in addition to PubMed):
Ostroumov S. A. Biological filtering and ecological machinery for self-purification and
bioremediation in aquatic ecosystems: towards a holistic view. -
Rivista di Biologia. 1998; 91(2): 221-232.
PMID: 9857844 [PubMed - indexed for MEDLINE]
According to one of approaches to the definition of criteria for the phenomenon of life, the key attribute
is the ability of the life system for some self-regulating and self-supporting. Part of such holistic
functions of aquatic ecosystems as self-regulating and self-supporting is their cleaning the water via a
multitude of various mechanisms. The goal of this paper is to present some fundamental elements of
the theory of ecosystem self-purification (water self-purification) which emphasizes the importance of
the four functional biological filters that are instrumental in purification and upgrading the quality of
water in aquatic ecosystems. These functional filters are: (1) direct water filtering by aquatic organisms
that are filter-feeders; (2) the filter (represented mainly by communities of aquatic plants/periphyton)
which prevents input of pollutants and biogenic (nutrient) elements (N, P) from land into water bodies and water streams; (3) the filter (represented by benthic organisms) which prevents re-entry of pollutants and biogenic elements from the bottom sediments into the water; (4) the filter (represented by microorganisms attached to particles which are suspended in the water) that provides microbiological treatment of the water column. New experimental data by the author reveal the negative role of manmade effects on the ecological machinery which purifies water. The analysis and discussion lead to the holistic theory of the natural process of bioremediation of aquatic ecosystems.
Key words:
aquatic, ecosystems, theory, water self-purification, Upgrading, quality of water, water filtering, organisms, filter-feeders, Communities, aquatic plants, periphyton, pollutants, biogenic, nutrient, elements, N, P, benthic, organisms, Microorganisms, attached, particles, suspended, water, microbiological, treatment, water column, man-made effects, natural, process, bioremediation,
-*-*-*-*-
25. Electrochemical proton gradient across the membranes of photophosphorylating bacteria.
Ostroumov SA, Jasaitis AA, Samuilov VD.
Biomembranes. 1979;10:209-233. Review.
PMID: 387102 [PubMed - indexed for MEDLINE]
-*-*-*-*-
26. Membrane potential and surface charge densities as possible generalized regulators of membrane protein activities.
Ostroumov SA, Vorobiev LN.
J. Theor. Biol. 1978, Dec 7;75(3):289-297.
PMID: 745444 [PubMed - indexed for MEDLINE]
-*-*-*-*-
27. Participation of chloroplasts and mitochondria in virus reproduction and the evolution of the eukaryotic cell.
Ostroumov SA.
J. Theor. Biol. 1977, Jul 21;67(2):287-297.
PMID: 197321 [PubMed - indexed for MEDLINE]
-*-*-*-*-
28. Reconstitution of Biological Molecular generators of electric current. Bacteriorhodopsin.
Drachev LA, Frolov VN, Kaulen AD, Liberman EA, Ostroumov SA, Plakunova VG, Semenov AY, Skulachev VP.
J Biol Chem. 1976 Nov 25;251(22):7059-7065.
PMID: 62754 [PubMed - indexed for MEDLINE]
-*-*-*-*-
29. [Membrane potential as a possible polyfunctional regulator of the activity of membrane proteins].
Ostroumov SA, Vorob'ev LN.
Nauchnye Doklady Vysshei Shkoly Biologicheskie Nauki (Nauchnye Doki Vyss Shkoly Biol Nauki). 1976;(7):22-26. Review. Russian.
PMID: 136276 [PubMed - indexed for MEDLINE]
-*-*-*-*-
30. A study on the membrane potential and pH gradient in chromatophores and intact cells of photosynthetic bacteria.
Barsky EL, Bonch-Osmolovskaya EA, Ostroumov SA, Samuilov VD, Skulachev VP.
Biochim. Biophys. Acta. 1975 May 15;387(2):388-395.
PMID: 236031 [PubMed - indexed for MEDLINE]
-*-*-*-*-
31.Direct measurement of electric current generation by cytochrome oxidase, H+-ATPase and bacteriorhodopsin.
Drachev LA, Jasaitis AA, Kaulen AD, Kondrashin AA, Liberman EA, Nemecek IB, Ostroumov SA, Semenov AYu, Skulachev VP.
Nature. 1974 May 24;249(455):321-324.
PMID: 4366965 [PubMed - indexed for MEDLINE]
-*-*-*-*-
32.Electrogenesis by bacteriorhodopsin incorporated in a planar phospholipid membrane.
Drachev LA, Kaulen AD, Ostroumov SA, Skulachev VP.
FEBS Lett. 1974, Feb 1;39(1):43-45.
PMID: 4851814 [PubMed - indexed for MEDLINE]
-*-*-*-*-
33.[Membrane potential in the chromatophores of Rhodospirillum rubrum conditioned by a transhydrogenase reaction].
Ostroumov SA, Samuilov VD, Skulachev VP.
Nauchnye Doki Vyss Shkoly Biol Nauki. (Nauchnye Doklady Vysshei Shkoly Biologicheskie Nauki) 1974;2:92-95. Russian.
PMID: 4150987 [PubMed - indexed for MEDLINE]
-*-*-*-*-
34.Transhydrogenase-induced responses of carotenoids, bacteriochlorophyll and penetrating anions in Rhodospirillum rubrum chromatophores.
Ostroumov SA, Samuilov VD, Skulachev VP.
FEBS Lett. 1973 Apr 1;31(1):27-30.
PMID: 4145457 [PubMed - indexed for MEDLINE]
-*-*-*-*-
Addendum: the following material is not on PubMed but it is equally important.
Ostroumov S.A. Some aspects of water filtering activity of filter-feeders // Hydrobiologia. 2005. Vol. 542, No. 1. P. 275 – 286 (in Eng.). Bibliogr. 63 refs. DOI 10.1007/s10750-004-1875-1. ISSN 0018-8158 (Print) 1573-5117 (Online).
-------------------Full text see: http://www.scribd.com/doc/45914201;
------------Abstract. The author gave innovative analysis of the vital role of filter-feeders in functioning and maintenance of stability of aquatic ecosystems (both freshwater and marine ones). The paper includes the following tables. Table 1. Examples of the impact of filter-feeders on the water column: clearance time. Table 2. Examples of diversity of taxa of benthic organisms involved in removing seston from water, and filtration rates. Table 3. Effect of the increase in concentration of algae on the filtration rate and the amount consumed by rotifers Brachionus calyciflorus. Table 4. The ratio F:P in some groups of organisms (examples of "ecological taxation"). Table 5. The ratio F: (P+R) in some filter feeders. Table 6. Results of the ecological tax: biosediment formation in 6 ecosystems. Table 7. Contribution of various aquatic organisms to oxidation of organic matter in the ecosystem of the Sea of Okhotsk. Table 8. Some chemicals that inhibit the filtering activity of the filter-feeders (new data of the author). Table 9. Some features of water-filtering biomachinery: 6 fundamental principles. Table 10. The level-block approach to the analysis of ecological hazards of anthropogenic effects on the biota (the new conceptualization proposed by the author). Some fundamental principles that characterize the pivotal roles of the biodiversity of filter-feeders in ecosystems. Among those roles are: (1) the role of ecological repair of water quality, (2) the role of contributing to reliability and stability of the functioning of the ecosystem, (3) the role of contributing to creation of habitat heterogeneity, (4) the role of contributing to acceleration of migration of chemical elements. It is an important feature of the biomachinery of filter-feeders that it removes from water various particles of a very broad range of sizes. Another important principle is that the amount of the organic matter filtered out of water is larger than the amount assimilated so that a significant part of the removed material serves no useful function to the organism of the filter-feeder, but serves a beneficial function to some other species and to the ecosystem as a whole. The new experiments by the author additionally demonstrated a vulnerability of the filtration activity of filter feeders (e.g. bivalves and rotifers) to some xenobiotics (tetradecyltrymethylammonium bromide, heavy metals and some others). The inhibition of the filtration activity of filter-feeders may lead to the situation previously described as that of an ecological … of the second type.
**
Ostroumov S.A. Inhibitory analysis of regulatory interactions in trophic webs.- Doklady Biological Sciences, 2001, Vol. 377, p. 139–141. (Translated from Doklady Akademii Nauk, 2000, Vol. 375, No. 6, p. 847–849). Abstract: In the paper, the author proposed a new approach to analyze the key ecological issue, the interactions between organisms in ecosystems. The new methodology proposed is inhibitory analysis. The author applied this approach to analyze trophic chains: the top–down control of plankton by benthic filter-feeders. This control, as the author’s experiments have shown, might be removed by chemical inhibitors (the latter may enter the ecosystem as pollutants). As an example, the author gives the results of his experiments on how surfactants [tetradecyltrimethylammonium bromide (TDTMA)] and synthetic detergents inhibited the control of plankton (Monochrystis lutheri) by mussels Mytilus galloprovincialis. The method was successfully applied to innovatively analyze the factors that are among reasons of eutrophication. Among new facts: the cationic surfactant TDTMA 1 mg/L inhibited the filtration rate of juveniles of marine bivalves Mytilus galloprovincialis, and the removal of cells of the algae Monochrysis lutheri from water (50 min, 26˚C)]. DOI 10.1023/A:1019218026198;
Full text see online free: http://www.scribd.com/doc/45911405;http://sites.google.com/site/2001dbs377p139inhibitory/;
**
S. A. Ostroumov. On the Multifunctional Role of the Biota in the Self-Purification of Aquatic Ecosystems. - Russian Journal of Ecology, Vol. 36, No. 6, 2005, pp. 414–420. DOI: 10.1007/s11184-005-0095-x; S. A. Ostroumov.
[Full text see online free: http://www.scribd.com/doc/45572968]
(Faculty of Biology, Moscow State University, Vorob’evy gory, Moscow, 119991 Russia)
Abstract: The study of water self-purification processes (Skurlatov, 1988; Ostroumov, 2000a) is essential for approaching fundamental ecological problems (Alimov, 2000; Ostroumov et al., 2003) and for resolving some applied issues related to the sustainable use of aquatic and biological resources. The purpose of this paper is to give a systematic account of the concepts concerning the multiple functions of the biota in the self-purification of water bodies and watercourses, without attempting to review the numerous publications in this field. In this paper, a paradigm shift was made and some new principles of the theory of the ecological mechanism of water self-purification based on multiple functions of the biota in freshwater and marine ecosystems were formulated. In developing this theory, the results of the author’s experiments with aquatic organisms (filter-feeders) have been used. As a result, the author discovered that the natural ecological mechanism which maintains water quality (water self-purification mechanism) is vulnerable to the impact of some pollutants as exemplified by synthetic detergents and surfactants. Conclusions drawn on the basis of the theory have practical significance for biodiversity conservation and for the sustainable use of the biological resources of aquatic ecosystems. 1067-4136/05/3606-0414 © 2005 Pleiades Publishing, Inc. Russian Journal of Ecology, Vol. 36, No. 6, 2005, pp. 414–420. DOI: 10.1007/s11184-005-0095-x; Translated from Ekologiya, No. 6, 2005, pp. 452–459. Original Russian Text Copyright © 2005 by Ostroumov. The English edition of the paper is available on SprigerLink: www.springerlink.com/index/Y6370W774LK7G786.pdf; Key words : aquatic, ecosystems, water quality, water, self-purification, pollution, paradigm shift, surfactants, detergents, sustainability, environment, filter-feeders, invertebrates, bivalves, freshwater, marine, resources, bioassay, hazards,
**
E. A. Solomonova and S. A. Ostroumov. Tolerance of an Aquatic Macrophyte Potamogeton crispus L.to Sodium Dodecyl Sulphate. Moscow University Biological Sciences Bulletin, 2007, Vol. 62, No. 4, p. 176–179. DOI: 10.3103/S0096392507040074; -------------------------------Full text see online free: http://www.scribd.com/doc/45556848;
Abstract: Macrophytes are important components of ecosystems and participate in the purification of water, which contributes to the sustainability of water quality. This is especially important in conditions of pollution of water bodies and water streams. Surfactants constitute an important class of pollutants. Therefore, further investigation and clarification of the facts concerning the interaction of plants and various surfactants are necessary. The present paper presents the results of investigations of the effect of various concentrations of aqueous solutions of the anionic surfactant sodium dodecyl sulphate (SDS) on the viability of the aquatic macrophytes, the pondweed Potamogeton crispus L. When the effects of the anionic surfactant sodium dodecyl sulphate on the aquatic macrophytes Potamogeton crispus L. were studied, it was found that the concentrations of 83–133 mg/l caused fragmentation of the stems of plants. The tolerance of the plants to the negative effects of the surfactant was higher in the spring (April) than in the autumn (September). DOI:10.3103/S0096392507040074; Moscow University Biological Sciences Bulletin, 2007, Vol. 62, No. 4, p. 176–179. ISSN 0096-3925, © Allerton Press, Inc., 2007. Available at SpringerLink; Original Russian Text © E.A. Solomonova, S.A. Ostroumov, 2007, published in Vestnik Moskovskogo Universiteta. Biologiya, 2007, No. 4, pp. 39–42. Keywords: effects, surfactant, aquatic, macrophytes, Potamogeton, crispus, concentrations, fragmentation, stems, plants, negative, pollution, detergents, phytoremediation, chemico-biotic interactions, water quality, sodium dodecyl sulphate, SDS, phytotechnology;
**
Опубликовано 2 days ago пользователем Dr Green
Ярлыки: ecotoxicology environmental science indexed PubMed water quality improvement water science
0
Добавить комментарий
AUG
25
New facts, new concepts. Recommended 150 publications on ecology, environment, biology, environmental toxicology, water
Recommended 150 Publications: Ecology, Environmental Sciences, Biology
150 new ecology facts, ideas, explanations, links.
New facts, new concepts. Recommended: 150 publications on ecology, environment, biology, environmental toxicology, water (selected)
http://5bio5.blogspot.com/2014/08/new-facts-new-concepts-recommended-150.html
https://www.researchgate.net/publication/264992091_Recommended_150_Publications_Ecology_Environmental_Sciences_Biology
Detailed explanation of innovations in the publications of this series was provided by reviewers at World Catalog (see:http://5bio5.blogspot.ru/2014/07/31-reviews-explanation-of-novelty.html ) and by experts in environmental science and ecology (see: https://www.researchgate.net/publication/264973219_; http://ru.scribd.com/doc/237573444/).

Also, a clear and concise explanation of novelty and prospective use of these publications is offered here:
http://5bio5.blogspot.com/2014/07/review-explanation-3-innovations.html
http://5bio5.blogspot.com/2014/06/3-innovative-steps-in-ecology.html
5bio5.blogspot.ru/2014/05/explanation-of-use-enviro-sci-research.html
Updated in July 2014;
bibliography, more detail at Google Scholar.
http://5bio5.blogspot.com/2014/07/publications-bibliography-of-dr-sergei.html
see the list of the 150 papers and books, with links:
http://scholar.google.ru/citations?user=hvqWG6YAAAAJ&hl=en
**
Tags:
Publications, bibliography, Google, Scholar, papers, books, articles, ecology, environmental, science, biology, water quality, aquatic, water self-purification, toxicology, detergents, surfactants, environmental safety, education, ecotoxicology
Updated: July 30, 2014;
Many of these publications were commented favorably at WorldCatalog, rated as excellent by experts /reviewers at the site of WorldCatalog: http://5bio5.blogspot.ru/2014/07/31-reviews-explanation-of-novelty.html ;
http://5bio5.blogspot.com/2014/07/rating-excellent-top-publications.html ;
Award: these publications were awarded, see: http://5bio5.blogspot.com/2014/07/award-july-1-2014-to-series-of.html ;
The publications, bibliography:
Title
Year
Polyfunctional role of biodiversity in processes leading to water purification: current conceptualizations and concluding remarks
Hydrobiologia 469 (1), 203-204;
55
2002
Inhibitory analysis of top-down control: new keys to studying eutrophication, algal blooms, and water self-purification
Hydrobiologia 469 (1-3), 117-129;
54
2002
Biological effects of surfactants
CRC Press;
52
2010
Conservation of living nature and resources: problems, trends, and prospects.
AV Yablokov et al.;
Conservation of living nature and resources: problems, trends, and prospects.
Springer.
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New updated editions of this book were published in Spanish, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
51
∗
1991
Biological filtering and ecological machinery for self-purification and bioremediation in aquatic ecosystems: towards a holistic view
Rivista di Biologia/Biology Forum 91 (2), 221-232
50
1998
Some aspects of water filtering activity of filter-feeders
Aquatic Biodiversity II, 275-286
44
2005
Doklady Biological Sciences 374, 514-516
35
2000
The concept of aquatic biota as a labile and vulnerable component of the water self-purification system
DOKLADY BIOLOGICAL SCIENCES 372, 286-289
30
2000
On the biotic self-purification of aquatic ecosystems: elements of the theory
Doklady Biological Sciences 396 (1), 206-211
25
2004
Filtration inhibition induced by two classes of synthetic surfactants in the bivalve mollusc (Narushenije filtracii dvustvorchatymi molluskami pod vozdejstvijem poverkhnostno-aktivnykh veshchestv dvukh klassov)
[SA O., P Donkin, F Staff]
Doklady Akademii Nauk 362, 574-576
21
1998
Inhibitory Analysis of Regulatory Interactions in Trophic Webs
Doklady Biological Sciences full text: http://www.scribd.com/doc ...
20
2001
Inhibition by the anionic surfactant, sodium dodecyl sulphate, of the ability of mussels Mytilus edulis to filter and purify sea water.
[SA O., P Donkin, F Staff]
VESTN. MOSK. UNIV.(BIOL.), 30-36
20
1997
Vvedenie v biokhimicheskuyu ekologiyu (Introduction to Biochemical Ecology)
Gos. Univ, 176
19
1986
Biodiversity protection and quality of water: the role of feedbacks in ecosystems
Doklady Biological Sciences; full text free: http://www.academia.edu/876887 ...
18
2002
Biodiversity protection and water quality: the role of feedbacks in ecosystems
Doklady Akademii Nauk; text free: https://sites.google.com/site ...
18
∗
2002
Introduction to biochemical ecology; comment: http://5bio5.blogspot.ru/2013/01/on-book-introduction-to-biochemical.html
Moscow University, Moscow, 176 p.
18
1986
Vvedenie v biokhimicheskuyu ekologiyu
M.: Izd-vo MGU
17
1986
Inhibition of mussel suspension feeding by surfactants of three classes
[SA O., J Widdows]
Hydrobiologia 556 (1), 381-386
16
2006
On some issues of maintaining water quality and self-purification
Water Resources; full text: http://www.scribd.com/doc/57511892 32 (3), 305-313
16
2005
Studying effects of some surfactants and detergents on filter-feeding bivalves
Aquatic Biodiversity, 341-344
16
2003
**
More evidence of merit of publications of this series.
30 of these articles were cited and commented favorably by Professor V.A. Abakumov (2013), the leading expert in aquatic ecology in Russian Federation, and Chair, Department of Ecology, an international university in the Moscow Region. He cited 30 of these articles in his paper entitled “A review of some achievements in environmental sciences, general ecology and aquatic ecology: functioning of ecosystems and environmental toxicology”.
Title /
Year
Biologicheskie effekty poverkhnostnoaktivnykh veshchestv v svyazi s antropogennymi vozdeistviyami na biosferu
Biological Effects of Surfactants as Related to the Anthropogenic Impact on ...
16
2000
On the multifunctional role of the biota in the self-purification of aquatic ecosystems
Russian Journal of Ecology 36 (6), 414-420
14
2005
Anthropogenic effects on the biota: towards a new system of principles and criteria for analysis of ecological hazards
RIVISTA DI BIOLOGIA / BIOLOGY FORUM text: http://www.scribd.com/doc ...
14
2003
Biologicheskiie effekty pri vozdeistvii poverkhnostno-aktivnykh veshchestv na organizmy (Biological Effects of Surfactants on Organisms)
MAX Press, Moscow
14
2001
Suspension-feeders as factors influencing water quality in aquatic ecosystems
The Comparative Roles of Suspension-Feeders in Ecosystems, 147-164
13
2005
Synecological foundation for the solution of the problem of eutrophication (Sinekologicheskie osnovy resheniya problemy evtrofirovaniya)
Doklady Akademii Nauk Full text free: http://www.scribd.com/doc/49065550 ...
13
2001
Criteria of the Environmental Hazard of Anthropogenic Impact on Biota: Search for a System
Dokl. Akad. Nauk; full text: http://www.academia.edu/1900879; http://www ...
12
2000
Effect of marine pollution with a nonionic surfactant on the marine diatom Thalassiosira pseudonana. [Eng. edition: Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana]
N Fisher, et al.
Izvestiya Rossijskoj Akademii nauk. Seriya biologicheskaya/Proceedings of ...
12
∗
1996
Medium-term and long-term priorities in ecological studies. http://scipeople. com/uploads/materials/4389/3RivistaBio96Priorities2. rtf
[SA O., S Dodson, D Hamilton, S Peterson, RG Wetzel]
Rivista di Biologia/Biology Forum; full text free: http://ru.scribd.com/doc ...
11
2003
Tetradecyltrimethylammonium bromide (tetradetziltrimetilammonij bromid)
NV Kartasheva, et al.
Toxicological Bulletin (Toksikologicheskii Vestnik) 5, 30-32
11
1998
Tolerance of an aquatic macrophyte Potamogeton crispus L. to sodium dodecyl sulphate
EA Solomonova, et al.
Moscow University Biological Sciences Bulletin; DOI 10.3103 ...
10
2007
System of principles for protecting the biogeocenotic function and biodiversity of filter-feeders
Doklady Akademii Nauk; English edition: Doklady Biological Sciences, 2002 ...
10
∗
2002
Biological activity of waters containing surfactants
Khimiya i tekhnologiya vody. Kiev [translation of the title into English ...
10
1991
Vvedenie v problemy biokhimicheskoi ekologii (Introduction to the Problem of Biochemical Ecology)
MM Telitchenko, et al.
Moscow: Nauka
10
1991
Urovni okhrany zhivoi prirody (Levels of Conservation of Living Nature)
AV Yablokov, et al.
Moscow: Nauka
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New books on this topic were published by the same authors in Spanish, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
10
1985
Decreasing the measurable concentrations of Cu, Zn, Cd, and Pb in the water of the experimental systems containing Ceratophyllum demersum: The phytoremediation potential
[SA O., TV Shestakova]
Doklady biological sciences; full text free: http://www.scribd.com/doc ...
9
2009
Developing fundamental concepts in aquatic and general ecology: from aquatic and ecological research to applications relevant to sustainability
Ecological Studies, Problems, Solutions 6, 28-33
9
∗
2003
Criteria of ecological hazards due to anthropogenic effects on the biota: searching for a system
DOKLADY BIOLOGICAL SCIENCES 371, 204-206
9
2000
Wprowadzenie do ekologii biochemicznej
Wydaw. Naukowe PWN
9
1992
Aquatic ecosystem as a bioreactor: water purification and some other functions
Rivista di Biologia/Biology Forum 97 (1), 67-78
8
2004
**
Additional evidence of merit:
Diploma (Academy of Water Sciences) – a certificate of high scientific quality - was awarded to the series of publications (on ecology, environmental science) including many of the articles listed here http://5bio5.blogspot.com/2014/07/award-july-1-2014-to-series-of.html;
Effects of amphiphilic chemicals on marine organisms filter-feeders (Vozdeistvie amfifil'nykh veshchestv na morskikh gidrobiontov-filtratorov);
Dokl. Akad. Nauk.(Eng.edition: Doklady Biological Sciences, 2001, 378: 248 ...
Biological effects of surfactants on organisms
MAX Press, Moscow,
2001
The most important components of self-purification of ecosystems and its possible impairment as a result of chemical pollution
SA Ostroumov, VD Fedorov
Vestnik Moskovskogo universiteta. Seriya biologiya. Moscow, 1: 24-32
Ostroumov, S. A., and Fedorov, V. D., 1999. The most important components of self-purification of ecosystems
and its possible impairment as a result of chemical pollution. Vestnik Moskovskogo Universiteta Seriya XVI, Biologiya, 1: 24-32.
Translit of the Russian title of this paper: Osnovnyje komponenty samoochishchenija ekosistem i ...
A detailed abstract: https://www.researchgate.net/publication/263737989_ ;
1999
Biotic self-purification of aquatic ecosystems: from the theory to ecotechnologies
Ecologica 15 (50), 15-21
2007
Biological effects of surfactants in connection with the anthropogenic impact on the biosphere
MAX Press, Moscow
2000
Biotesting of solutions of surfactants
[SA O., VN Maximov]
Izvestiia Akademii Nauk SSSR, Seriia Biologicheskaia (= Biology Bulletin of ...
1991
Introduction to Problems of Biochemical Ecology: Biotechnology, Agriculture, and Environmental Protection
MM Telitchenko, et al.
Nauka, Moscow
1990
Accelerated decrease in surfactant concentration in the water of a microcosm in the presence of plants: innovations for phytotechnology
EV Lazareva et al.
Doklady Biological Sciences 425 (1), 180-182 (in English)
2009
Biomachinery for maintaining water quality and natural water self-purification in marine and estuarine systems: elements of a qualitative theory
International Journal of Oceans and Oceanography 1 (1), 111-118
6
2006
Amphiphilic chemical inhibits the ability of molluscs...; English edition: An amphiphilic substance inhibits the mollusk capacity to filter out phytoplankton cells from water. Biology Bulletin, 2001, 28:p. 95-102. http://www.scribd.com/doc/63444377/
Izvestia RAN. Seriya Biology (Bulletin of Russian Academy of Sciences ...
6
∗
2001
Water self-purification in ecosystems and sustainable development
Aquatic Ecosystems and Organisms, 14
6
1999
Certain Aspects of Evaluating Biological Activity of Xenobiotics
Vestn. MGU, Ser. 16, Biologiya, 27-34
6
1990
Urovni okhrany zhivoi prirody (Levels of the Protection of Living Nature)
AV Yablokov, et al.
Moscow: Nauka
6
1985
Okhrana zhivoi prirody: problemy i perspektivy
AV Yablokov, et al.
Conservation of Living Nature: Problems and Prospects), Moscow: Lespromizdat
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New updated editions of this book were published in English, Spanish, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
6
1983
Toxicology of nanomaterials and environment.-Ecologica. 2011, vol. 18, issue 61, pp. 3-10.
Ecologica 18 (61), 3-10
5
2011
Basics of the molecular-ecological mechanism of water quality formation and water self-purification
Contemporary Problems of Ecology; full text: http://ru.scribd.com/doc ...
5
2008
Effect of nonionogenic surfactant on cyanobacteria
J Waterbury et al.
Microbiology 63 (2), 140-142;
https://www.researchgate.net/publication/264988450_;
https://www.researchgate.net/publication/264988450_Effect_of_Nonionogenic_Surfactant_on_Cyanobacteria;
5
1994
Effect of Nonionogenic Surface Active Substance on Cyanobacteria
D Uoterberi, et al.
Mikrobiologiya 63 (2), 258-263
5
1994
Urovni okhrany zhivoi prirody (Levels of Nature Conservation)
AV Yablokov, et al.
Moscow: Nauka
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New editions of books on this topic were published by the same authors in English, Spanish, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
5
1985
On studying the hazards of pollution of the biosphere: Effects of sodium dodecyl sulfate (SDS) on planktonic filter-feeders
IM Vorozhun, et al.
Doklady Biological Sciences; full text: http://www.scribd.com/doc/45914806 ...
4
2009
**
Title
Year
REACTION OF FAGOPYRUM-ESCULENTUM MOENCH TO POLLUTION OF AQUEOUS-MEDIUM WITH POLYMERIC SURFACTANTS
[S.A. O., NA Semykina]
Russian Journal of Ecology 24 (6), 386-390
4
1993
Responses of test-organisms to a quaternary ammonium compound
Vodnye Resursy (Water Resources) 2, 112-116
4
1991
Problems of assessment of biological activity of xenobiotics.
Moscow University Biological Sciences Bulletin 45 (2), 26-32
4
1990
Effects of an anionic surfactant on green algae and seedlings of some angiosperms (Vozdejstvije anionnogo deterghenta na zelenuju vodorosl'i prorostki nekotorykh pokrytosemennykh rastenij)
SV Goryunova, et al.
Biological Sciences (Biologicheskie Nauki) 7, 84-86
4
1986
Membrane potential as a possible polyfunctional regulator of the activity of membrane proteins
SA Ostroumov, LN Vorob'ev
Nauchnye doklady vysshei shkoly. Biologicheskie nauki, 22-26
4
1975
The aquatic macrophyte Ceratophyllum demersum immobilizes Au nanoparticles after their addition to water
[S.A. O., GM Kolesov]
Doklady Biological Sciences 431 (1), 124-127;
full text: https://www.researchgate.net/publication/44634488_ ;
3
2010
On the concepts of biochemical ecology and hydrobiology: Ecological chemomediators
Contemporary Problems of Ecology; Full text free: http://ru.scribd.com/doc ...
3
2008
Phytoremediation of perchlorate using aquatic plant Myriophyllum aquaticum
[S.A. O., D Yifru, V Nzengung, S McCutcheon]
Ecological Studies, Hazards, Solution 11, 25-27
3
2006
Identification of a new type of ecological hazard of chemicals: inhibition of processes of ecological remediation
Doklady Biological Sciences 385 (1), 377-379
3
2002
New definitions of the concepts and terms ecosystem and biogeocenosis
Doklady Biological Sciences 383 (1), 141-143
3
2002
Effect of amphiphilic chemicals on filter-feeding marine organisms
Doklady Biological Sciences 378 (1), 248-250
3
2001
An amphiphilic substance inhibits the mollusk capacity to filter out phytoplankton cells from water
Biology Bulletin of the Russian Academy of Sciences 28 (1), 95-102
3
2001
Filtration inhibition induced by two classes of synthetic surfactants in the bivalve mollusk Mytilus edulis
[SA O., P Donkin, F Staff]
DOKLADY BIOLOGICAL SCIENCES SECTION C/C OF DOKLADY-AKADEMIIA NAUK SSSR 362 ...
3
1998
Effect of environmental pollution with a cationic surface active substance on algae and Fagopyrum esculentum sprouts.
[SA O., AN Tret'yakova]
Soviet Journal of Ecology 21 (2), 79-81
3
1990
Assessment of efficiency of biodegradation of anionic surfactants by biotests.
[SA O., LS Samojlenko]
Moskovskii Gosudarstvennyi Universitet. Vestnik. Seriya 7: Filosofiya, 74-78
3
1990
Conservación de la naturaleza viva: problemas y perspectivas (in Spanish)
AV I︠A︡blokov, et al.
Vneshtorgizdat
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New updated editions of this book were published in English, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
3
1989
Okhrana prirody: problemy i perspektivy (Protection of Nature: Problems and Prospects)
AV Yablokov, et al.
Lespromizdat Press, Moscow (in Russian)
3
1983
Study of the interactions between Elodea canadensis and CuO nanoparticles
ME Johnson, et al.
Russian Journal of General Chemistry 81 (13), 2688-2693;
full text: https://www.researchgate.net/publication/257860248_ ;
2
2011
SNIZhENIE IZMERYaEMYKh KONTsENTRATsII Cu, Zn, Cd, Pb B VODE EKSPERIMENTAL'NYKh SISTEM S CERATOPHYLLUM DEMERSUM: POTENTsIAL FITOREMEDIATsII
SA Ostroumov, TV Shestakova
Doklady Akademii Nauk 428 (2), 282-285
2
2009
USKORENIE SNIZhENIYa KONTsENTRATsII POVERKhNOSTNO-AKTIVNOGO VEShchESTVA V VODE MIKROKOSMA V PRISUTSTVII RASTENII: INNOVATsII DLYa FITOTEKhNOLOGII
EV Lazareva, et al.
Doklady Akademii Nauk 425 (6), 843-845
2
2009
**
Title
Year
Towards the general theory of ecosystem-depended control of water quality
Ecologica 16 (54), 25-32
2
2009
Filter-feeders as part of ecological biomachinery to purify water
Internationale Vereinigung fur Theoretische und Angewandte Limnologie ...
2
2005
The functions of living substances in the biosphere
HERALD-RUSSIAN ACADEMY OF SCIENCES C/C OF VESTNIK-ROSSIISKAIA AKADEMIIA NAUK ...
2
2003
A New Type of Effect of Potentially Hazardous Substances: Uncouplers of Pelagial–Benthal Coupling
Doklady Biological Sciences 383 (1), 127-130
2
2002
The synecological approach to the problem of eutrophication
Doklady Biological Sciences 381 (1), 559-562
2
2001
Integrity-oriented approach to ecological biomachinery for self-purification and bioremediation in aquatic ecosystems: stopping an ecological time bomb
Limnology and Oceanography: Navigating into the Next Century, 1-5
2
1999
The ability of mussels to filter and purify the sea water is inhibited by surfactants
ASLO, 1-5
2
1999
Nontraditional nonanimal approaches to the ecotoxicology of xenobiotics
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 203, 302-ENVR
2
1992
Biologically active substances of ecological importance and methodological aspects of the estimation of the biological activity of pollutants
Russian Chemical Reviews 60 (3), 265-265
2
1991
Some aspects of the estimation of biological activity of xenobiotics
Bulletin of Moscow University 2, 27-34
2
1990
The effect of sulphonol on the culture of alga Dunaliella asymmetrica and on Fagopyrum esculentum seedlings
SA Ostroumov, EB Borisova, LI Lenova, VN Maksimov
Gidrobiologicheskij zhurnal/Hydrobiological journal. Kiev 26 (2), 96-98
2
1990
EXPERIMENTAL INTERDISCIPLINARY RESEARCH IN LIFE SCIENCE: MOLECULAR AND ENVIRONMENTAL TOXICOLOGY, BIOPHYSICS. FROM FUNDAMENTAL BIOMEDICAL RESEARCH TO APPLICATIONS. SOME RESULTS AND BIBLIOGRAPHY
SN Orlov, SV Kotelevtsev, KN Novikov, AA Selishcheva, OA Akimova, ...
ПРЕДИСЛОВИЕ/FOREWORD, 9
1
2013
Biocontrol of water quality: Multifunctional role of biota in water self;-purification
Russian Journal of General Chemistry 80 (13), 2754-2761;
full text free: https://www.researchgate.net/publication/227303635_ ;
1
2010
VODNYI MAKROFIT CERATOPHYLLUM DEMERSUM IMMOBILIZUET Au POSLE DOBAVLENIYa V VODU NANOChASTITs
SA Ostroumov, GM Kolesov
Doklady Akademii Nauk 431 (4), 566-569
1
2010
The Effect of Synthetic Surfactants on the Hydrobiological Mechanisms of Water Self-Purification
Water Resources 31 (5), 502-510
1
2004
Effect of cationic surfactant on mussels: Inhibition of water filtration
SA Ostroumov, J Widdows
MOSCOW UNIVERSITY BIOLOGICAL SCIENCES BULLETIN C/C OF VESTNIK-MOSKOVSKII ...
1
2004
Effect of a cationic amphiphilic compound on rotifers
SA Ostroumov, N Walz, R Rusche
Doklady Biological Sciences 390 (1), 252-255
1
2003
Responses of Unio tumidus to Mixed Chemical Preparations and the Hazard of Synecological Summation of Anthropogenic Effects
Doklady Biological Sciences 380 (1), 492-495
1
2001
The hazard of a two-level synergism of synecological summation of anthropogenic effects
Doklady Biological Sciences 380 (1), 499-501
1
2001
Pellets of some mollusks in the biogeochemical flows of C, N, P, Si, and Al
SA Ostroumov, MP Kolesnikov
Doklady Biological Sciences 379 (1), 378-381
1
2001
**
Title
Year
Imbalance of factors providing control of unicellular plankton populations exposed to anthropogenic impact
Doklady Biological Sciences 379 (1), 341-343
1
2001
BIOLOGICAL-ACTIVITY OF WATERS POLLUTED WITH A LIQUID SURFACTANT-CONTAINING DETERGENT
SA Ostroumov, VS Khoroshilov
Izvestiya Akademii Nauk SSSR Seriya Biologicheskaya, 452-458
1
1992
Bioassay of surfactants based on the disruption of seedling attachment to the substrate and rhizoderm root hair formation
SA Ostroumov, VN Maksimov
Biology bulletin of the Academy of Sciences of the USSR (USA)
1
1992
Biotesting of surfactant(sulphonol) toxicity using rice seedlings as a test-object
SA Ostroumov, AE Golovko
Gidrobiologicheskij zhurnal/Hydrobiological journal. Kiev 28 (3), 72-75
1
1992
Response of test-organisms to water pollution with quaternary ammonia compounds
Water resources (USA)
1
1992
A BIOASSAY OF SUFRACTANT SOLUTIONS BASED ON THE DISTURBANCE OF SEEDLING ADHESION TO THE SUBSTRATE AND THE DEVELOPMENT OF ROOT HAIRS BY RHYZODERMIS
SA Ostroumov, VN Maximov
IZVESTIYA AKADEMII NAUK SSSR SERIYA BIOLOGICHESKAYA, 571-575
1
1991
ECOLOGICALLY SIGNIFICANT BIOLOGICALLY-ACTIVE SUBSTANCES AND METHODOLOGICAL ASPECTS OF ANALYSIS OF BIOLOGICAL-ACTIVITY OF POLLUTANTS
Uspekhi Khimii 60 (3), 554-555
1
1991
Ochrana zive prirody [in Czech language; recommended for universities as a textbook];
AV Jablokov, et al.
Prague.
Acad
1
1991
Phytotoxicity of a surfactant-containing product towards macrophytes
SA Ostroumov, EA Solomonova
Russian Journal of General Chemistry 83 (13), 2614-2617; full text:
https://www.researchgate.net/publication/263456086_;
2013
Study of hydrocarbon oxidizing microorganisms from deep groundwater of the Puchezh-Katunki impact structure
GV Kondakova et al.
Moscow University Biological Sciences Bulletin 68 (3), 119-123
2013
Environment, Ecology, Conservation of Biodiversity, Natural and Aquatic Resources, Sustainability: These publications of modern scientists are available in libraries:[key words: books, publications, environment, ecology, biology, environmental science, life science, conservation, nature]
2013
List of key publications of Dr. SA Ostroumov in English, short comments that explain it: what is the innovative thing in each of those publications; the web-sites where those publications are available online free.
2013
e-Archiv of Environmental and Life Sciences. 2012. Vol. 1, No. 1 (January 12), 04/29/2011-01/12/2012, a summary of recent materials at Scribd: 356 materials
2013
Environmental Sciences, Life Sciences. Authored, coauthored by Dr. Sergei Ostroumov: These publications are available online at the site: Springerlink
2013
Response of test-organisms to water pollution with quaternary ammonia compounds.-Water Resources (USA; ISSN 0097-8078) 1992, v. 18 (2) p. 171-175.**Реагирование тест-организмов на загрязнение водной среды четвертичным аммониевым соединением//Водные ресурсы. 1991.№ 2. С. 112-116.
Water Resources
2013
Toxicity of nanoparticles of copper oxide and iron oxide: Bioassay on the human cell cultures of the HeLa cells
SA Ostroumov, RY Podchernyaeva, IA Suetina, OA Lopatina
Ecologica 20 (72), 759-762
2013
Environmental sciences, at PubMed, selected innovative papers
http://5bio5.blogspot.com/2014/08/34-paper-collection-on-environmental.html
2013
Effects of three types of metal oxide nanoparticles (TiO2, CuO, Al2O3) on the seedlings of the higher plant Lens culinaris
SA Ostroumov, B Xing
Ecologica 19 (65), 10-14
2012
Studying the fate of pollutants in the environment: binding and immobilization of nanoparticles and chemical elements
Ecologica 18 (62), 129-132
2011
The role of biodetritus in accumulation of elements in aquatic ecosystems
SA Ostroumov, GM Kolesov
Contemporary Problems of Ecology 3 (4), 369-373
2010
**
Title
Year
Interaction of nanoparticles of gold with aquatic plant: Binding to Ceratophyllum demersum
SA Ostroumov, GM Kolesov
Ecologica 17 (57), 3-6
2010
K IZUChENIYu OPASNOSTI ZAGRYaZNENIYa BIOSFERY: VOZDEISTVIE DODETsILSUL'FATA NATRIYa NA PLANKTONNYKh FIL'TRATOROV
IM Vorozhun, et al.
Doklady Akademii Nauk 425 (2), 271-272
2009
On studying the hazards of pollution of the biosphere: effects of sodium dodecylsulfate (SDS) on planktonic filter-feeders.-Doklady Biological Sciences, 2009, Vol. 425, pp. 133–134
Doklady Biological Sciences 425, 133-124
2009
Effects of the synthetic surfactants and chemical mixtures on marine mollusks used in aquaculture
Рыбное хозяйство (Российская Федерация)
2009
On the concept of the database on the role of aquatic organisms in biogenic migration of matter including metals and other elements
Reports of 5. International scientific-practical conference'Heavy metals and ...
2008
On the concepts of biochemical ecology and hydrobiology: ecological chemomediators.-Contemporary Problems of Ecology, 2008, Volume 1 (2): 238-244
Contemporary Problems of Ecology, 1 (2), 238-244.
2008
Basics of the molecular-ecological mechanism of water quality formation and water self-purification.-Contemporary Problems of Ecology, 2008, Vol. 1, No. 1, p. 147-152
Contemporary Problems of Ecology, 1 (1), 147-152.
2008
Статьи по экологии, papers on environmental sciences, ecology
EA Solomonova, SA Ostroumov
Moscow University Biological Sciences Bulletin 62 (4), 176-179
2007
Solomonova EA et al. Tolerance of an aquatic macrophyte Potamogeton crispus L. to sodium dodecyl sulphate.-Moscow University Biological Sciences Bulletin, 2007, 62 (4): 176-179.
Moscow University Biological Sciences Bulletin 62 (4), 176-179
2007
The Roles of Suspension-Feeders in Ecosystems: Synthesis and Conclusions The Comparative Roles of Suspension-Feeders in Ecosystems
Springer Netherlands 47, 345-353
2005
The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation
VESTNIK-ROSSIISKAIA AKADEMIIA NAUK 74, 785-791
2004
О БИОТИЧЕСКОМ САМООЧИЩЕНИИ ВОДНЫХ ЭКОСИСТЕМ. ЭЛЕМЕНТЫ ТЕОРИИ
Доклады Академии Наук (ДАН). 2004, т. 396.№ 1. С. 136-141
2004
On the Fourth International Conference “Water Ecosystems and Organisms-4”
Russian Journal of Marine Biology 29 (4), 262-263
2003
Influence of Some Amphyphilic Substances and Mixtures on Marine Mollusks
Hydrobiological Journal 39 (4)
2003
HYDROBIOLOGIA: PREFACE
SA Ostroumov, SC McCutcheon, CEW Steinberg
Hydrobiologia 469
2002
Inhibitory Analysis of Regulatory Interactions in Trophic Webs.-Doklady Biological Sciences, 2001, 377: 139–141
Поиск, 377p139
2001
Criteria for assessing ecological hazards of man-made impact on biota: Searching for a system
DOKLADY AKADEMII NAUK 371 (6), 844-846
2000
Effects of surfactants on some aquatic and terrestrial organisms
The Ijebu of Western Nigeria: A Historical and Socio-cultural Study, 159
2000
Principles underlying the analysis of environmental hazards due to man-induced impacts, including chemical pollution: a philosophy and new data
MOSCOW UNIVERSITY BIOLOGICAL SCIENCES BULLETIN C/C OF VESTNIK-MOSKOVSKII ...
2000
Biocatalysis of Matter Transfer in a Microcosm Is Inhibited by a Contaminant: Effects of a Surfactant on Limnea stagnalis
SA Ostroumov, MP Kolesnikov
DOKLADY BIOLOGICAL SCIENCES SECTION C/C OF DOKLADY-AKADEMIIA NAUK SSSR 373 ...
2000
**
Title
Year
Basic components of self-purification of ecosystems and its possible chemically induced impairment
SA Ostroumov, VD Fedorov
MOSCOW UNIVERSITY BIOLOGICAL SCIENCES BULLETIN C/C OF VESTNIK-MOSKOVSKII ...
1999
Inhibition of the ability of the mussel Mytilus edulis to filter and purify seawater by an anionic surfactant
SA Ostroumov, P Donkin, FJ Staff
MOSCOW UNIVERSITY BIOLOGICAL SCIENCES BULLETIN C/C OF VESTNIK-MOSKOVSKII ...
1997
Studies on some aspects of ecotoxicology and biochemical ecology of surfactants
SA Ostroumov, LS Samoilenko, MM Telitchenko
BIODETERIORATION AND BIODEGRADATION 9, 641-641
1995
Use of rice sprouts for bioassay of the toxicity of the surfactant sulfonol.
SA Ostroumov, AE Golovko
Hydrobiological Journal/Gidrobiologicheskiy Zhurnal 28 (6), 84-88
1992
EFFECTS OF THE NONIONOGENIC SURFACTANT ON MARINE DIATOMS
S OSTROUMOV, M MAERTZWENTE
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 201, 115-ENVR
1991
Effect of aquatic pollution by the detergent Bio-S on euglenas.
K Vasternak, SA Ostroumov
Hydrobiological Journal/Gidrobiologicheskiy Zhurnal 27 (2), 92-94
1991
Response of photo-organotrophously growing green flagellates to water pollution by the detergent preparation" Kristall"
SA Ostroumov, K Wasternack
Moscow University biological sciences bulletin (USA)
1991
Assessment of biotechnological destruction of anionic surface-active substances using biotesting
SA Ostroumov, LS Samoilenko
Moscow University biological sciences bulletin
1990
Effect of the Detergent'Bio-S' on Euglena in a Contaminated Water Medium(in Russian)
K Vasternak, et al.
Gidrobiologicheskii Zhurnal GBZUAM, 26 (6)
1990
Studies of problems of assessment of biological activities of xenobiotics.
SA Ostroumov
Vestnik Moskovskogo Universiteta, Seriya 16(Biologiya) 16 (2), 27-34
1990
Effect of synthetic detergent" Bio-S" on Euglena gracilis Klebs
K Vasternak, SA Ostroumov
Gidrobiologicheskij zhurnal/Hydrobiological journal. Kiev 26 (6), 78-79
1990
Vvedenie v biokhimičeskuju ėkologiju
Universitet
1986
3. System. of. Criteria. Rivista. pdf The paper is published: Anthropogenic effects on the biota: towards a new system of principles and criteria for analysis of ecological hazards.-Rivista di Biologia/Biology Forum. 2003. 96: 159-170. http://sites. google. com/site/ostroumovsergei/publications-1/rivista2003criteria
Ecological Studies, Hazards, Solutions, 2013, vol. 19, p. 122-124. Some priorities and fundamental concepts in contemporary issues of ecological and molecular toxicology, biogeochemistry and ecological geochemistry: ecotoxicants including membranotropic xenobiotics and metals. Kotelevtsev SV, Orlov SN, Matorin DN, Novikov KN, Sadchikov
VV Ermakov et al.
NEW EXPERIMENTAL DATA ON CHEMICAL-BIOTIC INTERACTIONS WITH PARTICIPATION OF NANOPARTICLES AND METALS.
SA Ostroumov, SV Kotelevtsev, VM Glaser, OM Gorshkova, ME Johnson, ...
The Concept of Aquatic Biota as a Labile and Vulnerable Component of the Water Self-Purification System.-Doklady Biological Sciences, 2000, 372: 286–289
System of principles for conservation of the biogeocenotic function and the biodiversity of filter-feeders.-Dokl Biol Sci (Doklady Biological Sciences). 2002; 383: 147-150
**
Title
Year
Responses of Unio tumidus to Mixed Chemical Preparations and the Hazard of Synecological Summation of Anthropogenic Effects.-Doklady Biological Sciences, 2001, 380: 492–495
Towards the general theory of ecosystem-depended control of water quality.-Ecologica, 2009, vol. 16, No. 54, p. 25-32
AQUATIC ECOSYSTEM UPGRADES WATER QUALITY: MULTI-FACTOR ANALYSIS
New discovery: the heart and core of aquatic ecosystem health
Up-dating and modernizing education in environmental science and ecology: using interdisciplinary concepts (updated 11.5. 2011)
The theory of the hydrobiological mechanism of water self-purification in water bodies: from theory to practice
**
**Addendum.
Some more recommended publications.
Article:
Ecological concepts "ecosystem", "biogeocenosis", "ecosystem boundaries": search for new definitions.

S.A.Ostroumov
Moscow University Biological Sciences Bulletin. 2003. Vol. 58. No. 3. P.29-38 01/2010;
https://www.researchgate.net/publication/201316139_Ecological_concepts_ecosystem_biogeocenosis_ecosystem_boundaries_search_for_new_definitions?ev=prf_pub
https://www.researchgate.net/publication/201316139_
**
Остроумов С.А. Концепции экологии "экосистема", "биогеоценоз", "границы экосистем": поиск новых определений // Вестник МГУ. Серия 16. Биология. 2003. № 3. С.43-50.
https://www.researchgate.net/publication/201316139_
**
Ostroumov S.A., Demina L.L. Role of biogenic detritus of aquatic systems in accumulation of metals and metalloids as exemplified by eight heavy metals and arsenic. – Water Sector of Russia (Vodnoe Khozyaistvo Rossii, ISSN 1999-4508). 2010, No. 1, p. 60-69.
Abstract:
https://www.researchgate.net/publication/260460510_ ;
https://www.researchgate.net/publication/260460510_Role_of_biogenic_detritus_of_aquatic_systems_in_accumulation_of_metals_and_metalloids_as_exemplified_by_eight_heavy_metals_and_arsenic?ev=prf_pub ;
**
Ostroumov S.A. Relationship between water self-purification and environmental repair processes // Water: Chemistry and Ecology. 2009. (Dec). No. 12, p. 29-34. ISSN: 2072-8158.
https://www.researchgate.net/publication/260461603_ ;
**
Максимов В.Н., Нагель Х. , Остроумов С.А. Экспериментальное изучение реакции проростков Fagopyrum esculentum на загрязнение водной среды детергентами - В кн.: Проблемы экологического мониторинга и моделирования экосистем. Ленинград, 1986 , т. 9, с. 87-97. Maksimov V.N., H. Nagel, Ostroumov S.A. Experimental study of the reaction of seedlings Fagopyrum esculentum on water pollution detergents - In : Problems of ecological monitoring and modeling of ecosystems. Gidrometeoizdat Press, Leningrad, 1986, vol. 9, p. 87-97;Maksimov V.N., Nagel' H., Ostroumov S.A. Eksperimental'noye izucheniye reaktsii prorostkov Fagopyrum esculentum na zagryazneniye vodnoy sredy detergentami - V kn.: Problemy ekologicheskogo monitoringa i modelirovaniya ekosistem. Leningrad, 1986 , t. 9, s. 87-97.
https://www.researchgate.net/publication/265058710_ ;
**
Максимов В.Н., Нагель Х., Ковалева Е.Н., Остроумов С.А. Биотестирование вод, загрязненных сульфонолом. - Водные ресурсы, 1988а, №1, с. 165-168; Maximov V.N., Nagel H., Kovaleva E.N., OstroumovS.A. Bioassay of waters contaminated with sulphonol. - Water Resources, 1988a, №1, p. 165-168; Maksimov V.N., Nagel H., Kovaleva Ye.N., Ostroumov S.A. Biotestirovaniye vod, zagryaznennykh sul'fonolom. - Vodnyye resursy, 1988a, №1, s. 165-168.
https://www.researchgate.net/publication/265059024_ ;
**
Максимов В.Н., Нагель Х., Остроумов С.А. Биотестирование вод, содержащих ПАВ (сульфонол) и ДНОК. – Гидробиологический журнал, 1988 б , 24, № 4, с. 54-55; Maksimov V.N., Nagel H., Ostroumov S.A. Biotesting ofwater containing surfactant (sulphonol) and DNOC. - Hydrobiological Journal, 1988 b, 24, № 4, p. 54-55; Maksimov V.N., Nagel H., Ostroumov S.A. Biotestirovaniye vod, soderzhashchikh PAV (sul'fonol) i DNOK. – Gidrobiologicheskiy zhurnal, 1988 b , 24, № 4, s. 54-55.
**
Остроумов С.А. Введение в биохимическую экологию. М.: Изд-во МГУ, 1986.- 176 с. Ostroumov S.A.Introduction to Biochemical Ecology. Moscow, Moscow University Press, 1986.- 176 p. Ostroumov S.A. Vvedeniye v biokhimicheskuyu ekologiyu. M.: Izdatel'stvo Moskovskogo universiteta, 1986.- 176 s.
https://www.researchgate.net/publication/259800839_ ;
**
Остроумов С.А., Максимов В.Н. Деградация водорослей при загрязнении водной среды ПАВ этонием. - Экология,1988, №6, с.57-58. Ostroumov S.A., Maksimov V.N. Degradation of algae under contamination of the aquatic environment with surfactant Etonium. - Ecology, 1988, №6, p.57-58; Ostroumov S.A., Maksimov V.N. Degradatsiya vodorosley pri zagryaznenii vodnoy sredy PAV etoniyem. - Ekologiya,1988, №6, s.57-58.
https://www.researchgate.net/publication/265058974_ ;
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: Articles biology ecology environment environmental toxicology Papers publications Recommendedtop water
0
Добавить комментарий
AUG
25
Prominent researchers in environmental science cited these publications. These papers and books were cited in publications of a prominent scientist, Professor Gleb V. Dobrovolsky, Member, Russian Academy of Sciences,
Prominent researchers in environmental science cited these publications.
These papers and books were cited in publications of a prominent scientist,
Professor Gleb V. Dobrovolsky, Member, Russian Academy of Sciences,
a laureate of many awards.
http://5bio5.blogspot.com/2014/08/prominent-researchers-in-environmental.html
E.g., these articles were cited in his paper on the biosphere, entitled:
The 80th anniversary of the first edition of the book “The Biosphere” of V.I. Vernadsky. Development of some important ideas of the theory of the biosphere.
http://ru.scribd.com/doc/237573788/
https://www.researchgate.net/publication/264974919__80-_____..__._______;
К 80-ЛЕТИЮ ВЫХОДА В СВЕТ КНИГИ В.И. ВЕРНАДСКОГО “БИОСФЕРА”.
РАЗВИТИЕ НЕКОТОРЫХ ВАЖНЫХ РАЗДЕЛОВ УЧЕНИЯ О БИОСФЕРЕ.
Экологическая химия 2007, 16(3): 135–143.
Г.В. Добровольский
Московский государственный университет им. М.В. Ломоносова, Воробьевы горы,
119991 Москва, Россия
Abstracts in Russian and in English; list of references;
К 80-летию выхода в свет книги В.И. Вернадского “Биосфера”. Развитие некоторых важных разделов учения о биосфере.
ABSTRACT (in Russian):
Приведен краткий обзор работ, которые развивают ряд аспектов учения о биосфере, созданного В.И. Вернадским. Основное внимание уделено исследованиям, посвященным биосфере как важному фактору формирования геохимической среды, связи между экологией и химией природных соединений, роли химических веществ как посредников во взаимоотношениях организмов и переносе сигналов и антропогенных воздействий.
Обсуждены вопросы характеристики биосферы как эколого-биохимического континуума, дополнительного выявления преобразующей роли живого вещества, создания более адекватной системы приоритетов для оценки опасности загрязнения биосферы и гидросферы, а также использования организмов для очищения среды.
Приведены сведения о разработке инновационных учебно-методических материалов.
Ключевые слова: биосфера, учение В.И. Вернадского, функции живого вещества, биогеохимия, экология, почвоведение, гидросфера
**
ЛИТЕРАТУРА:
1 Вернадский В.И. (1965) Химическое строение биосферы
Земли и ее окружения. М.: Наука, 374 с.
2. Вернадский В.И. (1989) Биосфера и ноосфера. М.: Наука,
264 с.
3. Вернадский В.И. (2001) Биосфера. М.: Изд. дом
“Ноосфера”, 243 с.
4. Симаков К.В. (2003) Неизвестное об известном. К 140-
летию со дня рождения академика В.И. Вернадского.
Вестник РА. 73. №3, 239–249.
5. Galimov E.M. (2006) Isotope organic geochemistry. Organic
Geochemistry. 37. 1200–1262.
6. Ковальский В.В. (1974) Очерки геохимической экологии.
М.: Наука, 299 с.
7. Ковальский В.В. и Летунова С.В. (1967) Биогеохимия. В
кн.: Развитие биологии в СССР. М.: Наука. с. 642–655.
8. Алимов А.Ф. (2000) Элементы теории функционирования
водных экосистем. СПб.: Наука, 147 с.
9. Винберг Г.Г. (1975) Гидробиология. В кн.: История
биологии. М.: Наука, с. 231–248.
10. Виноградов М.Е. (2004) Биологическая продуктивность
океанических экосистем. В сб.: Новые идеи в
океанологии. Ред. М.Е. Виноградов и С.С. Лаппо. Т. 1.
М.: Наука, с. 237–263.
11. Добровольский Г.В. (ред.) (2002) Деградация и охрана
почв. М.: Изд-во МГУ, 654 с.
12. Добровольский Г.В. (ред.) (2003) Структурно-
функциональная роль почв и почвенной биоты в
биосфере. М.: Наука, 364 с.
13. Добровольский Г.В. (2005) Избранные труды по
почвоведению. Т. 1. Общие вопросы теории и развития
почвоведения. М.: Изд-во МГУ, 530 с.
14. Добровольский Г.В. и Никитин Е.Д. (1990) Функции почв
в биосфере и экосистемах. (Экологическое значение
почв). М.: Наука, 261 с.
15. Добровольский Г.В. и Никитин Е.Д. (2000) Сохранение
почв как незаменимого компонента биосферы. М.:
Наука, 185 с.
16. Заварзин Г.А. (1972) Литотрофные микроорганизмы.
М.: Наука, 323 с.
17. Заварзин Г.А. (1984) Бактерии и состав атмосферы. М.:
Наука, 192 с.
18. Заварзин Г.А. (2003) Лекции по природоведческой
микробиологии. М.: Наука, 348 с.
19. Заварзин Г.А. и Колотилова Н.Н. (2001) Введение
в природоведческую микробиологию. М.: Кн. дом
“Университет”, 256 с.
20. Гальченко В.Ф., Леин А.Ю. и Иванов М.В. (2004)
Интенсивности микробного образования и окисления
метана в донных осадках и водной толще Черного
моря. Микробиология. 73. №2, 271–283.
21. Гальченко В.Ф., Леин А.Ю. и Иванов М.В. (2004)
Содержание метана в донных осадках и водной толще
Черного моря. Микробиология. 73. №2, 258–270.
22. Иванов М.В. (1964) Роль микробиологических процессов
в генезисе месторождений самородной серы. М.:
Наука, 180 с.
23. Иванов М.В. и Каравайко Г.И. (2004) Геологическая
микробиология. Микробиология. 73. №5, 581–597.
24. Израэль Ю.А. и Цыбань А.В. (1989) Антропогенная
экология океана. Л.: Гидромет, 526 с.
25. Матишов Д.Г. и Матишов Г.Г. (2001) Радиационная
экологическая океанология. Апатиты: Кольский
научный центр РАН, 417 с.
26. Сукачев В.Н. (1972) Избранные труды. Л.: Наука. Т. 1.
417 с.
27. Шварц С.С. (1980) Экологические закономерности
эволюции. М.: Наука, 278 с.
28. Шилов И.А. (2001) Экология. М.: Высшая школа, 512 с.
29. Розенберг Г.С., Мозговой Д.П. и Гелашвили Д.Б. (1999)
Экология. Самара: Самарский научный центр РАН,
396 с.
30. Yablokov A.V. and Ostroumov S.A. (1991) Conservation of
Living Nature and Resources: Problems, Trends, Prospects.
Berlin, N.-Y.: Springer, 272 p.
https://www.researchgate.net/publication/200637729_
31. Башкин В.Н. и Касимов Н.С. (2004) Биогеохимия. М.:
Научный мир, 647 с.
32. Романенко В.Д. (2004) Общая гидроэкология. Киев:
Генеза, 664 с.
33. Ermakov V.V. (2006) Technogenic aspects of biogeochemistry
and geochemical ecology. Problems of Biogeochemistry
and Geochemical Ecology. № 1, 8–23.
34. World Resources 1996–1997. (1996) N.-Y.: Oxford University
Press, 368 p.
35. Фундаментальные основы управления биологическими
ресурсами (2005) Сборник научных статей. М.:
Товарищество научных изданий КМК, 516 c.
36. Израэль Ю.А. (1984) Экология и контроль состояния
среды. М.: Гидрометеоиздат, 560 с.
37. А б а к у м о в В . А . и С у щ е н я Л . М . (19 91)
Гидробиологический мониторинг пресноводных
э ко с и с т е м и п у т и е г о с о в е р ш е н с т в о в а н и я .
Экологические модификации и критерии экологического
нормирования. Л.: Гидрометиздат. c. 41–61.
38. Розанов А.Ю. (1999) Ископаемые бактерии и новый
взгляд на процессы осадкообразования . Соросовский
Образовательный Журнал, № 10, с. 63–67.
39. Oстроумов С.A. (1986) Введение в биохимическую
экологию. М.: Изд-во МГУ, 176 с.
40. Oстроумов С.A. (2002) О роли гидробионтов в
регуляции потоков вещества и миграции элементов в
водных экосистемах. Вестник РАЕН. 2. № 3, 50–54.
41. Oстроумов С.A. (2003) О функциях живого вещества в
биосфере. Вестник РАН. 73. № 3. 232–238.
The Functions of Living Substances in the Biosphere. -
Herald of the Russian Academy of Sciences, 2003, 73 (2): 164-169, http://5bio5.blogspot.com/2012/09/the-functions-of-living-substances-in.html
42. Oстроумов С.A. (2004) Биологический механизм
самоочищения в природных водоемах и водотоках:
теория и практика. Успехи современной биологии. 124,
№5, 429–442.
43. Oстроумов С.A. (2004) Геохимический аппарат водных
экосистем: биокосная регуляция. Вестник РАН. 74, №
9, 785–791.
44. Oстроумов С.A. (2006). Факты и концепции экологии. 1.
Новые научные дисциплины: биохимическая экология
и биохимическая гидробиология. 2. О биохимическом
аппарате биосферы. Ecological Studies, Hazards, Solutions.
7, 106–115.
45. Oстроумов С.A. (2005) Поиск подходов к решению
проблемы глобальных изменений: элементы теории
биотическо-экосистемного механизма регуляции и
стабилизации параметров биосферы, геохимической
и геологической среды. Вестник Московского ун-та.
Серия биология. № 1, 24–33.
46. Федоров В.Д. и Гильманов Т.Г. (1980) Экология. М.: Изд-
во МГУ, 464 с.
47. Oстроумов С.A. (2002). Новые варианты определений
понятий и терминов “экосистема” и “биогеоценоз”.
ДАН. 383. №4, 571–573.
48. Harborne J. B. (1988) Introduction to Ecological Biochemistry.
London: Academic Press, 356 p.
49. Остроумов С.А. и Соломонова Е.А. (2006) К разработке
гидробиологических вопросов фиторемедиации:
в з а и м од е й с т в и е т р е х в и д о в м а к р о ф и т о в с
додецилсульфатом натрия. Вода и экология. № 3,
45–49.
50. Ostroumov S.A. (2006) Biological Effects of Surfactants.
Boca Raton, London, N.–Y.: CRC Press. Taylor & Francis,
279 p.
https://www.researchgate.net/publication/259364716_ ;
https://www.researchgate.net/publication/259335534_ ;
https://www.researchgate.net/publication/259384988_;
51. Малахов В.В. и Медведева Л.А. (1991) Эмбриональное
развитие двустворчатых моллюсков в норме и при
воздействии тяжелых металлов. М.: Наука, 132 с.
52. Aquatic Ecosystems and Organisms. (2006). Moscow:
MAX-Press, p 156.
53. Алимов А.Ф. (1981) Функциональная экология
пресноводных двустворчатых моллюсков. Тр.
Зоологического института АН СССР. Л.: Наука,
248 с.
54. Сущеня Л.М. (1975) Количественные закономерности
питания ракообразных. Минск: Наука и техника, 208 с.
55. Брагинский Л.П. и Сиренко Л.А. (2003) Всесторонний
анализ токсикологической опасности поверхностно
− активных веществ для гидробионтов. Гидробиол.
журнал. 39. № 3, 115–118.
56. Горшков В. Г. (1995) Физические и биологические основы
устойчивости жизни. М: ВИНИТИ, 470 с.
57. Oстроумов С.A. (2007) Фиторемедиация и зооремедиация
водных экосистем в связи с теорией биотического
самоочищении вод. Проблемы биогеохимии и
геохимической экологии. № 4, 83–97.
58. Касимов Н.С., Курбатова А.С., Башкин В.Н. и др. (2004)
Экология города. Ред. Касимов Н.С. М.: Научный мир,
620 с.
59. Черешнев В.А. (2004) Иммунитет человека и общества.
Екатеринбург: Изд-во Уральского отделения РАН,
316 с.
60. www.worldwatch.org
The 80th anniversary of the first edition of the book “The Biosphere” of V.I. Vernadsky. Development of some important ideas of the theory of the biosphere.
G.V. Dobrovolsky.
Lomonosov Moscow State University, Vorob’evy gory, 119992 Moscow, Russia;
ABSTRACT: A brief survey of publications which expand some ideas of the theory of the biosphere developed by V.I. Vernadsky was made. Main attention was paid to studies on the biosphere as an important factor for formation of the geological environment including soils and hydrosphere, to the links between ecology and chemistry of natural compounds, to the role of chemicals as mediators in interaction between organisms and transfer of signals in the biosphere. The problems on the biosphere characteristics as an ecological–biochemical continuum, on an additional data on the active transforming of alive matter, on the development of a more adequate system of priorities to estimate hazards of pollution to the biosphere and to the hydrosphere and on an usage of various organisms to clean the environment were also considered. Information on developing new educational programs and supplies was displayed.
Key words: theory of V.I. Vernadsky, biosphere, hydrosphere, functions of alive organisms, biogeochemistry, ecology, soil science**
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: citation environmental science top publications биосфера окружающая среда цитирование экология
0
Добавить комментарий
AUG
25
Distinguished scientists cited these articles on ecology, environment, water. Key words: citation, ecology, environment, water, environmental science, ecosystems, environmental toxicology, aquatic,
Distinguished scientists cited these articles on ecology, environment, water.
http://5bio5.blogspot.com/2014/08/distinguished-scientists-cited-these.html
These scientific articles were cited and commented favorably by scientists in many countries, and inter alia, by Professor V.A. Abakumov (2013), the leading expert in aquatic ecology in Russian Federation, and Chair, Department of Ecology, an international university in the Moscow Region. He cited these articles in his paper entitled “A review of some achievements in environmental sciences, general ecology and aquatic ecology: functioning of ecosystems and environmental toxicology”.
http://5bio5.blogspot.ru/2014/08/va-abakumov-review-of-some-achievements.html
Key words: citation, ecology, environment, water, environmental science, ecosystems, environmental toxicology, aquatic, V.A. Abakumov, self-purification, pollution, detergents, filter-feeders, new methods,
1. Biocontrol of water quality: Multifunctional role of biota in water self-purification. - Russian Journal of General Chemistry, 2010, 80 (13): 2754-2761. http://5bio5.blogspot.com/2012/08/biocontrol-of-water-quality.html
2. The role of biodetritus in accumulation of elements in aquatic ecosystems. - Contemporary Problems of Ecology, 2010; 3 (4): 369-373. Full text: http://ru.scribd.com/doc/114001532/
http://trove.nla.gov.au/work/40349852
Abstract: http://www.scribd.com/doc/75098592;
[authors: ... Kolesov G. M. ]
3. On the concepts of biochemical ecology and hydrobiology: Ecological chemomediators. - Contemporary Problems of Ecology, 2008, 1 (2): 238-244. http://www.scribd.com/doc/63711272/
http://www.scribd.com/doc/73795942;
4. Basics of the molecular-ecological mechanism of water quality formation and water self-purification. - Contemporary Problems of Ecology, 2008, 1 (1): 147-152. http://trove.nla.gov.au/work/79286149 http://5bio5.blogspot.com/2012/07/basics-of-molecular-ecological.html ;https://sites.google.com/site/ostroumovsergei/basics-of-the-molecular-ecological-mechanism-of-water-quality-formation-and-water-self-purification---contemporary-problems-of-ecology-2008-vol-1-no-1-p-147-152 ;
5. Inhibition of mussel suspension feeding by surfactants of three classes. Hydrobiologia, 2006, Volume: 556, Pages: 381-386. http://www.scribd.com/doc/45958156 ; [authors: ... Widdows J. ]
6. On the multifunctional role of the biota in the self-purification of aquatic ecosystems. - Russian Journal of Ecology, 2005, 36 (6): 414-420. http://www.scribd.com/doc/45572968;
http://5bio5.blogspot.com/2012/09/on-multifunctional-role-of-biota-in.html
7. Some aspects of water filtering activity of filter-feeders. Hydrobiologia, 2005, Volume: 542, Pages: 275-286. http://www.scribd.com/doc/44105992;
8. Aquatic ecosystem as a bioreactor: water purification and some other functions. - Rivista di Biologia - Biology Forum, 97(1):67–78, 2004. http://5bio5.blogspot.com/2012/08/aquatic-ecosystem-as-bioreactor-water.html ;http://www.scribd.com/doc/52656760
9. Studying effects of some surfactants and detergents on filter-feeding bivalves. - Hydrobiologia, 500: 341–344, 2003. http://www.scribd.com/doc/63898669http://www.springerlink.com/content/k05884h730t228w4/
10. S.A. Ostroumov, S.I. Dodson, D. Hamilton, S.A. Peterson, R.G. Wetzel. Medium-term and long-term priorities in ecological studies. - Rivista di Biologia, 96(2):327–332, 2003.http://www.scribd.com/doc/48100827
http://5bio5.blogspot.com/2012/08/medium-term-and-long-term-priorities-in.html
11. The Functions of Living Substances in the Biosphere. -
Herald of the Russian Academy of Sciences, 2003, 73 (2): 164-169,
http://5bio5.blogspot.com/2012/09/the-functions-of-living-substances-in.html
12. Ostroumov S.A. Anthropogenic effects on the biota: Towards a new system of principles and criteria for analysis of ecological hazards. - Rivista di Biologia - Biology Forum, 2003, Volume: 96, Issue: 1, Pages: 159-169.
http://5bio5.blogspot.com/2012/09/ostroumov-sa-anthropogenic-effects-on.html
13. Ostroumov S.A. Inhibitory analysis of top-down control: new keys to studying eutrophication, algal blooms, and water self-purification. - Hydrobiologia, 2002, Vol. 469, Issue: 1-3, Pages: 117-129. http://www.scribd.com/doc/52598579 http://www.deepdyve.com/lp/springer-journals/inhibitory-analysis-of-top-down-control-new-keys-to-studying-cDrLImLx31
http://www.scribd.com/doc/50363310
www.moip.msu.ru/?p=154
http://5bio5.blogspot.com/2012/07/inhibitory-analysis-of-top-down-control.html
14. Ostroumov S.A. Polyfunctional role of biodiversity in processes leading to water purification: current conceptualizations and concluding remarks. - Hydrobiologia, 2002, Volume: 469; Issue: 1-3; Pages: 203-204.http://www.deepdyve.com/lp/springer-journals/polyfunctional-role-of-biodiversity-in-processes-leading-to-water-6hc0hSENAj
15. Ostroumov S.A. An amphiphilic substance inhibits the mollusk capacity to filter out phytoplankton cells from water. - Biology Bulletin [ =Izvestiia Akademii nauk. Seriia biologicheskaia / Rossiĭskaia akademiia nauk = Izv. Akad. Nauk Ser. Biol.], 2001, Volume 28, No. 1, p. 95-102. http://www.scribd.com/doc/63444377 ;
[in English edition, Biology Bulletin, pp. 95–102];
[In Russian edition, Izv. Akad. Nauk Ser. Biol., pp. 108–116];
16. Ostroumov S.A. Criteria for assessing ecological hazards of man-made impact on biota: Searching for a system. - Doklady Akademii Nauk, 2000, Volume: 371, Issue: 6, Pages: 844-846. (in Russian); Criteria of ecological hazards due to anthropogenic effects on the biota: searching for a system. - Dokl Biol Sci (Doklady Biological Sciences). 2000; 371: 204-206. (in English); English paper online free:http://www.scribd.com/doc/49088234 http://sites.google.com/site/2000dbs371p204criteria/
17. Ostroumov S.A. Biological filtering and ecological machinery for self-purification and bioremediation in aquatic ecosystems: Towards a holistic view. - Rivista di Biologia - Biology Forum, 1998, Volume: 91, Issue: 2, Pages: 221-232. http://www.scribd.com/doc/42830557
18. Fisher N.; Maertz-Wernte M.; Ostroumov S.A. Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana.-
Izvestiya Akademii Nauk Seriya Biologicheskaya, 1996, No. 1, P. 91-95.
https://www.researchgate.net/publication/264984288_Effects_of_aquatic_pollution_by_a_non-ionogenic_surfactant_on_the_marine_diatom_Thalassiosira_pseudonana ;
English abstract of this paper on the web-site of the publishers: http://www.maik.ru/cgi-perl/search.pl?type=abstract&name=biobull&number=1&year=96&page=76
19. Waterbury J., Ostroumov S.A. Effect of nonionogenic surfactant on cyanobacteria. - Microbiology, 1994, 63 (2): 140-142.
https://www.researchgate.net/publication/264988450_Effect_of_Nonionogenic_Surfactant_on_Cyanobacteria ;
Cited, mentioned at British Library Direct as: http://direct.bl.uk/bld/PlaceOrder.do?UIN=023773570&ETOC=EN&from=searchengine At the site of the U.S. library (Woods Hole, MBL):http://bibapp.mbl.edu/works/416
20. Ostroumov, S. A.; Semykina, N. A. Reaction of Fagopyrum esculentum Moench to Pollution of Aqueous Medium with Polymeric Surfactants. - Russian Journal of Ecology, 1993, 24 (6): 386-390. Availability via the site: http://direct.bl.uk/bld/PlaceOrder.do?UIN=019540005&ETOC=EN&from=searchengine; Cited at British Library Direct; see: http://direct.bl.uk/bld/PlaceOrder.do?UIN=019540005&ETOC=EN&from=searchengineCited at: http://www.world-pharmacy.info/fagopyrum;
21. Ostroumov S.A.; Khoroshilov V.S. Biological activity of waters polluted with a liquid surfactant-containing detergent. - Izvestiya Akademii Nauk SSSR, Seriya Biologicheskaya, 1992, No. 3, P. 452-458, See the sites:http://moscowstate.academia.edu/SergeiOstroumov/Papers/1906576 ;http://moscowstate.academia.edu/SergeiOstroumov/Papers/1906576/Biological_activity_of_waters_polluted_with_a_liquid_surfactant-containing_detergent; Citation, e.g., in Australia: cited as Ostroumov SA, Khoroshilov VS (1992) Biological activity of waters polluted with a liquid surfactant-containing detergent. - Izvestiya Rossiiskoi Akademii Nauk Seriya Biologicheskaya 0, 452-458. At:http://www.newcrops.uq.edu.au/listing/species_pages_F/Fagopyrum_esculentum_1992.htm; Also, cited as:458. Inhttp://www.newcrops.uq.edu.au/listing/fagopyrumesculentum.htm
22. Ostroumov S.A. Nontraditional nonanimal approaches to the ecotoxicology of xenobiotics. - Abstracts of Papers of the American Chemical Society, 1992, Vol. 203 (1), P. 302-ENVR.
23. Ostroumov S.A.; Maximov V.N. A bioassay of surfactant solutions based on the disturbance of seedling adhesion to the substrate and the development of root hairs by rhizodermis. - Izvestiya Akademii Nauk SSSR, Seriya Biologicheskaya, 1991, No. 4, P. 571-575. Cited as: Ostroumov, S. A., and V. N. Maksimov (1991). A bioassay of surfactant solutions based on the disturbance of seedling adhesion to the substrate and the dev elopment of root hairs by the rhizodermis.- Izvestiya Akademii Nauk Sssr Seriya Biologicheskaya (4): 571-575.Cited in Australia: http://www.newcrops.uq.edu.au/listing/fagopyrumesculentum.htm; Cited at: http://eurekamag.com/research/006/931/bioassay-surfactant-solutions-based-disturbance-seedling-adhesion-substrate-progress-root-hairs-rhizodermis.php#.UEJkp9bN-M4 ;
24. Ostroumov S. A. Biologically active substances of ecological importance and methodological aspects of the estimation of the biological activity of pollutants. - RUSS. CHEM. REV., 1991, 60 (3), 265–265. DOI: 10.1070/RC1991v060n03ABEH001051;http://moscowstate.academia.edu/SergeiOstroumov/Papers/1908804http://moscowstate.academia.edu/SergeiOstroumov/Papers/1908804/Biologically_active_substances_of_ecological_importance_and_methodological_aspects_of_the_estimation_of_the_biological_activity_of_pollutants
25. Ostroumov, S. A.; Tret'yakova, A. N. Effect of environmental pollution with a cationic surface active substance on algae and Fagopyrum esculentum sprouts. - Soviet Journal of Ecology, 1990, Vol. 21, No. 2, pp. 79-81. Available at: http://www.cabdirect.org/abstracts/19911959003.html; jsessionid=A94FF8C3946B30B7F886D2BCF88204FC;
A variant of the translation of the title of this paper: Effect of environmental pollution by cationic surfactant on algae and seedlings of Fagopyrum esculentum;
[translated from the original paper in the Russian peer-reviewed journal ‘Ekologiya’; in the Russian journal the pages of the paper are: p. 43-46].
26. http://www.world-pharmacy.info/fagopyrum [here, Ref. 20 was cited]
27. http://www.newcrops.uq.edu.au/listing/species_pages_F/Fagopyrum_esculentum_1992.htm
28.
https://www.researchgate.net/publication/264981057_Biological_activity_of_waters_polluted_with_a_liquid_surfactant-containing_detergent ;
http://www.newcrops.uq.edu.au/listing/fagopyrumesculentum.htm
[here, see a citation of the paper: Ostroumov, S. A., and V. S. Khoroshilov (1992). Biological activity of waters polluted with a liquid surfactant-containing detergent.- Izvestiya Rossiiskoi Akademii Nauk Seriya Biologicheskaya (3): 452-458; In Australia];
29. http://www.newcrops.uq.edu.au/listing/fagopyrumesculentum.htm [here, Ref 23 was cited, i.e. this paper was cited in Australia: Ostroumov, S. A. and V. N. Maksimov (1991). A bioassay of surfactant solutions based on the disturbance of seedling adhesion to the substrate and the dev elopment of root hairs by the rhizodermis. Izvestiya Akademii Nauk Sssr Seriya Biologicheskaya (4): 571-575];
30. Abakumov V.A. Development of some concepts and issues of ecology and hydrobiology. — Ecol. Studies, Haz., Sol., 2006, v. 11, p. 34-38.
31. Abakumov V.A. Innovative approaches to remediation and restoration of polluted aquatic systems. – Water: Technology and Ecology. 2007. No. 4. p. 69-73.
32. Abakumov V.A. New achievements in the studies of aquatic ecosystems and organisms: the concept of ecological repair. - Water: Technology and Ecology. 2007. No. 2. p.70-71.
33. Abakumov V.A. New advances in remediation and restoration of polluted aquatic systems. – Problems of Biogeochemistry and Geochemical Ecology. 2007, No. 2 (4), 98-100.
34. Abakumov V.A. New concept in the development of the theory of water self-purification: ecological repair. – Problems of Biogeochemistry and Geochemical Ecology. 2007, No. 2 (4), 45-46.
ADDENDUM. Relevant web-sites:
The references and comments on these publications see here: http://www.scribd.com/doc/104689498/http://5bio5.blogspot.com/2012/08/indexed-with-abstracts-web-of-science.html ;
** Citation of these and related publications: Citation (USA, Canada, UK, France, Germany, Switzerland, Netherlands,Denmark, Belgium...) environmental sciences: http://5bio5.blogspot.com/2012/09/citation-of-scientific-research-at.html;
** Selected examples of citing Moscow University, Russian Academy of Sciences scientists.http://5bio5.blogspot.com/2012/09/citation-of-moscow-ecologists-selected.html;
** Lithuania. Citation of the book of Moscow ecologists. Cited the book: Yablokov, Ostroumov: http://5bio5.blogspot.com/2012/09/lithuania-citation-of-book-of-moscow.html ;
** Cited: 9 selected papers on environmental science from Moscow University. Citation at the site:http://www.biomedsearch.com; http://5bio5.blogspot.com/2012/09/cited-9-papers-on-environmental-science.html ;
** Italy: new citation of scientific research on environmental science, ecology at Moscow University:http://5bio5.blogspot.com/2012/09/italy-new-citation-of-scientific.html ;
** Brazil: new citation of the research at Moscow University.
http://5bio5.blogspot.com/2012/09/brazil-new-citation-of-research-at.html ;
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: aquatic citation detergents ecology ecosystems environment environmental science environmental toxicology filter-feeders new methods pollution self-purification V.A. Abakumov water
0
Добавить комментарий
AUG
25
Biological effects of surfactants. Book, papers (selected). Kew words: environmental toxicology, ecotoxicology, toxicity, detergents, pollution, bioassay, hazard assessment, environmental safety.
Biological effects of surfactants. Book, papers (selected).
Kew words: environmental toxicology, ecotoxicology, toxicity, detergents, pollution, bioassay, hazard assessment, environmental safety.
**

Show dataset
Source
Dataset: book titled: Biological Effects of Surfactants; Сover, abstract, contents, reviews; Environmental hazards of detergents; acquired by Harvard University, Oxford, Cambridge, MIT
Ostroumov S.A
[Show abstract]
Publish resources

Show dataset
Source
Dataset: On the book published, titled: Biological Effects of Surfactants. much info
Ostroumov S.A
[Show abstract]
Publish resources

Show dataset
Source
Dataset: On the book titled: Biological Effects of Surfactants. much info
Ostroumov S. A.
[Show abstract]
Publish resources

Show dataset
Source
Dataset: Pictures, photos of organisms studied in book: Biological Effects of Surfactants. More on the book: https://www.researchgate.net/publication/200637626
Ostroumov S. A.
[Show abstract]
Publish resources
0 requests
Publish full-text
Article: Biological effects of surfactants on organisms (book). Chapter 6. Studying the biological effects of mixtures that contain surfactants, and the effects of some other chemicals and samples.
Ostroumov S. A.
[Show abstract]
Chapter 6. Studying the biological effects of mixtures that contain surfactants, and the effects of some other chemicals and samples. In:Biological effects of surfactants on organisms (Moscow, MAX Press, 2001), p.124-143. 01/2010;
Publish full-text Publish resources
0 requests
Publish full-text
Article: Biological effects of surfactants on organisms (book). Chapter 4. Biological activity of water which contains non-ionic surfactants.
S.A.Ostroumov / Остроумов С.А.
[Show abstract]
Chapter 4 of the book ‘Biological effects of surfactants on organisms’, published in Russian by S.A.Ostroumov (MAX Press, Moscow, 2001; 334 pages in toto). 01/2010;
Publish full-text Publish resources

Show dataset
Source
Dataset: Citation of book. Biological effects of surfactants. Cited in U.S.A., U.K., Germany, Italy, Austria, Netherlands, Denmark, Belgium, Portugal
Ostroumov S. A.
[Show abstract]
Publish resources

Read full-text
Source
Book: Biological Effects of Surfactants
Ostroumov S. A.
[Show abstract]
01/2006; CRC Press, Taylor & Francis.
Publish resources
0 requests
Publish full-text
Chapter: Book published: Ostroumov S.A. Biological Effects of Surfactants. CRC Press. Taylor & Francis. Boca Raton, London, New York. 2006. 279 p., tab. Bibliogr. on pages 203-243 and 250-253. Subject Index: p.255-279. ISBN 0-8493-2526-9. ISBN 13: 9780849325267.
Ostroumov S. A.
[Show abstract]
01/2006; , ISBN: ISBN 0-8493-2526-9. ISBN 13: 9780849325267. [Electronic book text: ISBN: 6610517002; ISBN 13: 9786610517008;
Publish full-text Publish resources
0 requests
Publish full-text
Article: book ‘Biological effects of surfactants on organisms’2001.Chapter 1.Man-made effects and synthetic surfactants as chemicals that pollute aquatic ecosystems.
S.A.Ostroumov
[Show abstract]
Chapter 1 of the book ‘Biological effects of surfactants on organisms’, published in Russian by S.A.Ostroumov (MAX Press, Moscow, 2001; 334 pages in toto). 01/2010;
Publish full-text Publish resources

Show dataset
Source
Dataset: Citation of book. Biological effects of surfactants. Cited in U.S.A., U.K., Germany, Italy, Austria, Netherlands, Denmark, Belgium, Portugal
Ostroumov S. A.
Publish resources

Show dataset
Source
Dataset: Citation of the book. Biological effects of surfactants. Cited in U.S.A., U.K., Germany, Italy, Austria, Netherlands, Denmark, Belgium, Portugal
Ostroumov S. A.
Publish resources
0 requests
Publish full-text
Article: Biological effects of surfactants on organisms (book). Chapter 2. Organisms and methods.
S.A.Ostroumov / Остроумов С.А.
[Show abstract]
Chapter 2 of the book ‘Biological effects of surfactants on organisms’, published in Russian by S.A.Ostroumov (MAX Press, Moscow, 2001; 334 pages in toto). 01/2010;
Publish full-text Publish resources

Show dataset
Source
Dataset: Citation of book. Biological effects of surfactants. Cited in U.S.A., U.K., Germany, Italy, Austria, Netherlands, Denmark, Belgium, Portugal
Ostroumov S.A
Publish resources

Show dataset
Source
Dataset: In Harvard University.Book ‘Biological Effects of Surfactants’, other books of U.S. and international scientists, including Nobel Prize winners
Ostroumov S. A.
Publish resources
0 requests
Request full-text
Article: BIOLOGICAL EFFECTS OF SURFACTANTS
ROBERT ERNST, JOSEPH ARDITTI, PATRICK L. HEALEY
[Show abstract]
New Phytologist 04/1971; 70(3):457 - 475. · 6.74 Impact Factor
Request full-text Bookmark
0 requests
Request full-text
Article: BIOLOGICAL EFFECTS OF SURFACTANTS VII GROWTH AND DEVELOPMENT OF BRASSOCATTLEYA (ORCHIDACEAE) SEEDLINGS
R. ERNST, J ARDITTI
[Show abstract]
New Phytologist 05/2006; 96(2):197 - 205. · 6.74 Impact Factor
Request full-text Bookmark

Show dataset
Source
Dataset: Article published in journal Hydrobiologia. Title of the paper: Studying effects of some surfactants and detergents on filter-feeding bivalves. Hydrobiologia
Ostroumov S. A.
[Show abstract]
Publish resources
0 requests
Request full-text
Article: Biological effects of surfactants: Part 6—effects of anionic, non-ionic and amphoteric surfactants on a green alga (Chlamydomonas)
Robert Ernst, Christopher J. Gonzales, Joseph Arditti
[Show abstract]
Environmental Pollution Series A Ecological and Biological 01/1983; 31(3):159–175.
Request full-text Bookmark
0 requests
Request full-text
Article: Biological effects of surfactants, IV. Effects of non-ionics and amphoterics on HeLa cells.
R Ernst, J Arditti
[Show abstract]
Toxicology 02/1980; 15(3):233-42. · 4.02 Impact Factor
Request full-text Bookmark**
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: bioassay book detergents ecotoxicology environmental safety environmental toxicology hazard assessment Papers pollution toxicity
0
Добавить комментарий
AUG
25
Fisher N., Maertz-Wernte M., Ostroumov S. A. Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana . – Biology Bulletin (The original Russian title of the journal: IZVESTIYA AKADEMII NAUK SERIYA BIOLOGICHESKAYA). — 1996. — no. 1. — p. 91–95.
Fisher N., Maertz-Wernte M., Ostroumov S. A. Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana . – Biology Bulletin (The original Russian title of the journal: IZVESTIYA AKADEMII NAUK SERIYA BIOLOGICHESKAYA). — 1996. — no. 1. — p. 91–95.
http://5bio5.blogspot.com/2014/08/fisher-n-maertz-wernte-m-ostroumov-s.html
Indexed in Web of Science.
**
This is a first publication to report a hazardous effect of a synthetic non-ionic surfactant (exemplified by Triton X-100) on diatom algae (exemplified by a marine species, Thalassiosira pseudonana). In the paper, it was shown that this chemical inhibited the reproduction rate and abundance of the cells of this species of marine phytoplankton. The synthetic surfactant Triton X-100 inhibited the growth of the algal culture. Non-ionic surfactants are key components of many detergents including laundry detergents and other chemical products. Non-ionic surfactants became a new type of chemical pollution of freshwater and marine water. This publication discovered a new type of environmental hazard from water pollution with detergents and other chemical products that contain non-ionic surfactants.
** Title: Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana.
Author(s): Fisher N.; MaertzWernte M.; Ostroumov S.A. Source: IZVESTIYA AKADEMII NAUK SERIYA BIOLOGICHESKAYA, Issue: 1, Pages: 91-95, Published: JAN-FEB 1996;
Affiliation of the authors: State University of New York (U.S.A.), Moscow State University (Russian Federation).
Key words:
Algae, diatoms, phytoplankton, Thalassiosira pseudonana, non-ionogenic, surfactant, Triton X-100, ecotoxicology, environmental toxicology, marine, bioassay, growth rate, hazard assessment, State University of New York, Moscow State University
Addendum:Novelty: The first paper to report negative effect of a synthetic surfactants (detergent) on growth of marine diatom algae;
http://5bio5.blogspot.com/2013/07/in-2-hong-kong-libraries-effects-of.html
also, available in 541 U.S. libraries:
Harvard University, Princeton, University of California, Berkely; North Carolina State University , Library of Congress,Stanford University Libraries, Cornell University Library , et al.
http://5bio5.blogspot.com/2013/07/in-541-us-libraries-effects-of-aquatic.html
**
Опубликовано 3 days ago пользователем Dr Green
0
Добавить комментарий
AUG
25
Publication: Detoxification of toxic elements in the biosphere and improving environmental monitoring. In Russ.: ОБЕЗВРЕЖИВАНИЕ ТОКСИЧНЫХ ЭЛЕМЕНТОВ В БИОСФЕРЕ И СОВЕРШЕНСТВОВАНИЕ ЭКОЛОГИЧЕСКОГО МОНИТОРИНГА
Publication: Detoxification of toxic elements in the biosphere and improving environmental monitoring. In Russ.: ОБЕЗВРЕЖИВАНИЕ ТОКСИЧНЫХ ЭЛЕМЕНТОВ В БИОСФЕРЕ И СОВЕРШЕНСТВОВАНИЕ ЭКОЛОГИЧЕСКОГО МОНИТОРИНГА
http://5bio5.blogspot.com/2014/08/publication-detoxification-of-toxic.html
in the peer-reviewed journal: Ekologiya Promyshlennogo Proizvodstva, ISSN: 2073-2589;
**
Reference in Russian:
Остроумов С. Обезвреживание токсичных элементов в биосфере и совершенствование экологического мониторинга // Экология промышленного производства. — 2012. — Т. 1. — С. 26–32.
Reference, translit:
Ostroumov S.A. Obezvrezhivaniye toksichnykh elementov v biosfere i sovershenstvovaniye ekologicheskogo monitoringa // Ekologiya promyshlennogo proizvodstva. — 2012. — T. 1. — S. 26–32.
Reference, translation into English:
Ostroumov S.A. Detoxification of toxic elements in the biosphere and improving environmental monitoring // Ecology of industrial production. - 2012, v. 1, p. 26-32.
**
ОБЕЗВРЕЖИВАНИЕ ТОКСИЧНЫХ ЭЛЕМЕНТОВ В БИОСФЕРЕ И СОВЕРШЕНСТВОВАНИЕ ЭКОЛОГИЧЕСКОГО МОНИТОРИНГА

Author: ОСТРОУМОВ СЕРГЕЙ АНДРЕЕВИЧ
1
Affiliation: 1 МГУ им. М. В. Ломоносова, Москва, Россия;

Тип: статья в журнале - научная статья;
Язык: русский;
Номер: 1 ;
Год: 2012;
Страницы: 26-33;
Цит. в РИНЦ®: 5;
УДК: 550.4.574;

Peer-reviewed journal:
ЖУРНАЛ:
ЭКОЛОГИЯ ПРОМЫШЛЕННОГО ПРОИЗВОДСТВА
Издательство: Всероссийский научно-исследовательский институт межотраслевой информации - федеральный информационно-аналитический центр оборонной промышленности (Москва);
ISSN: 2073-2589;
Web-page of the journal:
http://i-vimi.ru/editions/detail.php?SECTION_ID=158

Key words / КЛЮЧЕВЫЕ СЛОВА:
ДЕТОКСИКАЦИЯ ТОКСИЧНЫХ ОТХОДОВ, БИОСФЕРА, ОКРУЖАЮЩАЯ СРЕДА, ЭКОЛОГИЯ, ЖИВОЕ ВЕЩЕСТВО, ТИПЫ ВЕЩЕСТВА, EX-LIVING MATTER, ТЯЖЕЛЫЕ МЕТАЛЛЫ, DETOXIFICATION OF TOXIC WASTES,BIOSPHERE, ENVIRONMENT, ECOLOGY, TYPES OF MATTER, HEAVY METALS

Abstract in Russian:
АННОТАЦИЯ:
Для понимания экологических процессов обезвреживания в биосфере токсичных элементов необходимо проанализировать проблемы, связанные с современной типологией видов вещества в биосфере (в биосфере выделяют живое и неживое вещество). На основе экспериментов, проведенных автором, и данных научной литературы предложена концепция третьего типа вещества, которое автор обозначает как ex-living matter (ELM). Рассмотрены основные функции ELM в биосфере, варианты названий нового типа вещества и вытекающие из этого анализа предложения по совершенствованию экологического мониторинга содержания токсичных элементов в отходах и сточных водах промышленного производства.

ОПИСАНИЕ НА АНГЛИЙСКОМ ЯЗЫКЕ:
Abstract in English:
Detoxification of toxic elements in the biosphere and improving environmental monitoring
OSTROUMOV S. A.1
1 M. V. Lomonosov Moscow State University, Moscow, Russia
In order to understand the natural processes of detoxification of toxic wastes and waste waters, it is worthwhile to consider the main challenges to the current conceptualization of the types of matter in the biosphere. To meet and respond to the challenges, the author suggested a new conceptualization which is based on his suggestion to identify so called ex-living matter (ELM). The author discusses his experiments (carried out together with his co-authors) which provide a solid factual foundation to this conceptualization, as well as other data available in literature. The main functions of ELM in the biosphere were also formulated and considered by the author. Some alternatives and variants in verbal expression to be used as a name for the new type of matter are also included in the publication.
**
This article was cited in the following publications:
1
СОВРЕМЕННОЕ РАЗВИТИЕ НЕКОТОРЫХ ИДЕЙ В.И. ВЕРНАДСКОГО
Остроумов С.А.
Известия Самарского научного центра Российской академии наук. 2013. Т. 15. № 3. С. 17-22.
2
ЧЕТВЕРТЫЙ И ПЯТЫЙ БИОГЕОХИМИЧЕСКИЕ ПРИНЦИПЫ
Остроумов С.А.
Успехи наук о жизни. 2013. № 6. С. 69-71.
3
НОВОЕ В СОВРЕМЕННОМ РАЗВИТИИ НЕКОТОРЫХ ИДЕЙ В.И.ВЕРНАДСКОГО И ЭКОЛОГИЧЕСКИЕ АСПЕКТЫ ИСПОЛЬЗОВАНИЯ ПРИРОДНЫХ РЕСУРСОВ
Остроумов С.А.
Вестник Самарского государственного экономического университета. 2013. № 101. С. 65-74.
4
ЭКОТОЛ И ЕГО ВЛИЯНИЕ НА УЛУЧШЕНИЕ САНИТАРНО-ЗАЩИТНЫХ ЗОН ПРОМЫШЛЕННЫХ ПРЕДПРИЯТИЙ
Карташова Е.Р., Фитискина Н.В.
Экология промышленного производства. 2013. № 4 (84). С. 82-88.
5
ВОЗДЕЙСТВИЕ ЭКОТОЛА НА ДРЕВЕСНЫЕ САЖЕНЦЫ В УСЛОВИЯХ ВЕГЕТАЦИОННЫХ ОПЫТОВ НА ФОНЕ ИЗБЫТОЧНЫХ ДОЗ СВИНЦА
Фитискина Н.В., Карташова Е.Р.
Экология и промышленность России. 2014. № 3. С. 32-35.
**
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: biosphere detoxification ecology Ex-living matter TOXIC WASTES TYPES OF MATTER биосфераживое вещество металлы типы вещества экология
0
Добавить комментарий
AUG
24
The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation. ГЕОХИМИЧЕСКИЙ АППАРАТ ВОДНЫХ ЭКОСИСТЕМ: БИОКОСНАЯ РЕГУЛЯЦИЯ.
The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation
http://5bio5.blogspot.com/2014/08/the-geochemical-apparatus-of-aqueous.html

Sergei A. Ostroumov
Herald of the Russian Academy of Sciences (Impact Factor). 01/2004; 74(9):785-791.
Edit
ABSTRACT:
A Diploma (Academy of Water Sciences) – a certificate of high scientific quality - was awarded to the series of publications (on ecology, environmental science) including this article: http://5bio5.blogspot.com/2014/07/award-july-1-2014-to-series-of.html;
Ostroumov, S.A. The geochemical apparatus of aqueous ecosystems: The Biocos regulation.
Vestnik Rossiiskoi Akademii Nauk; [English translation of the title of the journal: Herald of the Russian Academy of Sciences] 2004, 74 (9) , pp. 785-791 .
This paper was reviewed by an expert at World Catalog (WorldCat). This is the review taken from the web-page of WorldCat:
Innovative article on environmental science. Geochemical Apparatus of Aqueous Ecosystems.
Title of the article: The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation.
Author: S A Ostroumov;
Publisher: Moskva : Nauka,
Edition/Format: Article : Russian;
Publication: Vestnik Rossiĭskoĭ Akademii nauk. 74, no. 9, (2004): 785-791 ; translation of the title of the journal: Herald of the Russian Academy of Sciences.
This paper develops the most fundamental innovations made by one of fathers of modern biogeochmistry, Prof. Vladimir Vernadsky (Member, Russian Academy of Sciences).
This paper proposed new fundamental concepts and ideas on how ecosystems function in driving and regulation of fluxes of chemical elements and substances in the biosphere and hydrosphere. This is a fundamental contribution to ecology and geochemistry.
In the paper, some new concepts and terminology were proposed, including new concepts and terms: geochemical apparatus, geochemical regulation; 'biokosnaya regulation' of transfer of chemical elements in the biosphere;
According to World Catalog, this paper is available in United States (in 59 libraries); in U.K. (7 libraries, including Natural History Museum , the British Library etc.), in Germany (8 libraries, including Bayerische Staatsbibliothek etc.), in France (14 libraries, including Bibliothèque de la Sorbonne , etc.).
Variants of citation of thispaper:
MLA Ostroumov, S. A. "The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation." VESTNIK-ROSSIISKAIA AKADEMIIA NAUK 74 (2004): 785-791.
APA Ostroumov, S. A. (2004). The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation. VESTNIK-ROSSIISKAIA AKADEMIIA NAUK, 74, 785-791.
Chicago Ostroumov, S. A. "The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation." VESTNIK-ROSSIISKAIA AKADEMIIA NAUK 74 (2004): 785-791.
Another version of the reference, with a slightly different translation of the title from Russian into English:
Geochemical apparatus of aquatic ecosystems: biotic regulation. — Herald of Russian Academy of. Sciences. (Vestnik Rossiiskoi Akademii Nauk) 2004. V. 74. No. 9. P. 785-791.
I recommend this article and other innovative publications of the same author at Moscow State University to all who are involved in modern ecology and geochemistry, in environmental sciences and studies of the biosphere.
Key words:
ecology, environmental science, geochemistry, biogeochemistry, life sciences, geosciences, biosphere, V.I.Vernadsky, ecosystems, new, concepts, regulation, migration of chemical elements,
Добавление на русском языке:
Краткая аннотация этой статьи:
Геохимический аппарат водных экосистем: биокосная регуляция // Вестник Российск. академии наук (РАН). 2004. т. 74. № 9. C.785-791, табл., Библиогр. 19 назван.; портр.; Впервые введены новые понятия и новые термины: 1) геохимический аппарат и геохимическая регуляция, 2) биокосная регуляция миграции элементов и перемещений вещества в биосфере.
More about this peer-reviewed journal:
ISSN: 0869-5873;
in some libraries, the title of the journal is: VESTNIK- ROSSIISKAIA AKADEMIIA NAUK;
THE RUSSIAN TEXT IN CONDENSED FORM:
Остроумов С. А. ГЕОХИМИЧЕСКИЙ АППАРАТ ВОДНЫХ ЭКОСИСТЕМ: БИОКОСНАЯ РЕГУЛЯЦИЯ // ВЕСТНИК РОССИЙСКОЙ АКАДЕМИИ НАУК, 2004, том 74, № 9, с. 785-791.
В статье рассматривается роль биоты в регуляции перемещения химических элементов в водных экосистемах и гидросфере. Обзор данных, накопленных в экологии, гидробиологии, лимнологии, биологической океанографии, а также результаты собственных экспериментов приводят автора к ряду весьма примечательных выводов. Фрагменты содержания статьи: Миграцию химических элементов, определяемую живыми организмами, В.И. Вернадский назвал "биогенной миграцией элементов" [1]. Раскрывая закономерности "сплетенья косных масс" (по выражению М. Волошина), миграцию элементов изучали В.В. Докучаев, В.И. Вернадский и их ученики. Исследования зависимых от живых организмов потоков и циклов химических элементов стали одним из центральных разделов геохимии (А.П. Виноградов, Э.М. Галимов, Б.Б. Полынов и др.), биогеохимии (М.В. Иванов, В.А. Ковда, Е А. Романкевич и др.), океанологии (М.Е. Виноградов, А.П. Лисицын и др.), почвоведения (Г.В. Добровольский, СА. Шоба). Живые организмы играют ключевую роль в миграции радионуклидов в водных и наземных экосистемах (Н.В. Тимофеев-Ресовский, Г.Г. Поликарпов, Д.А. Криволуцкий и др.). Сейчас наблюдаются глобальные изменения в биосфере, есть свидетельства повышения частоты экстремальных погодных и климатических явлений. Тревожные глобальные тенденции проявляют себя в конкретных нарушениях. Так, выявлено, что в последние десятилетия уменьшается период ледового покрова на Байкале, а также максимальная величина толщины льда [2], явно участились катастрофические погодные явления, ведущие к трагическим исходам. В последние 20 лет XX в. погибло более 70% от числа жертв природных катаклизмов всего столетия. Наводнения стали причиной гибели 9 млн. человек, землетрясения - около 1 млн. человек, ураганы и тайфуны - 1 млн. человек. (Отметим, что от факторов, связанных с климатом и погодой, погибло почти в 10 раз больше людей, чем от чисто геологических явлений - землетрясений.) Более тщательный учет тонкого структурирования и регуляции миграций химических элементов, внимание к разнообразию механизмов этого процесса - а за ними скрывается биоразнообразие видов водных организмов - поможет лучше постигать суть катаклизмов, а в перспективе - прогнозировать их и предотвращать. Эмпирический материал о перемещении вещества в водных экосистемах (например, [3-8]) приводит к выявлению определенных закономерностей и формулировке обобщающих положений. Ранее автором была сформулирована концепция водной экосистемы как крупномасштабного диверсифицированного биореактора [9]. Катализ и регуляция перемещения веществ, в том числе потоков биогенных элементов, - стороны функционирования экосистемы в качестве биореактора. Целесообразно продолжать поиск новых постулатов и обобщающих гипотез, касающихся миграции элементов в водных экосистемах. О некоторых шагах в этом направлении рассказывается в статье. На основе знаний о потоках вещества в водных экосистемах (например, [3, 5, 10-13]) и с учетом недавних собственных работ [14] автор предлагает некоторые обобщения, рассматривая их как временные постулаты или рабочие гипотезы. Роль биоты в формировании особенностей миграции вещества (химических элементов) в биосфере включает в себя не менее четырех аспектов: прямое участие как движущего фактора миграции; энергообеспечение многих конкретных случаев миграции элементов (включая фотосинтез и хемосинтез); ускорение (биокатализ) миграции - часто при участии организмов миграция в определенном направлении происходит значительно быстрее, чем под действием только физико-химических факторов; регуляция миграции -она имеет место, когда сосуществуют несколько альтернативных путей (траекторий) миграции элементов. Биота выступает как диспетчер и стрелочник, переводящий рельсы перед мчащимся поездом, в вагонах которого вещество геохимических вихрей. "Разъяв Вселенную на вес и на число" (М. Волошин), можно выделить два типа миграции вещества в экосистемах: векторные и стохастические; циклические и нециклические перемещения. После работ В.И. Вернадского о биогенной миграции элементов неоднократно и подробно анализировалась роль живого вещества как движущей силы перемещения и фактора ускорения миграции химических элементов. В данной работе акцентируется важность и другой стороны - роли природных факторов как регулятора небиогенных перемещений. Примером может служить оседание частиц взвешенного вещества (независимо от их природы - в том числе минеральных частиц взвешенного неорганического вещества) под действием поля тяготения Земли. Конечно, такую роль выполняют и биотические, и абиотические факторы, действующие в сочетании. Чтобы подчеркнуть, что мы стремимся не упускать из виду ни те, ни другие факторы, ни важность их сочетания и совместного действия, будем говорить о биокосном (термин Вернадского) контроле перемещения химических элементов. Регуляция векторного и стохастического перемещения элементов. Первый из двух наших тезисов (обобщений) состоит в следующем. В водных экосистемах имеет место конкурентное единство и биокосная регуляция процессов векторного и стохастического перемещения химических элементов. В некоторой мере расшифровкой содержания этого тезиса является совокупность следующих четырех положений. 1. В качестве примера векторного (однонаправленного) перемещения можно привести оседание взвешенных в воде частиц [10], в том числе рыхлых хлопьев ("морского снега"), а также выделяемых организмами пеллет [11, 14]. Пример стохастического перемещения - хаотическое передвижение планктона (не случайно дафний называют водяными блохами - их поведение в воде напоминает прыжки скачущих блох). 2. Векторные и стохастические процессы тесно переплетаются и накладываются один на другой. Например, зоопланктон может одновременно участвовать и в хаотическом движении, и в вертикальных миграциях со скоростью 0.38-16 см в секунду [5]. 3. Векторный процесс может конкурировать со стохастическим. Например, морская бактерия либо остается парить в воде во взвешенном состоянии и хаотически броунировать, либо прикрепляется к более крупной частице и опускается вниз, осаждаясь под действием сил тяготения в гравитационном поле Земли. В результате скорость перемещения вещества бактерии значительно ускорится, поскольку пеллетные частицы, в зависимости от формы и размеров, опускаются на дно со скоростью 100-150 м в сутки (наиболее крупные из них - до 500 м в сутки) [11]. 4. Регуляция выбора траектории миграции вещества (то есть перевод рельсов впереди мчащегося поезда, если пользоваться упомянутой метафорой) связана с тем, какой тип процесса будет преобладать; осуществляется она совместно биотическими и абиотическими факторами. Игнорирование любого из них чревато потерей адекватности при описании, анализе и понимании перемещений химических элементов. Яркий пример сочетания названных факторов в определении масштабов векторного переноса вещества - экосистемы близ устьев крупных рек, так называемые маргинальные фильтры [11]. В таких местах смешиваются струи пресной речной воды с воспринимающими их массами океанической влаги. В зонах резкого изменения солености воды наблюдаются важные физико-химические процессы, бурное развитие планктонных организмов и в итоге - массированное выпадение веществ в донные осадки. В этих экосистемах важнейшими биотическими факторами являются фитопланктон и зоопланктон, значимыми абиогенными факторами - содержание растворенных и коллоидных веществ (оксигидраты железа и др.), свет, силы гравитации, градиент солености воды (в пределах от 5 до 20%с происходит перезарядка коллоидов и образование крупных хлопьев). Скорость осаждения (седиментации) и накопления донных осадков в зоне маргинального фильтра зачастую очень велика. Так, вблизи устья реки Лены накопление осадков достигает свыше 1500 мм за 1000 лет, что значительно, почти на два порядка, превышает скорости седиментации, свойственные областям шельфа Арктики за границами зоны маргинального фильтра - всего лишь 10-20 мм за 1000 лет [11]. В маргинальном фильтре Енисея максимум вертикальных потоков осадочного вещества при солености 15%с достигал свыше 22 г/м2 за сутки. По мнению академика А.П. Лисицына, "масштабы осаждения осадочного вещества достигают лавинных значений, идет лавинная седиментация" [11, с. 215]. Подобное выявлено и в других водных экосистемах: во фьордах Норвегии, например, осаждается до 2-7 г/м2 за сутки [11]. В серии работ, проведенных нами совместно с М.П. Колесниковым (Институт биохимии РАН), экспериментально изучено быстрое оседание на дно водной экосистемы химических элементов в составе пеллет, выделяемых обитателями водоемов: двустворчатыми моллюсками Unionidae, a также легочными моллюсками Lymnaea stagnalis. По нашим оценкам, за 120 дней вегетационного сезона на 1 м2 дна пресноводного водоема может оседать 14.9-55.3 г углерода, 0.6-2.3 г азота, 0.1-0.3 г фосфора, 0.4-1 г кремния (табл. 1 и 2). Поскольку оседание пеллет - быстрый процесс, моллюски выступают в роли мощных биокатализаторов важных процессов вертикального переноса химических элементов. В указанных работах [14], а также в других, проведенных нами при содействии сотрудников Плимутской морской лаборатории (Великобритания), кафедры микробиологии МГУ и Института биологии южных морей (ИНБЮМ, Севастополь), было выявлено, что на поток вещества, перемещающегося через звено экосистем, представленное морскими и пресноводными моллюсками, может оказывать воздействие такой абиотический фактор, как химическое загрязнение воды. Оно опосредовано биологическим фактором (снижением фильтрационной и пищевой активности морских и пресноводных моллюсков и, соответственно, снижением образования ими пеллет) [14, 17]. Таким образом, найдено новое подтверждение неразрывной связи биотического и абиотического факторов в регуляции перемещения вещества через конкретное звено экосистемы. Один из весомых факторов рассматриваемого процесса - фильтраторы, в том числе фильтрато-ры зоопланктона и зообентоса. Биомасса зоопланктона (без простейших) Мирового океана составляет 19.8 х 109 т, то есть около 19.8 млрд. т [5]. Биомасса бентоса Мирового океана приблизительно на порядок меньше: некоторые исследователи считают, что около 3.3 млрд. т [11]. Надо подчеркнуть, что оценки биомассы (в особенности бентоса), а также доли первичной продуктивности водных экосистем, достигающей дна, носят предварительный и приближенный характер. Есть сведения, что величина суммарного потока вещества в гидросфере/биосфере (в верхнем слое морской воды 0-200 м) составляет (в сыром весе) в тропической зоне Тихого океана около 3.1 г/м2 за сутки, в умеренной зоне (Курило-Камчатский район) - 12 г/м2 за сутки, в Японском море - 8 г/м2 за сутки. Связанный с этим поток энергии в тропической зоне Тихого океана - приблизительно 9.1 ккал/м2 за сутки, в Курило-Камчатском районе - 19.2 ккал/м2 за сутки, в Японском море -8 ккал/м2 за сутки [11]. Имеются указания на то, что в экосистемах озер определенного типа достигает дна в среднем примерно 15% первичной продукции и за год в донных отложениях аккумулируется около 12% чистой первичной продукции [3], хотя следует подчеркнуть, что в озерах разного типа эти показатели могут сильно варьировать. По данным Е.А. Романкевича, в донных осадках Мирового океана захоранивается около 0.4% первичной продукции в год, что в геологическом масштабе времени очень много, поскольку означает, что за 100 лет в осадочных толщах собирается 40% первичной продукции всего Мирового океана. Количество органического углерода, захораниваемое за 200 с небольшим лет, практически равно годовой продукции фотосинтеза всего Мирового океана, которая составляет, по различным оценкам, от 20 до 100 млрд. т углерода в год [13,18]. Часть атомов углерода затем оказывается в составе нефти и завершает свой полный приключений цикл в горячих выбросах двигателей внутреннего сгорания и тепловых электростанций, становясь яблоком раздора в кровопролитных межгосударственных конфликтах, а также в спорах вокруг Киотского протокола. Векторные перемещения вещества - одна из важнейших сторон структурированности биосферы. Интересно, что А. Эйнштейн, наблюдая за стремительным движением перелетных птиц в воздушном океане, заметил, что ему представляются невидимые нити, вдоль которых уверенно скользят мигрирующие птицы. Развивая его образное видение, можно сказать, что биосфера - это паутина, сотканная из нитей, вдоль которых мигрируют элементы. Но картина осложняется тем, что, как мы подчеркнули выше, часть миграций происходит вне благородной упорядоченности этих нитей (стохастически). Еще одно осложнение заключается в том, что наряду с линейным перемещением атомов наблюдаются вихри циклических траекторий. Регуляция циклических и нециклических путей перемещения элементов. В своих миграциях атомы могут совершить "петлю Нестерова", попадая в циклические вихри, из которых не всегда бывает легко выбраться. Традиционно в геохимии и биогеохимии всегда обращают внимание на то, что атомы переходят из жидкой фазы в газовую и обратно, из одного организма в другой. Остановимся на одной из сторон этого вековечного процесса, а именно на конфигурации рисунка получающейся траектории - она может быть круговой либо нециклической. В водных экосистемах имеет место конкурентное единство и биокосная регуляция циклических и нециклических путей химических элементов, представляющих собой цепи последовательных переходов химических элементов из одной фазы в другую (межфазовые переходы) и из одного организма в другой (межорганизменные переходы). В этом обобщении учитываются следующие четыре положения. 1. Пример циклических перемещений: атомы углерода из растворенной двуокиси углерода при фотосинтезе переходят в состав биомолекул; они окисляются, и атомы углерода переходят опять в фонд растворенного С02. Пример нециклических процессов нетрудно проследить в цепи следующих событий: атомы углерода из растворенной двуокиси углерода переходят в состав сначала биомолекул фитопланктона, затем - зоопланктона и зообентоса, далее -пеллет, которые оседают и достигают дна, где ассимилируются моллюсками; часть атомов углерода попадает в состав раковин моллюсков; затем атомы углерода захораниваются в донных отложениях в составе створок раковин. Во многих озерах в среднем около 60% чистой первичной продукции (то есть углерода, связанного в результате фотосинтеза) потребляется в микробиальной петле, никогда не достигая дна, что говорит о важной роли циклических процессов перемещения углерода. В морских экосистемах доля чистой первичной продукции, не достигающей дна, еще выше. 2. Оба типа процессов переплетаются; траек тории циклических и нециклических переходов конкретных атомов могут иметь общие участки. 3. Пути обоих типов могут конкурировать между собой. Часть углерода биомолекул фито планктона вернется в состав фонда растворенно го в воде С02, часть будет захоронена в донных осадках. 4. Регуляция осуществления того или иного пе рехода в точках разветвления (бифуркации) пу тей миграции конкретных атомов осуществляет ся совместно биотическими и абиотическими факторами. Необходимо подчеркнуть, что для климата Земли (и зависящих от него судеб человечества) чрезвычайно важны даже небольшие сдвиги в переключении потоков элементов на тот или иной путь. Опасно нарушать эти пути: они тонко сбалансированы и словно пролегают вдоль невидимых нитей, которые, согласно древнегреческой мифологии, ткут богини судьбы, мойры - три таинственные сестры: Лахесис ("дающая жребий"), Клото ("прядущая") и Атропос ("неотвратимая"). Стремление уделить должное внимание цикличности (коловращению) конкретных потоков элементов заставляет вспомнить о высказываниях Платона, который считал, что эти три мойры -дочери богини Ананке ("необходимость"), вращающей мировое веретено. Важность даже небольших относительных изменений потоков элементов вызвана тем, что их абсолютные величины в Мировом океане огромны. Так, фонд неорганического углерода в поверхностных водах Мирового океана (около 700 х 1015 г) почти равен содержанию углерода в атмосфере (720 х 1015 г). В глубинных водах океана содержание неорганического углерода почти на два порядка выше - 36700 х 1015 г. Еще больше оно в донных осадках Мирового океана: запасы углерода в поверхностной части морских осадков составляют примерно 1022 г. Иными словами, фонд углерода в донных осадках почти на пять порядков превышает содержание углерода в атмосфере. Колоссальные запасы углерода сформированы при активной регуляторной роли и прямом участии живых организмов, общая биомасса которых в Мировом океане на много порядков уступает вышеприведенным фондам углерода: общее содержание углерода в морской биоте -около 3 х 1015 г [18], а по другим оценкам - еще меньше. То, что огромное количество углерода благодаря морским организмам спрятано в океанической бездне, можно считать удачей для человечества, ибо высвобождение даже тысячной доли процента углерода привело бы к удвоению содержания диоксида углерода в атмосфере и парниковому эффекту. Истинный "ящик Пандоры" пока еще находится на дне океана, и наше счастье в том, что он не открыт и ключ его стерегут морские существа, которые наполнили и продолжают пополнять этот ящик. Точнее говоря, ящик открыт и происходит постоянное и одновременное пополнение и опорожнение его, но гидроби-онты выступают как бдительные и деликатные менеджеры, удерживающие такой важный для нас баланс обоих процессов. Наше обращение к мифологии оправдывается еще и тем, что приходится признать наличие существенного элемента именно мифологии в той сумме представлений, которая именуется современной экологией. Стандартная экологическая доктрина включает представление о трофической (пищевой) цепи, по которой от звена к звену чинно шествует поток вещества, включая углерод; учебники экологии неизменно содержат также схемы экологических пирамид, где вещество скользит от основания к вершине. Элемент мифологии в этой идиллической картине в том, что она скрывает или недооценивает отклонения, завихрения, появление водоворотов и циклов на путях миграции элементов. Чтобы избавиться от устоявшейся мифологии, необходимо внимательнее приглядеться к роли разнообразия живых организмов: имя им легион. Регуляция конкретных перемещений элементов и роль биоразнообразия. Фундаментальные положения, которые мы обсуждали, привели нас к океаническим глубинам, где промелькнули таинственные богини судьбы. Не так широко известно, что у богинь судьбы в эллинистическую эпоху был могущественный конкурент - богиня Тиха, символизировавшая неустойчивость и изменчивость жизни, роль в ней случая. Какова же роль конкретных носителей жизни в водной среде? Основываясь на значительном объеме фактов, накопленных современной гидробиологией [3,7, 10,13], можно конкретизировать некоторые стороны роли гидробионтов в миграциях элементов. Во-первых, гидробионты участвуют в регуляции и определении доли вещества (химических элементов), которая достигает конца в цепи той или иной траектории при векторном перемещении вещества через'экосистему. Во-вторых, они задействованы в процессе регуляции и определения количества вещества, вовлеченного в циклические межфазовые и межорганизменные переходы. И в-третьих, водные организмы - участники регуляции и определения количества химических элементов, длительное время удерживаемых в петлях циклических переходов (межфазовых и межорганизменных) внутри экосистемы (это очень важно, поскольку тем самым снижаются количество и концентрация соответствующих химических элементов во внешнем пространстве, вне экосистемы). Согласно традиционному видению трофической цепи, излагаемому во всех учебниках экологии, диоксид углерода поглощается водорослями и углерод переходит в их органическое вещество; затем атомы углерода перемещаются по пищевой цепи по маршруту фитопланктон - зоопланктон -рыбы или фитопланктон - донные моллюски-фильтраторы, то есть от начала к концу цепи. Но, как отмечалось, эта схема содержит элемент мифологии (она попросту неправильна в своей примитивной линейности), поскольку очень значительная часть атомов углерода оказывается в ловушке циклических траекторий, например: моллюски - экскретированные моллюсками пеллеты - бактерии - бактериопланктон - моллюски (и цикл замкнулся!). Из всего вышесказанного вытекает немаловажное следствие: гидробионты влияют на среднюю продолжительность удержания атомов биогенных элементов (в том числе углерода) в циклических процессах внутри экосистемы, что сказывается на длительности удержания химических элементов экосистемой в целом. Не случайно в трудах Вернадского прозвучала мысль о том, что жизнь очень неохотно отдает атомы вещества, захваченные вихрями ее круговоротов. Огромные сложности возникли в жизни русалочки Андерсена, пожелавшей нарушить привычное коловращение судеб океанических существ, - не потому ли, что система ревностно удерживала ее узами своих биогеохимических объятий? Таким образом, многие важные характеристики миграции элементов регулируются при участии организмов (автотрофных и гетеротрофных). При рассмотрении каждого из звеньев пищевой цепи выявляется, что соответствующие организмы участвуют в миграции элементов или в ее регуляции. Практически все биоразнообразие задействовано в этом. Очевидно, что существует связь между биологическим разнообразием (количеством видов, обилием организмов) и потенциальным многообразием процессов преобразования и перемещения вещества в экосистеме. Стало быть, сохранение биоразнообразия содействует сохранению способности экосистемы регулировать перемещения вещества и в той или иной мере долговременно удерживать атомы углерода и биогенных элементов внутри экосистемы. Положения, сформулированные в данной работе, еще раз подтверждают справедливость и адекватность обобщения В.И. Вернадского, считавшего, что "живое вещество ... геологически ... является самой большой силой в биосфере и определяет ... все идущие в ней процессы..." [15, с. 17]. Основные положения и выводы нашей работы согласуются с рядом других [6,11,19]. Думается также, что получены дополнительные основания рассматривать водную экосистему как аналог реторты алхимика, или, говоря более современным языком, биореактора, в котором происходят сложные превращения и перемещения веществ, причем последние зависят от биотических и небиотических факторов и находятся под их биокосным контролем. Подобно тому, как изучение и использование процессов, протекающих в биореакторе, называют биотехнологией, исследование и осуществление процессов перемещения веществ, протекающих в водной экосистеме и гидросфере, можно рассматривать как биогео-технологию. Выражаем надежду, что рассмотренные здесь особенности и закономерности структурирования потоков и перемещений химических элементов в водных экосистемах будут полезны при обсуждении вопросов количественной и теоретической гидробиологии, моделирования экосистем и разработке некоторых фундаментальных вопросов экологии. Мыслители древности пользовались выражением "мировой разум", концепция которого в явном либо в завуалированном, трансформированном виде присутствует во многих философских и религиозных учениях. С другой стороны, современные школы в области наук об управлении подчеркивают полезность оптимальной децентрализации управляющих элементов в сложных системах. В одной из них - системе разветвленных траекторий перемещений вещества в ближайшей к нам части космоса (на поверхности планеты Земля) - отчетливо видны многочисленные регулирующие и управляющие элементы - живые существа. Мы попытались осветить их роль в качестве диспетчеров и менеджеров в точках разветвления указанных траекторий. Все живые существа имеют собственные внутренние управляющие системы той или иной степени сложности. Не являются ли организмы носителями элементов децентрализованного мирового разума - в широком, метафорическом смысле? Если же отказаться от метафор, можно подытожить иначе. Сказанное выше детализирует современное понимание того, что В.И. Вернадский сформулировал как "химический аппарат биосферы, созданный и поддерживаемый в своей деятельности живым веществом" [ 16, с. 153]. Автор выражает благодарность М.Е. Виноградову, А.П. Лисицыну, А.П. Кузнецову, В.В. Малахову, Е.А. Криксунову, В.А. Абакумову, другим сотрудникам кафедры гидробиологии МГУ и РАН за критическое обсуждение некоторых затронутых здесь вопросов; Дж. Виддоузу, П. Донкину, Н. Вальцу, Н.Н. Колотиловой, М.П. Колесникову, Т. А. Остроумовой, Г.Е. Шульману, Г.А. Финенко, З.А. Романовой и другим сотрудникам ИНБЮМ за помощь в работе. Часть работы поддержана Open Society Institute (RSS) и Фондом Макартуров. ЛИТЕРАТУРА 1. Вернадский В.И. Химическое строение биосферы Земли и ее окружения. М.: Наука, 1965. 2. Шимараев М.Н., Куимова Л.Н., Синюкович В.Н., Цехановский В.В. О проявлении на Байкале глобальных изменений климата в XX столетии // Доклады АН. 2002. Т. 383. № 3. 3. Алимов А.Ф. Элементы теории функционирования водных экосистем. Спб.: Наука, 2000. 4. Винберг ГГ. Гидробиология // История биологии / Ред. Л.Я. Бляхер. М.: Наука, 1975. ВЕСТНИК РОССИЙСКОЙ АКАДЕМИИ НАУК том 74 № 9 2004 ГЕОХИМИЧЕСКИЙ АППАРАТ ВОДНЫХ ЭКОСИСТЕМ: БИОКОСНАЯ РЕГУЛЯЦИЯ 791 5. Виноградов М.Е., Шушкина Э.А. Функционирование планктонных сообществ эпипелагиали океана. М.: Наука, 1987. 6. Галимов Г.А., Кодина А.А. Ислледование органического вещества газов в осадочных толщах Мирового океана. М.: Наука, 1982. 7. Сущеня Л.М. Количественные закономерности питания ракообразных. Минск: Наука и техника, 1975. 8. Федоров В.Д. О методах изучения фитопланктона и его активности. М.: Изд-во МГУ, 1979. 9. Остроумов С.А. Водная экосистема: крупноразмерный диверсифицированный биореактор с функцией самоочищения воды // Доклады АН. 2000. Т. 374. № 3. 10. Израэлъ Ю.А., Цыбань А.В. Антропогенная экология океана. Л.: Гидрометеоиздат, 1989. 11. Лисицын А.П. Потоки вещества и энергии во внешних и внутренних сферах Земли // Глобальные изменения природной среды-2001 / Ред. Н.Л. Добрецов, В.И. Коваленко. Новосибирск: Изд-во СО РАН, филиал "Гео", 2001. 12. Матишов Д.Г., Матишов Г.Г. Радиационная экологическая океанология. Апатиты: Кольский научный центр РАН, 2001. 13. Wetzel R.G. Limnology: Lake and River Ecosystems. San Diego: Academic Press, 2001. 14. Остроумов С.А. Биологические эффекты при воздействии поверхностно-активных веществ на организмы. М.: МАКС-Пресс, 2001; Остроумов С.А., Колесников М.П. Биокатализ переноса вещества в микрокосме ингибируется контаминантом: воздействие ПАВ на Lymnea stagnalis // Доклады АН. 2000. Т. 373. № 2; Остроумов С.А., Колесников М.П. Пеллеты моллюсков в биогеохимических потоках С, N, P, Si, A1 // Доклады АН. 2001. Т. 379. № 3. 15. Вернадский В.И. Научная мысль как планетное явление. М.: Наука, 1991. 16. Вернадский В.И. Биосфера. М.: Изд. дом "Ноосфера", 2001. 17. Ostroumov S.A. Inhibitory analysis of top-down control: new keys to studying eutrophication, algal blooms, and water self-purification // Hydrobiologia. 2002. V. 469. 18. Виноградов М.Е., Шушкина Э.А., Копелевич О.В., Шербастов СВ. Фотосинтетическая продукция Мирового океана по спутниковым и экспедиционным данным // Океанология. 1996. № 4. 19. Заварзин Г.А. Бактерии и состав атмосферы. М.: Наука, 1984. ВЕСТНИК РОССИЙСКОЙ АКАДЕМИИ НАУК, том 74, №9, 2004
Keywords:
потоки углерода Вернадский В. И. модернизация концепций экологии элементы теории аппарата биосферы геохимические процессы связь экологии и биогеохимии роль организмов новая концепции биосферы биотическая регуляция миграции элементов геохимическая среда биогеохимия гидросфера,новая типология миграции элементов ;
**[less]
Geochemistry ×
Ecology ×
Environmental Science ×
Life Sciences ×
Biogeochemistry ×
V.I.Vernadsky ×
Ecosystems ×
biosphere ×
Concepts ×
Regulation ×
migration of chemical elements ×
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: Вернадский В. И. биогеохимия биосфера гидросфера миграция элементов новая регуляциябтипология
0
Добавить комментарий
AUG
24
Downloads of articles from Internet, in BRICS countries. Recently, the publications on ecology, environment, water attracted interest .
Downloads of articles from Internet, in BRICS countries.
Recently, the publications on ecology, environment, water attracted interest .
http://5bio5.blogspot.com/2014/08/downloads-of-articles-from-internet-in.html
Top universities downloaded the top papers on ecology, environment.
Key words:
Downloads, BRICS, countries, ecology, environment, water, South Africa, China, India, Russia,
**
More about the related publications that are available online free: http://5bio5.blogspot.com/2014/05/available-online-at-researchgate.html
Researchers downloaded the full-texts of the publications :
including the BRICS countries which downloaded the publications:
Russia: Lomonosov Moscow State University;
India: Shikshan Vikas Mandal's Shri. S.H. Kelkar College of Arts, Commerce And Science, Devgad;;
Council of Scientific and Industrial Research (CSIR), New Delhi;
Gujarat University;
China: Chinese Research Academy of Environmental Sciences;
South Africa: Cape Peninsula University of Technology,
Also , universities in other countries downloaded these articles. U.S.A., Italy, Belgium, Germany, Canada, Portugal, Poland, Philippines, Tunisia, France; Algeria; Egypt; et al. These papers are on research results obtained in Russia.
More detailed information on these downloads see:
http://5bio5.blogspot.com/2014/08/downloads-recently-interest-attracted.html
**
in Portuguese:
Downloads de artigos de Internet, nos países do BRICS.
Recentemente, as publicações sobre ecologia, meio ambiente, água atraiu o interesse.
As principais universidades baixado os melhores artigos sobre ecologia, meio ambiente.
**
Mais informações sobre as publicações disponíveis on-line gratuito: http://5bio5.blogspot.com/2014/05/available-online-em-researchgate.html
Pesquisadores baixado o full-textos das publicações:
incluindo os países do BRICS, que baixaram as publicações:
Rússia: Lomonosov Moscow State University;
Índia: Shri de Shikshan Vikas Mandal. S.H. Kelkar Faculdade de Artes, Comércio e Ciência, Devgad;;
Conselho de Pesquisa Científica e Industrial (CSIR), Nova Delhi;
Universidade Gujarat;
China: Academia Chinesa de Ciências Ambientais Research;
África do Sul: Cape Peninsula University of Technology,
Além disso, as universidades de outros países baixaram estes artigos. EUA, Itália, Bélgica, Alemanha, Canadá, Portugal, Polônia, Filipinas, Tunísia, França; Argélia; Egito; et ai. Esses papéis são em resultados de pesquisa obtidos na Rússia.
Informações mais detalhadas sobre estas transferências ver:
http://5bio5.blogspot.com/2014/08/downloads-recém-interesse-attracted.html
**
in Chinese:
从网上下载的文章,在金砖国家。
近日,在生态,环境的出版物,水吸引兴趣。
顶尖大学下载对生态顶部论文,环境。
**
更多关于相关的刊物,提供在线免费:http://5bio5.blogspot.com/2014/05/available - 在线-AT-researchgate.html
研究人员下载全文字的出版物:
其中包括下载的出版物金砖国家:
俄罗斯:莫斯科国立罗蒙诺索夫大学;
印度:Shikshan维卡斯曼德尔的至尊。 S.H。艺术科尔卡学院,商业和科学,Devgad;;
科学与工业研究委员会(CSIR),新德里的议会;
古吉拉特大学;
中国:中国环境科学研究院;
南非:技术的开普半岛大学,
此外,大学在其他国家下载这些文章。美国,意大利,比利时,德国,加拿大,葡萄牙,波兰,菲律宾,突尼斯,法国;阿尔及利亚;埃及;等。这些文件是在俄罗斯取得的研究成果。
这些下载的更多详细信息,请参阅:
http://5bio5.blogspot.com/2014/08/downloads,近期利益attracted.html
**
in Afrikaans:
Downloads artikels van die internet, in BRICS lande.
Onlangs het die publikasies oor die ekologie, omgewing, water gelok belang.
Top universiteite afgelaai die top vraestelle op ekologie, omgewing.
**
Meer oor die verwante publikasies wat beskikbaar is aanlyn gratis: http://5bio5.blogspot.com/2014/05/available-aanlyn-at-researchgate.html
Navorsers afgelaai die volle teks van die publikasies:
insluitend die BRICS-lande wat die publikasies afgelaai:
Rusland: Lomonosov Moscow State University;
Indië: Shikshan Vikas Mandal se shri. S.H. Kelkar Kollege van Kuns, handel en wetenskap, Devgad;;
Raad van die Wetenskaplike en Nywerheidsnavorsingsraad (WNNR), Nieu-Delhi,
Gujarat University;
China: Chinese Research Academy Omgewingswetenskappe;
Suid-Afrika: Kaapse Skiereiland Universiteit van Tegnologie,
Ook universiteite in ander lande afgelaai hierdie artikels. VSA, Italië, België, Kanada, Duitsland, Portugal, Pole, Filippyne, Tunisië, Frankryk; Algerië; Egipte; et al. Hierdie vraestelle is op navorsing resultate behaal in Rusland.
Meer inligting oor hierdie downloads sien:
http://5bio5.blogspot.com/2014/08/downloads-onlangs-rente-attracted.html
**
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: BRICS China countries Downloads ecology environment India Russia South Africa water
0
Добавить комментарий

Архив блога
20141865
Август60
Июль336
Июнь276
Май281
Апрель307
Март265
Enviro.sci., 10 most viewed posts, recent 24 h; 31...
Enviro. sci. 5 most recent blog posts March 31, 20...
updated: 189 blog posts, September 2013, environme...
Enviro. sci. 164 posts, November 2013; ecology, en...
Enviro. sci. 260 posts, March: ecology, environmen...
bookmarked, upvoted today: environmental science a...
updated: Nobel Prize universities: interest in the...
Enviro. sci. Most viewed during 24 h, in countries...
Enviro. sci. 20 posts most viewed. Ecology, enviro...
Internet users: publication - THESE QUESTIONS WERE...
Internet users, colleagues - Angelica Arenas Rodr...
Links on environment, water. Of interest to Chines...
Updated: Best, top web sites with the key words (i...
Downloads. Enviro.sci. publications that attracted...
Enviro.sci.,10 most viewed to-day, 28.3.2014, vie...
Enviro.sci.: downloads in U.S.A., Italy, et al. F...
Цитировали публикации сотрудников МГУ в области эк...
Updated. New citations of scientists of Moscow Uni...
water phytoremediation, innovative technology for ...
Weekly stat update, researcher at Moscow State Uni...
Environmental science: many useful publications, r...
Downloads, Recently, these colleagues read these p...
80% of mankind are reading this. At the moment, mo...
Internet users liked this online publication on en...
Enviro. sci. December 2013, 165 posts. Ecology, e...
A-factor, Interesting innovation, Biology, Ecology...
enviro. sci., 212 posts, January 2014, ecology, pr...
Enviro. sci. 128 posts, February 2014; Ecology, sc...
Internet users liked this online publication recen...
232 blog posts March 2014 Environmental science
Enviro. sci. Most viewed at this moment: 28.3.2014...
Today, bookmarked, this publication: 2014, Mar...
upvoted: Environmental science, biology, protectio...
4 useful pages on Facebook. Environmental science,...
New citations of the article on nanotoxicology: Os...
Notification from Internet. New citation of the bo...
Recent blog posts on environmental science, protec...
U.S. Scientist bookmarked this article - ecology, ...
16 Researchers downloaded these full-texts recentl...
Most viewed, March 26, 2014; nature conservation, ...
Most viewed at the moment: ecology, environment, n...
updated: Water quality and self-purification. Inno...
updated: review: 25 achievements: environmental sc...
updated: Biocontrol of Water Quality: Multifuncti...
40 publications. Moscow University. environmental...
nice pictures of nature and recent posts on enviro...
blog posts on 25 publications, ecology, environmen...
Scopus. Environmental science. Part 4. Tags: en...
Scopus. environmental sci. Part 3. Tags: water qua...
Scopus. Environmental sci. Part 2. Hazards, pollu...
Researchers who downloaded these full-texts on env...
Scopus. Environmental Sci. Part 1. Publications, s...
Bookmarked. Articles, ecology, environmental scien...
In Japanese: ;選択したムール貝、二枚貝、水産養殖、底生生物、底生生物:キーワードと記事...
In Swedish. artiklar med nyckelord : musslor, muss...
in German. Artikel mit Schlüsselwörtern : Miesmusc...
in Italian. Articoli con le parole chiave : cozze,...
Useful 18-page sum of top Springer articles on som...
articles with key words: mussels, bivalves, aquacu...
Researchers (Germany, Russia, Poland, Brazil, Roma...
Most viewed this week, 10 blog posts, environmenta...
Internet is interested in; downloaded: 10 selected...
Most viewed today, environmental, environment, Mar...
Most viewed at the moment, environmental science, ...
Evaluation: A landmark study, impeccably researche...
Review of the article: The Functions of Living Sub...
Most viewed at the moment, environmental science, ...
book entitled: Conservation of Living Nature and R...
Reviews of book: Biological Effects of Surfactants...
Published reviews of book: Biological Effects of S...
Reviews (favorable) of book: Conservation of Livin...
New softcover reprint of the classical book on con...
10 selected publications on ecology, protection of...
Review of article: The Functions of Living Substan...
Notification from Internet. Citation of the blog p...
Very recent blog posts: environmental science, eco...
Internet users, international scientists bookmarke...
БИОТЕСТИРОВАНИЕ ВОД, СОДЕРЖАЩИХ ПАВ ( СУЛЬФАНО...
Ostroumov S.A., Semykina N.A. Response of seedling...
212 blog posts January 2014; environmental science...
128 blog posts, February 2014, environmental scien...
183 blog posts, March 2014, Springer, most viewed,...
The best international library catalog system (ww...
Reviews of articles on ecology, environmental scie...
Articles, ResearchGate: environment, ecology, biol...
Review of the article: On the Biotic Self-purific...
Explanation, FAQ on the paper: On the Biotic Self-...
Review: The Hazard of a Two-Level Synergism of Syn...
Review: Effect of Amphiphilic Chemicals on Filter-...
Explanation of the novelty, innovations in the sci...
updated, see: Concise summary of scientific result...
Internet users liked these scientific results on i...
Ecology, Springer publications, Second group of ar...
Ecology, Springer publications, selected articles....
papers, second group. Ecology, environment. Spring...
First pages of 6 selected papers published in Spri...
22 publications available online free, Springer j...
16 publications made available, full texts online ...
updated: 220 Articles available at ResearchGate: I...
ResearchGate: 3 TOP PUBLICATION VIEWS, - ECOLOGY,...
Most viewed at the moment, environmental science, ...
Article: On the Multifunctional Role of the Biota...
useful book, environmental safety, short comments...
Most viewed after the referendum in Crimea, Ukrain...
IN UKRAINIAN LANGUAGE: Україна. Цитування книг, п...
Ukraine. Citation of books, publications authored ...
10 most viewed posts - environment, ecology - on t...
Citation of the paper: Inhibitory analysis of top-...
A LARGER LIST OF RECENT POSTS: ecology, environmen...
Recent posts: downloads; links useful to scientist...
The third part of the list of 91 publications ment...
Second part of the list of 91 publications mention...
30 of 91 publications mentioned in the internation...
In Ukrainian. Корисно для вчених , дослідників , в...
Recent downloads. Environm. Sci.; March 16, 2014.
In Dutch: Nuttig voor wetenschappers , onderzoeker...
In Swedish: Användbar för vetenskapsmän, forskare ...
In Spanish. Útil para científicos, investigadores,...
In Italian. Utile per scienziati, ricercatori, pro...
In French. Utile pour les scientifiques, chercheur...
In Croatian. Korisno znanstvenika, istraživača, pr...
In Chinese, trad. 有用的科學家,研究人員,教授,學生,專業人士。在線免費。生態學,...
In Chinese: 有用的科学家,研究人员,教授,学生,专业人士。在线免费。生态学,环境科学,生...
Recent blog posts of March 15, 2014; environmenta...
updated 16.03.2014: Useful to scientists, research...
most viewed, 834 views during 24 hours, March 15, ...
In Chinese, in English: 出版物的发现,证实和解释生态系统功能的水体自净的作用...
In Japanese. 発見を実証し、水自浄における生態系の機能の役割と重要性を説明出版物。
In Spanish. Las publicaciones que descubrieron , d...
In Italian. Pubblicazioni che hanno scoperto, hann...
In French. Publications qui ont découvert , pour d...
Top institutions, Europe, N. America, S. America, ...
1603 citations of scientific publications of this ...
Phytotoxicity of a surfactant-containing product t...
The significant, important role of this book in mo...
book was cited in journal with Impact Factor 41; ...
Basque language, Euskal hizkuntza Zientzialari, ik...
Azerbaijani. Alimlər, tədqiqatçılar, professorlar ...
Armenian. Օգտակար գիտնականների, հետազոտողների, դաս...
Arabic. مفيدة للعلماء والباحثين و الأساتذة والطلاب...
Afrikaans. Nuttige wetenskaplikes, navorsers, prof...
Belarusian. Карысна для навукоўцаў , даследчыкаў ,...
Bengali. বাংলা ভাষা . বিজ্ঞানী, গবেষক, অধ্যাপক, ছা...
Bosnian, Bosanski jezik . Korisni naučnicima , ist...
Useful to scientists, researchers, professors, stu...
128 posts, environmental, February 2014, 128 blog ...
Weekly stats update at ResearchGate, a researcher ...
80% of mankind. Countries that represent 80% of ma...
Environment sci., 18 very recent blog posts, with ...
New 115 posts on environmental science, ecology, w...
Recent downloads from web, Updated: March 15, 2014...
On the book ‘Biological Effects of Surfactants’, m...
This online publication was liked. Environmental s...
updated: Full texts of 100+ publications. Environm...
Downloads: Attention, interest attracted. These un...
Downloads, most used, Environment sci. Most recent...
Публикации 2013, 2012, 2011, экология, науки об ок...
17 new citations of publications on ecology, envir...
20 most cited publications, ecology, environmental...
Most viewed. Environmental science, new, ecology, ...
Häufige Fehler bei der Beurteilung der Gesundheit ...
In German. On a new citation. Mitteilung von Inter...
in French. New citation. Notification à partir d'I...
Notification from Internet, new citation, article ...
Independent Internet user liked this. (Environment...
In Dutch, key words: sleutelwoorden , tags voor de...
In Chinese: key words: 关键词,标签为的一系列重要科学出版物: 生态学,环境...
In Japanese: key words: 重要な科学的出版物のシリーズのためのキーワード、タグ...
In Swedish: nyckelord, taggar för rad viktiga vete...
In Spanish: palabras clave, etiquetas para la seri...
Schlüsselworte , Tags für die Reihe von wichtigen ...
Parole chiave , tag per la serie di importanti pub...
écologie, sciences de l'environnement: mots clés, ...
Papers on water self-purification. The key words, ...
INNOVATIVE article: On the biotic self-purificatio...
key words, tags for the series of important scient...
Ecosystem health assessment: Explanation: Common m...
Publications which discovered, demonstrated and e...
930 views during 24 h, March 11, Environmental sci...
Short list of recent posts on citation of articles...
files, links, enviro. sci. at Sites.Google.com
Full texts of some publications. Environmental sc...
Improved format of the post. Many files. Environme...
Many files. Environmental science, toxicology, aqu...
Cited these publications on environmental science,...
Environmental sci.: Recent new and updated posts.
The list of recent blog posts on environmental sci...
2014, March. Online, 73 useful links, blog posts, ...
2014, March. Online, 73 useful links, blog posts, ...
73 blog recent posts in 2014: environmental scienc...
73 Environmental science posts in March 2014; also...
2014, March, 73 blog posts: environmental science,...
Internet users liked it. The Internet users liked ...
Citation of papers, books on ecology, environmenta...
Electronic resource: Papers, 2009-2013, on ecology...
220 Articles available at ResearchGate: Innovation...
1 074 views; recent 24 hours, 08.03.2014 9:00 – 0...
Most viewed, recent week, March 9, 2014, environme...
Ecology, environmental science top publications, a...
ONLINE ARTICLES at ResearchGate, ENVIRONMENTAL SCI...
Approval by independent Internet user, Tweet got f...
made available online free. Article: Biogenic cop...
Environmental science, Part 11, ResearchGate. Bioc...
Environmental science, Part 10, ResearchGate. cont...
Environmental science, Part 9, ResearchGate. Anthr...
Environmental sci., Part 8, ResearchGate. aquatic,...
Many recent blog posts: Environmental Sci., Ecolog...
Environmental science. Academia 5. Articles at Aca...
Environmental science. Academia 4. Articles at Aca...
Environmental science. Academia. 3. Articles at A...
Environmental sci., ecology, biol. Academia. 2. Ar...
Environmental Sci., Ecology, Biol. Academia 1. Art...
Environmental sci., full-texts downloaded recently...
Environmental sci., Researchers who downloaded th...
Environmental science, Publication views at Resear...
Environmental science. Part 7. Biological effects ...
Environmental science. Part 6. Top articles, lists...
Environmental science. Part 5. Top articles, lists...
Selected links, environmental science
on facebook, these pages, groups are recommended: ...
2000+ times these articles were used. Environmenta...
2,019 times these publications -environmental scie...
Availability in libraries, U.S., Russia, U.K., Ger...
Internet users liked it. Diana Manjarrez, Professo...
On the Article titled: The concept of aquatic biot...
The colleagues who liked the online publication on...
1154 views, 28.02.2014, 11:00 – 07.03.2014, 10...
New recent posts, environmental science, ecology, ...
Citation. 2 of publications (of the series of env...
Approval of Internet users. They approved the publ...
List of many posts, links. Environmental sci., eco...
List of posts, links. Environmental sci., ecology,...
Many recent posts on environmental science, with k...
10 Most viewed posts: 941 views during 24 hours, ...
Internet users liked this: new facts: phytotoxici...
Environmental science. Part 4. Top articles, lists...
Citation of Article: Some aspects of water filteri...
U.S., U.K., Britain, England, France, Germany, Swi...
Citation. Part 3. Environment, biology. ResearchGa...
Citation. Part 2. Environment, biology. Researchga...
Twitter. Interest to, approval of results of envir...
10 most viewed, blog posts, environmental science,...
Approval, interest of Internet users, articles on ...
1,974 Downloads. These publications on environment...
These publications were upvoted, requested at Rese...
Publications that were bookmarked recently online,...
Citation of some papers, books on environmental sc...
Internet user liked this. César Saldaña liked it: ...
Environmental sciences. Part 3. 17 Innovationen.Ge...
Environmental science, Part 2, ResearchGate. Links...
Environmental science, links, ResearchGate. Concis...
The Internet users liked these publications online...
Most viewed, 4 March, 2014; environmental science,...
Recent blog posts: environmental toxicology, ecoto...
Updated,14 publications: environmental science and...
In Italian, and English. useful bibliography, envi...
articles on ecology, environmental science, protec...
10 most viewed blog posts, recent 24 hours, 02.03....
Interest attracted to these papers on ecology, env...
10 web pages viewed most often during recent 24 h,...
Environmental science. Viewed most often, most vie...
Introduction to Biochemical Ecology; Vvedenie v bi...
scoperte, ecologia, ambiente, innovazioni, sicurez...
Very Concise summary of scientific results. Discov...
summary, scientific discoveries, innovations in ec...
http://5bio5.blogspot.com/2014/08/265-posts-march-2014-and-some-other.html
**
recently.
4 Russian ecology articles that were cited in the Chinese scientific paper recently. Citation in China.
http://5bio5.blogspot.com/2014/08/4-russian-ecology-articles-were-cited.html
These Russian ecology articles were cited:
2005a. On some issues of maintaining water quality and self-purification. Water Resources, 32 (3), 305- 313.
Full text: https://www.researchgate.net/publication/215586879_ ;
2005b. On the multifunctional role of the biota in the self-purification of aquatic ecosystems. Russian Journal of Ecology, 36 (6): 414-420.
Full text: https://www.researchgate.net/publication/227317445_ ;
2010. Biocontrol of Water Quality: Multifunctional Role of Biota in Water Self-Purification. Russian Journal of General Chemistry, 80 (13): 2754-2761.
Full text: https://www.researchgate.net/publication/227303635_
1999. The most important components of self-purification of ecosystems and its possible impairment as a result of chemical pollution. Vestnik Moskovskogo Universiteta Seriya XVI Biologiya, 1: 24-32.
These articles were cited
in the scientific publication:
J. Ocean Univ. China (Oceanic and Coastal Sea Research) 2013, 12 (1): 70-76;
Environmental Capacity of Petroleum Hydrocarbon Pollutants in Jiaozhou Bay, China: Modeling and Calculation;
LI Keqiang 1), 2),*, SU Ying 1), YING Jun 3), WANG Xiulin 1), and MU Jinbo 4)
1) College of Chemistry and Chemical Engineering, Ocean University of China, Qingdao 266100, P. R. China;
2) Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education, Ocean University of China, Qingdao 266100, P. R. China;
3) Shandong Entry-Exit Inspection and Quarantine Bureau, Qingdao 266001, P. R. China ;
4) Shandong Academy of Environmental Science, Jinan 250013, P. R. China ;
AUG 25
34-paper collection on Environmental sciences, ecology, biology at PubMed, 34 innovative papers,
34-paper collection on
Environmental sciences, ecology, biology at PubMed, 34 innovative papers, selected , updated August 25, 2014:
http://5bio5.blogspot.com/2014/08/34-paper-collection-on-environmental.html
http://5bio5.blogspot.com/2013/09/environmental-sciences-biosciences-at.html
also see:
http://5bio5.blogspot.com/2012/09/environmental-and-biosciences-at-pubmed.html
All these articles are at PubMed. However, PubMed does not show the abstracts of all of these papers. The abstracts of these papers are presented here, see them below.
Unique addition of what was missed at PubMed: a series of abstracts of the relevant publications.
What was updated: A series of useful abstracts were added.
Almost all of these papers -full texts - are available at ReseachGate.
The List of the papers (environmental science, water science, ecotoxicology, water quality improvement) authored and coauthored by Moscow State University, indexed at PubMed, selected. Also indexed by Web of Science, and Scopus. All papers contain new facts and fundamental conceptual innovations.
Updated: September 16, 2013:
KEY WORDS: priorities, fundamentals, ecology, environmental, science, life, bioassay, biomedical, sciences, geosciences, ecosystems, biosphere, organisms, levels, life systems, man-made impacts, anthropogenic, effects, terrestrial, aquatic, research, topics, hazards, pollutants, xenobiotics, aquatic, water, purification, quality, filtration, bivalves, surfactants, detergents, biosphere, SDS, sodium dodecylsulfate; TX100, Triton X-100; TDTMA, tetradecyltrimethylammonium bromide; functioning, function, molluscs, mollusks, mussels, oysters, Unio, tumidus, U. pictorum, Mytilus, galloprovincialis, edulis, Crassostrea gigas, ecological, hazard, sublethal, concentrations, synthetic, self-purification, bioassay, innovation, theory, new, conceptualization, Cu, Zn, Cd, Pb, experimental, systems, Ceratophyllum demersum, phytoremediation, innovations, hot topics,
1. The aquatic macrophyte Ceratophyllum demersum immobilizes Au nanoparticles after their addition to water.
Ostroumov S.A., Kolesov G.M.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2010 Mar-Apr; 431: 124-127.
Affiliation: M.V.Lomonosov Moscow State University, V.I.Vernadsky Institute of Geochemistry and Analytical Chemistry, Russian Academy of Sciences, Moscow, Russian Federation;
PMID: 20506851 [PubMed - indexed for MEDLINE] [© Pleiades Publishing, Ltd., ISSN 0012-4966].
DOI: 10.1134/S0012496610020158. http://scipeople.com/publication/69766/ .
Full text see online free: http://www.scribd.com/doc/45579375;
Abstract: This is the first time it was shown that the nanoparticles of gold (Au) in substantial amount bind to the living biomass of the aquatic macrophyte, Ceratophyllum demersum. The concentrations of Au were measured in the samples of the phytomass using neutron activation analysis (NAA). As a result of the binding and/or immobilization of the nanoparticles, the amount of Au in the samples of the phytomass increased manifold (by a factor of 430) above the background level of gold in the plant tissues. The increase was by two orders of magnitude. The new data added some new information to the modern vision of the multifunctional role of the biota in the migration of elements in aquatic ecosystems. Also, the result added new information to the studies of interactions of Au with organisms that may contribute to new biotechnologies.
Full text: http://www.scribd.com/doc/45579375;
The article is indexed by PubMed. It is on SpringerLink. www.springerlink.com/index/J487667871W02H28.pdf; http://www.springerlink.com/content/j487667871w02h28/;
DOI: 10.1134/S0012496610020158;
ISSN 0012-4966,
-*-*-*-*-
2. Decreasing the measurable concentrations of Cu, Zn, Cd, and Pb in the water of the experimental systems containing Ceratophyllum demersum: the phytoremediation potential.
Ostroumov S.A., Shestakova T.V.
Doklady Biological Sciences (Dokl. Biol. Sci.) 2009 Sep-Oct; 428:444-447.
PMID: 19994786 [PubMed - indexed for MEDLINE]. Abstract: Discovery of the fact that aquatic plants C. demersum induced a removal of the heavy metals Cu, Zn, Cd, and Pb from water. Using the method of inversion voltamperometry, the concentrations of the heavy metals Cu, Zn, Cd, Pb were measured in the water of the experimental microcosms. Aquatic macrophytes Ceratophyllum demersum were incubated in some of the microcosms. The measured concentrations of all four metals decreased in the microcosms with macrophytes much faster than in the control microcosms without any macrophytes.
[publisher: MAIK Nauka/Interperiodica] DOI: 10.1134/S0012496609050159; www.springerlink.com/index/ML1062K7271L318N.pdf; https://www.researchgate.net/file.FileLoader.html?key=8fd8998627b86102db72c9b237c25054; http://sites.google.com/site/9dbs444/decreasing-the-measurable-concentrations-of-cu-zn-cd-and-pb-in-the-water; PMID: 19994786 [PubMed - indexed for MEDLINE];
DOI: 10.1134/S0012496609050159;
Full text online free:
https://sites.google.com/site/9dbs444/decreasing-the-measurable-concentrations-of-cu-zn-cd-and-pb-in-the-water
-*-*-*-*-
3. Aquatic ecosystem as a bioreactor: water purification and some other functions.
Ostroumov S.A.
Rivista di Biologia / Biology Forum ( Riv. Biol.), 2004 Jan-Apr; 97(1):67-78.
PMID: 15648211 [PubMed - indexed for MEDLINE]. http://www.ncbi.nlm.nih.gov/pubmed/15648211; http://scipeople.com/uploads/materials/4389/4Rivista.Biologia97p39Aquatic..Bioreactor.RTF ; http://direct.bl.uk/bld/PlaceOrder.do?UIN=159337168&ETOC=RN&from=searchengine; Publisher ANICIA S.R.L.; Country of publication Italy; ISSN 0035-6050;
Full text: http://www.scribd.com/doc/48097462/-4Rivista-Biologia97p39Aquatic-Bioreactor;
Abstract: Ostroumov S. A. Aquatic ecosystem as a bioreactor: water purification and some other functions. - Rivista di Biologia / Biology Forum. 2004. vol. 97. p. 39-50. The author formulated a new fundamental concept of aquatic ecosystem as a bioreactor that carries out the function of water purification in natural water bodies and streams. According to his new concept, the ecosystem as a bioreactor has the following characteristic attributes: (1) it is a large-scale (large-volume) bioreactor; (2) it is a diversified (in terms of the number of taxa and the scope of functional activities) bioreactor; (3) it possesses a broad range of biocatalytic (chemical-transforming and degrading) capabilities. New experimental data on xenobiotics-induced inhibition of the functioning of the molluscs Unio tumidus, U. pictorum, M. galloprovincialis and Limnaea stagnalis emphasize the potential ecological hazard from sublethal concentrations of pollutants (including those exemplified by synthetic surfactants and detergents).
-*-*-*-*-
4. On the biotic self-purification of aquatic ecosystems: elements of the theory.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2004 May-Jun; 396: 206-211. Opinion paper.
PMID: 15354827 [PubMed - indexed for MEDLINE];
http://www.scribd.com/doc/48099028/4DBS-On-the-Biotic-Self-Purification-fulltext;
ABSTRACT: Ostroumov S.A. On the biotic self-purification of aquatic ecosystems: elements of the theory. - Doklady Biological Sciences, V. 396, 2004, p. 206–211. (Translated from DAN, V.396, No.1, 2004, p.136–141). Fundamental elements are formulated for a new qualitative theory of the polyfunctional role of the biota in improving water quality and doing self-purification of water in aquatic ecosystems. The elements of the theory covers the following: sources of energy for the mechanisms of water self-purification; the main functional blocks of the system of self-purification; the system of the main processes that are involved; the analysis of the degree of participation of the main large taxa; the reliability of the mechanisms of water self-purification; regulation of the processes; the response of the mechanisms of water self-purification towards the external influences (man-made impacts, pollution); and some conclusions relevant to the practice of environment protection. In support of the theory, the results are given of the author's experiments which demonstrated the ability of some pollutants (surfactants, detergents, and some others) to inhibit the water filtration activity of marine filter-feeders, namely, the bivalve mollusks Mytilus galloprovincialis, Mytilus edulis, and Crassostrea gigas. ISSN 0012-4966 (Print) 1608-3105 (Online). Distributed by Springer, orderdept@springer-sbm.com. DOI: 10.1023/B:DOBS.0000033278.12858.12; http://scipeople.ru/users/2943391/; https://www.researchgate.net/file.FileLoader.html?key=60f338228d6f3c5114d223ab81e15d3b; http://www.springerlink.com/content/t0nv6rk522230175/;
-*-*-*-*-
5. Medium-term and long-term priorities in ecological studies.
Ostroumov SA, Dodson SI, Hamilton D, Peterson SA, Wetzel RG.
Rivista di Biologia / Biology Forum ( Riv. Biol.), 2003 May-Aug; 96(2): 327-332. www.ncbi.nlm.nih.gov/pubmed/14595906 ;
PMID: 14595906 [PubMed - indexed for MEDLINE]; Abstracts in Eng. and Italian (p. 332). Bibliogr. 20 ref. Full text: http://www.scribd.com/doc/48100827/3Rivista-Bio-96-Priorities-2;
http://scipeople.com/uploads/materials/4389/3RivistaBio96Priorities2.rtf;
ABSTRACT: Ostroumov S.A., Dodson S., Hamilton D., Peterson S., Wetzel R.G. Medium-term and long-term priorities in ecological studies // Rivista di Biologia / Biology Forum. 2003. 96: 327-332. Abstracts in Eng. and Italian (p. 332). Bibliogr. 20 ref. PMID: 14595906 [PubMed - indexed for MEDLINE];
Research priorities in ecology and environmental sciences for the future are formulated. The priorities for both fundamental and applied ecology are proposed. The list of priorities includes 50 items. The priorities are relevant to terrestrial, aquatic, and general ecology. The list of priorities is helpful when grant proposals are being prepared, evaluated, and selected for funding.
KEY WORDS: priorities, fundamentals, ecology, environmental sciences, biospheric sciences, life and biomedical sciences, geosciences, ecosystems, biosphere, organisms, levels of life systems, man-made impacts, anthropogenic effects, terrestrial and aquatic, research topics.
-*-*-*-*-
6. Effect of a cationic amphiphilic compound on rotifers.
Ostroumov SA, Walz N, Rusche R.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2003 May-Jun;390: 252-255.
PMID: 12940156 [PubMed - indexed for MEDLINE]
Ostroumov S. A., Walz N., Rusche R. Effect of a cationic amphiphilic compound on rotifers. - Doklady Biological Sciences. 2003. Vol. 390. p.252-255, Full text online free: http://www.scribd.com/doc/52634169/; https://www.researchgate.net/file.FileLoader.html?key=74bb403b372f3adc298aacbef568b0ee; [ISSN 0012-4966 (Print) 1608-3105 (Online)]. Welfare of the biosphere depends on filter-feeders that contribute to making water clean and transparent. Important new facts on the hazard of man-made damage to the beneficial function of rotifers, which are the plankton filter-feeders, were discovered. In this paper, it is the first time that it was found that a chemical pollutant inhibits filtration activity of rotifers. As a chemical pollutant, a representative of synthetic surfactants was studied. The study featured an advanced technique that allows precise measurement of the filtration rate on the basis of measuring the rate of removal of algal cells from water by rotifers. The experiment was run in the following system: the two-species culture of rotifers (Brachionus calyciflorus) and algae (Nannochloropsis limnetica; Eustigmatophyceae) was studied in a two-stage turbidostat (temperature 20 °C) as described by Walz et al. (1997) with some modifications. Dilution rate (the higher the filtration activity of rotifers, the higher the dilution rate) was monitored in the turbidostat. As a model of a chemical pollutant, the cationic surfactant tetradecyltrimethylammonium bromide (TDTMA) was added to the water of the turbidostat. On the basis of previous studies (Ostroumov, 2000), the concentration of TDTMA was 0.5 mg/L. Dynamics of the dilution rate before and after addition of the chemical was monitored. The dilution rate decreased after the addition of TDTMA. Also, a comparison of the dilution rate in the experimental turbidostat (with the surfactant) with the control turbidostat (without the chemical) was made. Under conditions of the addition of TDTMA the dilution rate was lower than in the control turbidostat. The lower dilution rate means a lower filtration and grazing activity of the population of the rotifers. The results are in accord with the hypothesis that the cationic surfactant TDTMA can inhibit the filtering activity of populations of rotifers. The results support the conclusions of previous publications, in which analogous inhibitory effects of surfactants on filtration rate by another major group of filter-feeders (the bottom-dwelling bivalve mollusks) were discovered (Doklady of the Russian Academy of Sciences, 2001, 380, pp. 847-849; 2002, vol. 382, pp.138-141). www.springerlink.com/index/R3126462K122M13T.pdf; DOI 10.1023/A:1024417903077;
Key words: effects, cationic amphiphilic substance, rotifers, two-species culture, Brachionus calyciflorus, algae Nannochloropsis limnetica, turbidostat, filtration, cationic surfactant, tetradecyltrimethylammonium bromide, TDTMA, grazing, filtering, activity, populations, filter-feeders, chemical, pollution, pollutants, sublethal concentration, trophic interactions, man-made effects, anthropogenic, clearance rate
www.springerlink.com/index/R3126462K122M13T.pdf
http://www.citeulike.org/user/ATP/article/10054261
DOI 10.1023/A:1024417903077;
-*-*-*-*-
7. The synecological approach to the problem of eutrophication.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 Nov-Dec;381:559-562.
PMID: 12918433 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/50524170
http://www.scribd.com/doc/49065550/;
DOI: 10.1023/A:1013378505630;
Abstract (in addition to PubMed): the author suggests a new component of the measures against eutrophication: reducing the input of the pollutants that weaken the potential of the filter-feeders for removing algae from water. A new approach to combat eutrophication. Among new facts: the liquid detergent Fairy 2 mg/L inhibited filtration by bivalve filter-feeders mussels Mytilus galloprovincialis within 2-23 min after addition
-*-*-*-*-
8. The hazard of a two-level synergism of synecological summation of anthropogenic effects.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 Sep-Oct;380:499-501.
PMID: 12918416 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/50526301
http://www.scribd.com/doc/49065634/
DOI: 10.1023/A:1012348127085;
Abstract (in addition to PubMed): The author identified a new type of ecological hazard of anthropogenic impact (using chemical pollution as an example), which he proposed to term “synecological summation” or “synergistic summation” of anthropogenic effects on organisms of two adjacent trophic levels. In the paper, the hazard was found that even relatively mild influences on organisms of two adjacent trophic levels may eventually produce a synergistic, pronounced and definitely undesirable effect that will lead to an abnormal increase in the abundance of organisms of one of the trophic levels. The concrete examples of synergism were found when anthropogenic impacts affected organisms of two adjacent trophic levels (bivalves and algae). Bioeffects were described of the action of the synthetic detergent Vesna (1 mg/l) on oysters Crassostrea gigas, the detergent IXI (10 mg/l) on mussels Mytilus galloprovincialis, and the detergent Tide-Lemon (50 mg/l) on M. galloprovincialis. The hazard of simultaneous influence of contamination of environment (e.g., by detergents) on organisms of the two trophic levels may occur when the polluting chemicals produce effects on algae and bivalves that are filter-feeders.
-*-*-*-*-
9. Responses of Unio tumidus to mixed chemical preparations and the hazard of synecological summation of anthropogenic effects.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 Sep-Oct; 380: 492-495.
PMID: 12918414 [PubMed - indexed for MEDLINE]
www.scribd.com/doc/49065621
DOI: 10.1023/A:1012344026176;
Abstract (in addition to PubMed): Effects of commercial detergents, which are chemical mixtures, on bivalves (detergent OMO, freshwater mussels Unio tumidus) were studied. Detergents exert two types of hazardous effects on organisms and ecosystems: the phosphorus-induced stimulation of phytoplankton growth and surfactant-induced inhibition of filter-feeders. Because filter-feeders are an effective natural factor of control of unicellular plankton populations, the two types of the detergent-induced effects on ecosystem facilitate the growth of phytoplankton populations. Therefore, these effects sum together, thereby increasing the hazard of the man-made impact on the ecosystem. The results contribute to a better understanding of the potential ecological danger of pollutants for integral functions of ecosystems. It is the synecological summation of the effects of anthropogenic factors on plankton populations and filter-feeders that is of particular concern. The interaction between populations of plankton organisms and filter-feeders that feed on plankton should be taken into consideration in the studies on the ecological effects of synthetic detergents on these populations. Situations of man-made impact should be analyzed based on the synecological approach to the problem.
-*-*-*-*-
10. Pellets of some mollusks in the biogeochemical flows of C, N, P, Si, and Al.
Ostroumov S.A., Kolesnikov M.P.
Doklady Biological Sciences (Dokl. Biol. Sci.) 2001 Jul-Aug; 379: 378-381.
PMID: 12918380 [PubMed - indexed for MEDLINE]
Pellets of some mollusks in the biogeochemical flows of C, N, P, Si, and Al. — Doklady Biological Sciences, 2001. Vol. 379, P. 378-381. Bibliogr. 12 refs. [Authors: S.A.Ostroumov, Kolesnikov M.P.] (Translated from: DAN 2001. Vol. 379. No. 3. P. 426-429). ISSN 0012-4966. Distributed by Springer, orderdept@springer-sbm.com.
DOI 10.1023/A:1011620817764;
http://sites.google.com/site/2001dbs379p378pellets
http://www.scribd.com/doc/45911730
http://www.researchgate.net/publication/10614352_Pellets_of_some_mollusks_in_the_biogeochemical_flows_of_C_N_P_Si_and_Al
ABSTRACT: The author obtained new data on coupling of geochemical and ecological (hydrobiological) processes. The role of the freshwater mollusks Lymnaea stagnalis in the flows of chemical elements in the biosphere was studied by detecting the elemental composition and amount of pellets produced by the mollusks. For the first time, the following was quantitatively studied: the elemental composition (C, N, P, Si, Al) of the pellets formed by the mollusks Lymnaea stagnalis feeding on the leaves of the higher plants Nuphar lutea and Taraxacum officinale; the amount (wet weight, dry weight) of the pellets formed by L. stagnalis feeding on the leaves of N. lutea and T. officinale; the transfer of matter and chemical elements (C, N, P, Si, Al) with the pellets of freshwater bivalves (unionids Unio sp., etc.) per unit biomass of the mollusks and per unit area of the ecosystem of the river; the transfer of matter and chemical elements (C, N, P, Si, Al) with the pellets of L. stagnalis per unit biomass of mollusks and per unit area of the ecosystem of the pond. The synthetic surfactants ТDТМА 2 mg/l, SDS 1-2 mg/l, the detergent Tide-Lemon 75 mg/l inhibited the trophic activity of L. stagnalis. Percents of food assimilability of taxons of invertebrates, from Rotatoria (48-80) to Diptera (1-31)].
-------------------Full text see: http://www.scribd.com/doc/45911730;
http://sites.google.com/site/2001dbs379p378pellets/;
-*-*-*-*-
11. Imbalance of factors providing control of unicellular plankton populations exposed to anthropogenic impact.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 Jul-Aug;379:341-343.
PMID: 12918370 [PubMed - indexed for MEDLINE];
Full text: https://sites.google.com/site/1dbs379p341imbalance/
www.scribd.com/doc/49065596
DOI: 10.1023/A:1011600213221;
Abstract (in addition to PubMed):
The paper presents and analyzes new experimental data on the effects of chemical pollution of aquatic medium on the abundance of unicellular plankton organisms. The following 6 types of effects of filter-feeders and chemical pollutants [synthetic surfactants and detergents (mixtures)] on phytoplankton organisms were found (examples were given in this paper in Tab.2): (1) Inhibition of growth (and abundance); (2) Growth stimulation in the presence of surfactants and detergents; (3) Decrease in abundance as a result of elimination of plankton cells from water by the freshwater mollusks Unio tumidus and rotifers; (4) Abundance decrease as a result of water filtration by the marine mollusks Mytilus edulis, M. galloprovincialis, and Crassostrea gigas; (5) Decrease in the efficiency of cell elimination from water caused by the synthetic surfactant, Triton X-100 (TX-100), namely, the TX-100-induced (5 mg/l) inhibition of the filtration activity of the freshwater mollusks U. tumidus; (6) Decrease in the efficiency of cell elimination from water as a result of inhibition of the filtration activity of the marine mollusks Mytilus galloprovincialis and Crassostrea gigas induced by surfactants and Avon Herbal Care (hair shampoo). A new parameter and formula were suggested: the efficiency of cell elimination from water, ECE. The following maximum values of ECE were found (at the concentrations of the chemical, mg/l, in brackets): (1) Detergent OMO, Unio tumidus, 186.7 (50); (2) Detergent Losk-Universal, Mytilus galloprovincialis, 551.7 (7); (3) Detergent Tide-Lemon, Mytilus galloprovincialis, 206.9 (50); (4) Detergent IXI, M. galloprovincialis, 157.8 (10); (5) Detergent Deni-Automat, Crassostrea gigas, 10 800.0 (30); (6) Detergent Lanza, Crassostrea gigas, 261.7 (20); (7) Detergent Vesna-Delikat, Crassostrea gigas, 200.0 (1); The tables in the paper: Factors of regulation of unicellular plankton abundance (Tab.1); effects of surfactants and detergents on phytoplankton abundance (Tab.2); 7 detergents inhibit filtration of 3 species of marine and freshwater mollusks (Tab.3); Mytilus galloprovincialis eliminates from water the cells of Saccharomyces cerevisiae (these cells were used as a convenient model for particles suspended in water) and algae Pavlova lutheri = M. lutheri as a result of filtration (comparing the 2 processes at the same time, Tab. 4).
The results obtained in this work demonstrated and proved that certain pollutants (exemplified by synthetic surfactants and detergents) might cause a substantial imbalance of the factors controlling unicellular plankton populations. Direct and indirect (mediated by organisms-consumers) effects of certain surfactant-containing mixtures on unicellular plankton could sum with each other, giving rise to mutual amplification. This may cause a complete imbalance of the system. The conclusions made in this work may be applied to unicellular plankton of both marine and freshwater ecosystems, including ecosystems subjected to eutrophication. The results contribute to issues of environmental safety and resource use sustainability.
-*-*-*-*-
12. Effect of amphiphilic chemicals on filter-feeding marine organisms.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2001 May-Jun;378:248-250.
PMID: 12918342 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/49065593
http://www.scribd.com/doc/59417067
Abstract (in addition to PubMed):
For the first time, marine bivalve mollusks, the oysters Crassostrea gigas were used as the test-organisms in bioassay of some amphiphilic chemicals, namely, synthetic surfactants and detergents. This is the first paper to discover and report negative effects of synthetic surfactants and chemical mixtures (detergents) on water filtering activity of Crassostrea gigas. As a result, under the effect of the surfactants and detergents the removal of suspended particles from water by the oysters decreased. The amphiphilic chemicals (synthetic surfactants and detergents) are a new type of chemical pollutants that pollute the aquatic environment including oceans, seas and estuaries. The new data discovered a novel type of anthropogenic hazard to aquaculture of shellfish (aqua-farming, mariculture of oysters).
-*-*-*-*-
13. Anthropogenic effects on the biota: towards a new system of principles and criteria for analysis of ecological hazards.
Ostroumov S.A.
Rivista di Biologia / Biology Forum ( Riv. Biol.), 2003 Jan-Apr;96(1):159-169. Review.
PMID: 12852181 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/52636721
http://www.scribd.com/doc/52636721/3-System-of-Criteria;
Abstract (in addition to PubMed):
The currently accepted system of criteria for evaluating environmental and ecological hazards of man-made chemicals (pollutants) is vulnerable to criticism. In this paper, a new concept of the system of approaches towards criteria for evaluating the ecological hazard from man-made impact is proposed. It is suggested to assess the man-made impacts (including effects of pollutants and xenobiotics) on the biota according to the following four levels of disturbance in biological and ecological systems: (1) the level of individual responses; (2) the level of aggregated responses of groups of organisms; (3) the level of stability and integrity of the ecosystem; (4) the level of contributions of the ecosystem to biospheric processes. On the basis of the author’s experimental studies, an example is given of how to apply the proposed approach and the system of criteria to the analysis of concrete experimental data. To exemplify the efficiency of the proposed approach, it is shown how to use it to analyze new data on effects of a synthetic surfactant on water filtering by bivalves. It is concluded that the proposed approach will be helpful in better assessing environmental and ecological hazards from anthropogenic effects on the biota, including effects of man-made chemicals polluting ecosystems. New facts were discovered on effects of synthetic chemicals on marine organisms. The synthetic surfactant Triton X-100 (ТХ100) 0.5 mg/L inhibited the filtration of water (90 min, 16°С) by the marine bivalve mollusks mussels Mytilus edulis. As a result, this chemical inhibited the removal by the mussels of the cells of the algae Isochrysis galbana out of water. The abundance of unfiltered cells that stayed in water was twice as much than in the control system without TX100.
-*-*-*-*-
14. Identification of a new type of ecological hazard of chemicals: inhibition of processes of ecological remediation.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Jul-Aug; 385: 377-379.
Ostroumov S.A. Identification of a new type of ecological hazard of chemicals: inhibition of processes of ecological remediation. Doklady Biological Sciences. 2002. 385: 377-379. In Eng.; ISSN 0012-4966.
PMID: 12469618 [PubMed - indexed for MEDLINE]
DOI 10.1023/A:1019929305267; https://www.researchgate.net/file.FileLoader.html?key=8408a7cfaa984764b812ce79c77007f2; http://scipeople.ru/users/2943391/;
Full text see online free: http://www.scribd.com/doc/45911150;
Abstract (in addition to PubMed):
The author discovered and characterized a new type of environmental hazard of chemical pollution of water, which involves inhibition of important processes of ecological remediation of ecosystems (namely, the inhibition of water filtration by aquatic bivalves). The experiments were performed using the bivalve mollusks, oysters Crassostrea gigas, and the cell suspension of Saccharomyces cerevisiae (these cells were used as a convenient model of particles suspended in water). In the experiments, a laundry detergent (exemplified by the detergent Lanza-Automat) inhibited water filtration by the oysters C. gigas. As a result, the removal of the cells (S. cerevisiae) from water decreased. This demonstrated a new type of ecological hazard caused by water pollution with a chemical pollutant (detergent) at sublethal concentrations. This hazard is associated with the fact that chemical pollution of water causes a pronounced inhibition of the physiological activity of filter-feeders, thereby inhibiting the important ecological process of water filtration. This ecological process contributes significantly to improving water quality, water purification and the related remediation of aquatic ecosystems (their ecological repair).
[The innovative results presented in the paper included the following: a new parameter quantified: Effect on elimination efficiency (EEE); a new concept of ecological remediation as ecological repair; new data on the inhibitory effects of the detergent Lanza-Automat 20 mg/L on water filtration by the oysters Crassostrea gigas and removal of the cells of S. cerevisiae from water (Tabl. 1); a summary table of the effects of cationic, anionic, non-ionic surfactants, pesticides, potassium bichromate, on marine and freshwater bivalves, larvae of Ephemeroptera, rotifers, and Cladocera – mainly the data of the author, plus some data from literature (Tabl. 2). The author identified "a new type of ecological hazard caused by water pollution. This hazard is associated with the fact that chemical pollution of water causes inhibition of the physiological activity of hydrobionts, thereby inhibiting the ecological processes mediated by the hydrobionts. These processes contribute significantly to water purification and the related remediation of aquatic ecosystems (their ecological repair)" (p. 379)].
-*-*-*-*-
15. System of principles for conservation of the biogeocenotic function and the biodiversity of filter-feeders.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Mar-Apr; 383: 147-150.
PMID: 12053567 [PubMed - indexed for MEDLINE]
Full text: http://www.scribd.com/doc/45911862;
System of principles for conservation of the biogeocenotic function and the biodiversity of filter-feeders. - Doklady Biological Sciences. 2002 (March). Vol. 383: 147-150. Bibliogr.15 refs. ISSN 0012-4966 (Print) 1608-3105 (Online). Distributed by Springer, orderdept@springer-sbm.com.
Abstract (in addition to PubMed):
As a result of the author’s studies of filter-feeders (DAN, 1998, Vol. 362, P. 574-576; DAN, 2001, Vol. 378, P. 283-285), and the new experiments reported in this paper, it was firmly proved that the filtering activity of populations of filter-feeders in natural habitats might be significantly reduced if the concentrations of some pollutants (exemplified by synthetic detergents and surfactants) reach certain levels. To the author’s opinion, the ecological role of filter-feeders as factors of water purification in ecosystems is so important that the pollutant-induced inhibition of their filtering activity is a hazard to the well-being of the entire ecosystem. The author emphasizes that not only the biodiversity of filter-feeders but also their level of functional (filtration) activity is to be protected. In order to do so, the author suggested establishing a new type of protected areas whose main purpose is to protect functionally active populations of filter-feeders, including bivalve mollusks and other organisms. Those protected areas could be named hydrobiological (some variants: biofiltering, or malacological) reserves (some variants: refuges, sanctuaries, etc.). The author formulated 5 principles of nature conservation requirements in malacological and hydrobiological reserves (Tabl. 3). Among them is principle 2, protection or "conservation of filtration activity of organisms and populations". The paper contains data on how 5 synthetic detergents (1-50 mg/L) inhibited the filtration activity of the bivalve mollusks Unio tumidus, Mytilus galloprovincialis, Crassostrea gigas (Tabl. 2); on effects on the efficiency of elimination (EEE) of suspended matter from water that were measured (Tabl. 2); on the number of days (0.3 – 10) needed to filter the volume of aquatic (freshwater and marine) ecosystem by the local bivalve populations (a review of data from literature) (Tabl. 1). "I suggest that the existing system of protected terrestrial and water areas should be supplemented with special sites intended to conserve populations of filter-feeders. In addition to biodiversity conservation, these populations should be conserved because they fulfill a very important biogeocenotic function of water filtration and purification" (p.149). "The system of five principles…is proposed to provide an ecological basis of the environment conservation conditions at these sites (malacological and hydrobiological reserves)" (p.149)]. DOI 10.1023/A:1015398125876; www.springerlink.com/index/1MNVLNAYW36TC92R.pdf https://www.researchgate.net/file.FileLoader.html?key=888352078b275ef40a430eb5b4d7714c;
-*-*-*-*-
16. New definitions of the concepts and terms ecosystem and biogeocenosis.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Mar-Apr;383:141-143.
PMID: 12053565 [PubMed - indexed for MEDLINE]
www.scribd.com/doc/49065580;
DOI: 10.1023/A:1015393924967
[MAIK Nauka/Interperiodica distributed exclusively by Springer Science+Business Media LLC. ISSN 0012-4966 (Print) 1608-3105 (Online)]
Abstract (in addition to PubMed):
In 1935, the term 'ecosystem' was coined by A. Tansley. In the 1940s, another important term 'biogeocoenosis' was introduced by V. N. Sukachev. Since that time, a significant amount of new facts was accumulated in ecology. It is necessary to revisit the formulation of the basic concepts and terms in ecology, including the two terms mentioned above. The author proposed some new variants of the definition of the two terms that (1) reflect the modern vision of the basics of ecology; and (2) avoid the vicious circle of using other terms that in turn request their definitions. The author realizes that the new variants of the terms cannot be ideal and some other variants of the definitions are also possible. 5 specific features of the proposed definition of ecosystem (Table 1). 8 specific features of the proposed definition of biogeocenosis, and 8 distinctions between the proposed definition and the classical definition by V.N.Sukachev (Table 2)]. https://www.researchgate.net/file.FileLoader.html?key=997c8c86899d5a6e24531054ad1bcd1e; www.springerlink.com/index/VPG4YU2V3YD6T97B.pdf; DOI 10.1023/A:1015393924967; the Russian version of the paper: http://scipeople.ru/publication/66938/; http://ru.scribd.com/doc/49065580/
-*-*-*-*-
17.A new type of effect of potentially hazardous substances: uncouplers of pelagial-benthal coupling.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Mar-Apr;383:127-130.
PMID: 12053562 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/45913695; Ostroumov S.A. A new type of effect of potentially hazardous substances: uncouplers of pelagial–benthal coupling. - Doklady Biological Sciences. 2002 (March). Vol. 383 (1-6): 127-130. Bibliogr.15. ISSN 0012-4966.
Abstract. The paper presents a discovery of a new type of negative impact of pollutants on the biosphere, as a result of inhibition of water filtration by filter-feeders / suspension feeders. The water filtration and associated removal of suspended matter from water is part of migration of matter. As V.I. Vernadsky stressed, organisms are mediators of “biogenic migration of atoms in the biosphere”. This migration is partly implemented in the framework of pelagial–benthal coupling via the activity of filter-feeders, which remove the organic suspended matter from water and excrete pellets. The tables contains the following data: the average percentage of assimilated (16-90%) and non-assimilated (10-84%) food matter for 15 large taxa of invertebrates (Table 1); potassium bichromate inhibited water filtration by mussels Mytilus galloprovincialis (Table 2); surfactants, detergents, pesticides inhibited filtration by filter-feeders, marine and freshwater bivalves and rotifers (Table 3). A prediction was made: "Further research and experimental studies are expected to provide new evidence that sublethal concentrations of chemical pollutants induce a significant decrease in the filtration capacity of freshwater and marine filter feeders" (p.129). "The uncoupling process considered above is an anthropogenic violation of two basic laws (empirical rules or biogeochemical principles) of the biosphere functioning: (1) biogenic migration of atoms of chemical elements in the biosphere always tends toward its maximum expression; (2) on the geological time scale, the evolution of species gives rise to the forms of life that are stable in the biosphere, and is so directed that the biogenic migration of atoms in the biosphere increases" (p.129).]; DOI10.1023/A:1015385723150; https://www.researchgate.net/file.FileLoader.html?key=d988acb599e121964c48114374a87e8d;www.springerlink.com/index/28V23JBFADL1Y100.pdf;
Full text see online free: http://www.scribd.com/doc/45913695;
-*-*-*-*-
18. Biodiversity protection and quality of water: the role of feedbacks in ecosystems.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2002 Jan-Feb;382:18-21.
PMID: 11998748 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/52567956
Abstract (in addition to PubMed):
The article presents a new vision of how biodiversity helps towards a better environmental stability and water quality. The author made an innovative analysis of his experimental data and formulated the following fundamental principle: to maintain water quality, it is vital to protect the functionally active biodiversity of water ecosystems. In other words, according to the author’s new concept, the protection of functionally active biodiversity, including filter-feeders, is a key to maintenance of water quality. Among new facts obtained and reported in the paper: a chemical pollutant (exemplified by the synthetic detergent IXI, a sublethal concentration 20 mg/L) inhibited water filtration by the marine bivalve mollusks, mussels Mytilus galloprovincialis (3-25 min, 18 pro mille, 22.8ºC). Another synthetic detergent Deni-Automat ( a sublethal concentration 30 mg/L) also inhibited the water filtration by the marine bivalves oysters Crassostrea gigas Thunberg (2-40 min, 25.2ºC).]. These new data as well as the other related data obtained by the same author and reported in his other publications, supported the author’s fundamental concept. DOI 10.1023/A:1014465220673. http://www.springerlink.com/content/p89cugy9ddk053g7/;
http://www.scribd.com/doc/42558469/; PMID: 11998748 [PubMed - indexed for MEDLINE]; MAIK Nauka/Interperiodica distributed exclusively by Springer Science+Business Media LLC. ISSN0012-4966 (Print) 1608-3105 (Online). http://scipeople.ru/users/2943391/; http://sites.google.com/site/2dbs382p18biodivers/; http://www.citeulike.org/user/ATP/article/9734342;
-*-*-*-*-
19.
[An amphiphilic substance inhibits the mollusk capacity to filter phytoplankton cells from water].
Ostroumov SA.
Izv Akad Nauk Ser Biol. (Izvestiya Akademii Nauk Seriya Biologicheskaya ) 2001 Jan-Feb;(1):108-116. Russian.
PMID: 11236572 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/63444377
http://www.scribd.com/doc/63444377/BiolBul2001-1p95-E-an-Amphiphilic-BB95-An-amphiphilic-substance-inhibits;
** in Eng, in the form:
BIOLOGY BULLETIN, Volume 28, Number 1 (2001), 95-102;
DOI: 10.1023/A:1026671024000;
-*-*-*-*-
20. An aquatic ecosystem: a large-scale diversified bioreactor with a water self-purification function.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2000 Sep-Oct; 374: 514-516.
PMID: 11103331 [PubMed - indexed for MEDLINE];
www.scribd.com/doc/49065542
http://www.scribd.com/doc/49069997
Abstract (in addition to PubMed):
The author developed a new fundamental concept of aquatic ecosystem as a multi-functional bioreactor. One of the key functions of that bioreactor is upgrading water quality via a multi-component biomachinery of water self-purification. The paper presented some new facts, new ideas, including the following. Contribution of the main groups of aquatic organisms (heterotrophic bacteria, fungi, cyanobacteria and microalgae, protozoans, higher plants, invertebrates, fish and amphibians) to water self-purification: comparison and analysis (Tabl.1). New data on biological effects of representatives of an understudied class of aquatic pollutants, synthetic surfactants. Relatively small effects of the surfactant Triton X-100 4-5 mg/L on the bacteria Hyphomonas sp. MHS-3 (5 mg/L) and Hyphomonas sp. VP-6 (5-10 mg/L), a significant inhibition by Triton X-100 of the filtration by the bivalve marine mollusk Mytilus edulis (4 mg/L), and by the bivalve freshwater mollusk Unio tumidus (5 mg/L). The inhibitory effects of the surfactant TDTMA 1 mg/L on the marine mollusk M. galloprovincialis (Tabl. 2); the inhibition of feeding: effects of TX100 1-5 mg/L on the freshwater bivalve mollusk Unio tumidus, TDTMA 1-2 mg/L on the freshwater bivalve U. pictorum. Also, new inhibitory effects of the synthetic surfactants TDTMA 1 mg/L, SDS 1.7 mg/L, various detergents 6.7 – 50 mg/L, Avon Hair Care (AHC) 5-60 mg/L (sublethal concentrations) on M. galloprovincialis; TX100, TDTMA (2 mg/L), the synthetic detergent Tide-Lemon 75 mg/L on the freshwater species Lymnaea stagnalis (Tabl. 3). "Sublethal concentrations of contaminants may inhibit vital activities of other organisms involved in the function of an ecosystem as an analogue of a bioreactor. This finding provides a deeper insight into the mechanisms of anthropogenic impact on the biosphere. The concept put forward in this work emphasizes that intactness of the whole range of biological diversity of hydrobionts (aquatic organisms) is required to provide effective functioning of an ecosystem as an analog of a water self-purification bioreactor. Therefore, the monetary cost estimates of ecosystems and biota should be increased" (p. 516)]. http://www.ncbi.nlm.nih.gov/pubmed/11103331;
-*-*-*-*-
21. Biocatalysis of matter transfer in a microcosm is inhibited by a contaminant: effects of a surfactant on Limnea stagnalis.
Ostroumov SA, Kolesnikov MP.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2000 Jul-Aug;373:397-399.
PMID: 11013843 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/49065530
www.scribd.com/doc/49069985;
Abstract (in addition to PubMed):
It is the first paper that reported two new experimental results. First, the new author’s experiments measured the biota-driven fluxes of the matter and chemical elements in a model ecosystem. Second, the authors got another innovative result: a discovery of effects of chemical pollutants. Namely, these biota-driven flows of the chemical elements were decreased by a chemical pollutant exemplified by a synthetic surfactant.
By excreting some massive amount of organic matter in the form of pellets, mollusks drive the transfer of organic matter and contribute to the biogeochemical flows of chemical elements in aquatic ecosystems. For the first time, the quantitative assessment of the biogeochemical flows was made. Also, for the first time, it was discovered that a synthetic chemical may inhibit those flows. The pellet excretion rate by the gastropod mollusks Lymnaea stagnalis feeding on the phytomass of macrophytes (such as the plants Nuphar lutea) was 4–7 mg dry weight per 1 gram wet weight of the mollusks per 72 h. The pellet sedimentation contributes to the vertical transfer of chemical elements in the ecosystem. The pellet composition depended on the species of the plants eaten by the mollusks. When the gastropods L. stagnalis feed on the plants N. lutea, the pellets contain, in addition to organic and inorganic carbon, nitrogen (N, 2.3–2.9%), phosphorus (P, 0.4–0.5%), and silicon (Si, 1.1–1.9%). The relative content of Si was 30% higher than in the food phytomass. The synthetic surfactant tetradecyltrimethylammonium bromide (TDTMA, 2 mg/L) inhibited the feeding rate of the mollusks and pellet production, their accumulation at the bottom of microcosms, and the matter transfer connected with this. The data obtained demonstrated a new aspect of the ecological hazard due to environmental pollution with synthetic surfactants (exemplified by TDTMA and other quaternary ammonium compounds) at sublethal concentrations. According to the author’s opinion, other contaminants may also suppress the pellet production, their accumulation at the bottom, and the matter transfer associated with that. http://scipeople.ru/users/2943391/; http://sites.google.com/site/2000dbs373p397biocatallstag/;
-*-*-*-*-
22. The concept of aquatic biota as a labile and vulnerable component of the water self-purification system.
Ostroumov SA.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2000 May-Jun;372:286-289. Review.
PMID: 10944725 [PubMed - indexed for MEDLINE]
http://sites.google.com/site/2000dbs372p286biotalabil
Translated from Doklady Akademii Nauk, Vol. 372, No. 2, 2000, pp. 279–282. Original Russian Text Copyright © 2000 by Ostroumov.
It is the first paper in which it was clearly shown that aquatic biota (the sum of organisms) is the core part of the ecological mechanism of water self-purification in healthy aquatic ecosystems. The important attributes of this core part of the mechanism are: 1) lability; 2) vulnerability to anthropogenic impact.
Self-purification of water is a complex process including physical, chemical, and biological components. The vulnerability of different components of the water self-purification system to anthropogenic factors is as yet insufficiently understood. The goal of this work was to review the literature and our own unpublished experimental findings concerning potential vulnerability of the biotic component of the water self-purification system to chemical pollutants.
A new role of biota as a core, labile, vulnerable part of ecosystem and upgrade of water quality
www.scribd.com/doc/49069991
-*-*-*-*-
23. Criteria of ecological hazards due to anthropogenic effects on the biota: searching for a system.
Ostroumov S.A.
Doklady Biological Sciences (Dokl. Biol. Sci.), 2000 Mar-Apr;371:204-206.
PMID: 10833660 [PubMed - indexed for MEDLINE]; Full text online free:
http://sites.google.com/site/2000dbs371p204criteria/;
http://ru.scribd.com/doc/49065476/; http://ru.scribd.com/doc/49069767/;
http://ru.scribd.com/doc/49088234/
Why this paper is useful: http://www.scribd.com/doc/60891549/;
Blog post:
http://5bio5.blogspot.com/2012/07/fundamentally-new-solution-to-problem.html
Abstract (in addition to PubMed):
Abstract in short: This paper formulated a fundamentally new solution to the problem of selecting criteria for identification and assessing environmental hazards of chemical pollutants, toxicants; the paper explains why the currently accepted set of criteria is non-efficient and leads to mistakes;
Abstract in more detail:
This paper formulated a fundamentally new solution to the problem of selecting criteria for identification and assessing environmental hazards of chemical pollutants, toxicants; the paper explains why the currently accepted set of criteria is non-efficient and leads to mistakes. The currently accepted system of criteria for evaluating ecological hazards from man-made chemicals (which is used in W.Europe, N.America and in some other countries) is outdated and vulnerable to criticism. The author proposed a new concept of the system of the criteria for evaluating the ecological hazard from man-made impact. The author suggested to assess man-made impacts (including effects of pollutants and xenobiotics) on the biota according to the following four levels of disturbance in biological and ecological systems: (1) the level of individual and populational responses; (2) the level of aggregated responses; (3) the level of stability and integrity of the ecosystem; (4) the level of contributions of the ecosystem into biospheric processes. An example is given of how to apply the proposed system of criteria to the analysis of concrete experimental data. To exemplify the efficiency of the proposed system of criteria, it is shown how to use it to analyze the new original data on effects of a non-ionic surfactant on water filtering by bivalves. It is concluded that the proposed system of criteria will be helpful in better assessing environmental hazards from anthropogenic effects on the biota including effects of man-made chemicals polluting ecosystems. The examples of the tables in this paper: A new system of principles for analysis of man-made impact: the level-block approach to analysis of ecological hazards (Tab.1); the synthetic surfactant Triton X-100 (0.5 mg/L) inhibits water filtering by the bivalve mussels Mytilus edulis
(Tab. 2). "The proposed level–block approach to analysis of ecological hazards of anthropogenic alterations in ecosystems allows the multiplicity of anthropogenic effects on the biota to be systematized. This approach may be used to develop criteria for estimation and classification of ecological hazards due to anthropogenic effects" (p.206)]. ISSN 0012-4966. Distributed by Springer,orderdept@springer-sbm.com; Full text free: http://ru.scribd.com/doc/49069767/;http://ru.scribd.com/doc/49065476/; http://ru.scribd.com/doc/49088234/;
http://sites.google.com/site/2000dbs371p204criteria/; PMID: 10833660 [PubMed - indexed for MEDLINE]http://www.ncbi.nlm.nih.gov/pubmed/10833660; http://scipeople.ru/users/2943391/;
-*-*-*-*-
24. Biological filtering and ecological machinery for self-purification and bioremediation in aquatic ecosystems: towards a holistic view.
Ostroumov S.A.
Rivista di Biologia / Biology Forum ( Riv. Biol.), 1998; 91(2):221-232.
PMID: 9857844 [PubMed - indexed for MEDLINE]
http://www.scribd.com/doc/42830557
Abstract (in addition to PubMed):
Ostroumov S. A. Biological filtering and ecological machinery for self-purification and
bioremediation in aquatic ecosystems: towards a holistic view. -
Rivista di Biologia. 1998; 91(2): 221-232.
PMID: 9857844 [PubMed - indexed for MEDLINE]
According to one of approaches to the definition of criteria for the phenomenon of life, the key attribute
is the ability of the life system for some self-regulating and self-supporting. Part of such holistic
functions of aquatic ecosystems as self-regulating and self-supporting is their cleaning the water via a
multitude of various mechanisms. The goal of this paper is to present some fundamental elements of
the theory of ecosystem self-purification (water self-purification) which emphasizes the importance of
the four functional biological filters that are instrumental in purification and upgrading the quality of
water in aquatic ecosystems. These functional filters are: (1) direct water filtering by aquatic organisms
that are filter-feeders; (2) the filter (represented mainly by communities of aquatic plants/periphyton)
which prevents input of pollutants and biogenic (nutrient) elements (N, P) from land into water bodies and water streams; (3) the filter (represented by benthic organisms) which prevents re-entry of pollutants and biogenic elements from the bottom sediments into the water; (4) the filter (represented by microorganisms attached to particles which are suspended in the water) that provides microbiological treatment of the water column. New experimental data by the author reveal the negative role of manmade effects on the ecological machinery which purifies water. The analysis and discussion lead to the holistic theory of the natural process of bioremediation of aquatic ecosystems.
Key words:
aquatic, ecosystems, theory, water self-purification, Upgrading, quality of water, water filtering, organisms, filter-feeders, Communities, aquatic plants, periphyton, pollutants, biogenic, nutrient, elements, N, P, benthic, organisms, Microorganisms, attached, particles, suspended, water, microbiological, treatment, water column, man-made effects, natural, process, bioremediation,
-*-*-*-*-
25. Electrochemical proton gradient across the membranes of photophosphorylating bacteria.
Ostroumov SA, Jasaitis AA, Samuilov VD.
Biomembranes. 1979;10:209-233. Review.
PMID: 387102 [PubMed - indexed for MEDLINE]
-*-*-*-*-
26. Membrane potential and surface charge densities as possible generalized regulators of membrane protein activities.
Ostroumov SA, Vorobiev LN.
J. Theor. Biol. 1978, Dec 7;75(3):289-297.
PMID: 745444 [PubMed - indexed for MEDLINE]
-*-*-*-*-
27. Participation of chloroplasts and mitochondria in virus reproduction and the evolution of the eukaryotic cell.
Ostroumov SA.
J. Theor. Biol. 1977, Jul 21;67(2):287-297.
PMID: 197321 [PubMed - indexed for MEDLINE]
-*-*-*-*-
28. Reconstitution of Biological Molecular generators of electric current. Bacteriorhodopsin.
Drachev LA, Frolov VN, Kaulen AD, Liberman EA, Ostroumov SA, Plakunova VG, Semenov AY, Skulachev VP.
J Biol Chem. 1976 Nov 25;251(22):7059-7065.
PMID: 62754 [PubMed - indexed for MEDLINE]
-*-*-*-*-
29. [Membrane potential as a possible polyfunctional regulator of the activity of membrane proteins].
Ostroumov SA, Vorob'ev LN.
Nauchnye Doklady Vysshei Shkoly Biologicheskie Nauki (Nauchnye Doki Vyss Shkoly Biol Nauki). 1976;(7):22-26. Review. Russian.
PMID: 136276 [PubMed - indexed for MEDLINE]
-*-*-*-*-
30. A study on the membrane potential and pH gradient in chromatophores and intact cells of photosynthetic bacteria.
Barsky EL, Bonch-Osmolovskaya EA, Ostroumov SA, Samuilov VD, Skulachev VP.
Biochim. Biophys. Acta. 1975 May 15;387(2):388-395.
PMID: 236031 [PubMed - indexed for MEDLINE]
-*-*-*-*-
31.Direct measurement of electric current generation by cytochrome oxidase, H+-ATPase and bacteriorhodopsin.
Drachev LA, Jasaitis AA, Kaulen AD, Kondrashin AA, Liberman EA, Nemecek IB, Ostroumov SA, Semenov AYu, Skulachev VP.
Nature. 1974 May 24;249(455):321-324.
PMID: 4366965 [PubMed - indexed for MEDLINE]
-*-*-*-*-
32.Electrogenesis by bacteriorhodopsin incorporated in a planar phospholipid membrane.
Drachev LA, Kaulen AD, Ostroumov SA, Skulachev VP.
FEBS Lett. 1974, Feb 1;39(1):43-45.
PMID: 4851814 [PubMed - indexed for MEDLINE]
-*-*-*-*-
33.[Membrane potential in the chromatophores of Rhodospirillum rubrum conditioned by a transhydrogenase reaction].
Ostroumov SA, Samuilov VD, Skulachev VP.
Nauchnye Doki Vyss Shkoly Biol Nauki. (Nauchnye Doklady Vysshei Shkoly Biologicheskie Nauki) 1974;2:92-95. Russian.
PMID: 4150987 [PubMed - indexed for MEDLINE]
-*-*-*-*-
34.Transhydrogenase-induced responses of carotenoids, bacteriochlorophyll and penetrating anions in Rhodospirillum rubrum chromatophores.
Ostroumov SA, Samuilov VD, Skulachev VP.
FEBS Lett. 1973 Apr 1;31(1):27-30.
PMID: 4145457 [PubMed - indexed for MEDLINE]
-*-*-*-*-
Addendum: the following material is not on PubMed but it is equally important.
Ostroumov S.A. Some aspects of water filtering activity of filter-feeders // Hydrobiologia. 2005. Vol. 542, No. 1. P. 275 – 286 (in Eng.). Bibliogr. 63 refs. DOI 10.1007/s10750-004-1875-1. ISSN 0018-8158 (Print) 1573-5117 (Online).
-------------------Full text see: http://www.scribd.com/doc/45914201;
------------Abstract. The author gave innovative analysis of the vital role of filter-feeders in functioning and maintenance of stability of aquatic ecosystems (both freshwater and marine ones). The paper includes the following tables. Table 1. Examples of the impact of filter-feeders on the water column: clearance time. Table 2. Examples of diversity of taxa of benthic organisms involved in removing seston from water, and filtration rates. Table 3. Effect of the increase in concentration of algae on the filtration rate and the amount consumed by rotifers Brachionus calyciflorus. Table 4. The ratio F:P in some groups of organisms (examples of "ecological taxation"). Table 5. The ratio F: (P+R) in some filter feeders. Table 6. Results of the ecological tax: biosediment formation in 6 ecosystems. Table 7. Contribution of various aquatic organisms to oxidation of organic matter in the ecosystem of the Sea of Okhotsk. Table 8. Some chemicals that inhibit the filtering activity of the filter-feeders (new data of the author). Table 9. Some features of water-filtering biomachinery: 6 fundamental principles. Table 10. The level-block approach to the analysis of ecological hazards of anthropogenic effects on the biota (the new conceptualization proposed by the author). Some fundamental principles that characterize the pivotal roles of the biodiversity of filter-feeders in ecosystems. Among those roles are: (1) the role of ecological repair of water quality, (2) the role of contributing to reliability and stability of the functioning of the ecosystem, (3) the role of contributing to creation of habitat heterogeneity, (4) the role of contributing to acceleration of migration of chemical elements. It is an important feature of the biomachinery of filter-feeders that it removes from water various particles of a very broad range of sizes. Another important principle is that the amount of the organic matter filtered out of water is larger than the amount assimilated so that a significant part of the removed material serves no useful function to the organism of the filter-feeder, but serves a beneficial function to some other species and to the ecosystem as a whole. The new experiments by the author additionally demonstrated a vulnerability of the filtration activity of filter feeders (e.g. bivalves and rotifers) to some xenobiotics (tetradecyltrymethylammonium bromide, heavy metals and some others). The inhibition of the filtration activity of filter-feeders may lead to the situation previously described as that of an ecological … of the second type.
**
Ostroumov S.A. Inhibitory analysis of regulatory interactions in trophic webs.- Doklady Biological Sciences, 2001, Vol. 377, p. 139–141. (Translated from Doklady Akademii Nauk, 2000, Vol. 375, No. 6, p. 847–849). Abstract: In the paper, the author proposed a new approach to analyze the key ecological issue, the interactions between organisms in ecosystems. The new methodology proposed is inhibitory analysis. The author applied this approach to analyze trophic chains: the top–down control of plankton by benthic filter-feeders. This control, as the author’s experiments have shown, might be removed by chemical inhibitors (the latter may enter the ecosystem as pollutants). As an example, the author gives the results of his experiments on how surfactants [tetradecyltrimethylammonium bromide (TDTMA)] and synthetic detergents inhibited the control of plankton (Monochrystis lutheri) by mussels Mytilus galloprovincialis. The method was successfully applied to innovatively analyze the factors that are among reasons of eutrophication. Among new facts: the cationic surfactant TDTMA 1 mg/L inhibited the filtration rate of juveniles of marine bivalves Mytilus galloprovincialis, and the removal of cells of the algae Monochrysis lutheri from water (50 min, 26˚C)]. DOI 10.1023/A:1019218026198;
Full text see online free: http://www.scribd.com/doc/45911405;http://sites.google.com/site/2001dbs377p139inhibitory/;
**
S. A. Ostroumov. On the Multifunctional Role of the Biota in the Self-Purification of Aquatic Ecosystems. - Russian Journal of Ecology, Vol. 36, No. 6, 2005, pp. 414–420. DOI: 10.1007/s11184-005-0095-x; S. A. Ostroumov.
[Full text see online free: http://www.scribd.com/doc/45572968]
(Faculty of Biology, Moscow State University, Vorob’evy gory, Moscow, 119991 Russia)
Abstract: The study of water self-purification processes (Skurlatov, 1988; Ostroumov, 2000a) is essential for approaching fundamental ecological problems (Alimov, 2000; Ostroumov et al., 2003) and for resolving some applied issues related to the sustainable use of aquatic and biological resources. The purpose of this paper is to give a systematic account of the concepts concerning the multiple functions of the biota in the self-purification of water bodies and watercourses, without attempting to review the numerous publications in this field. In this paper, a paradigm shift was made and some new principles of the theory of the ecological mechanism of water self-purification based on multiple functions of the biota in freshwater and marine ecosystems were formulated. In developing this theory, the results of the author’s experiments with aquatic organisms (filter-feeders) have been used. As a result, the author discovered that the natural ecological mechanism which maintains water quality (water self-purification mechanism) is vulnerable to the impact of some pollutants as exemplified by synthetic detergents and surfactants. Conclusions drawn on the basis of the theory have practical significance for biodiversity conservation and for the sustainable use of the biological resources of aquatic ecosystems. 1067-4136/05/3606-0414 © 2005 Pleiades Publishing, Inc. Russian Journal of Ecology, Vol. 36, No. 6, 2005, pp. 414–420. DOI: 10.1007/s11184-005-0095-x; Translated from Ekologiya, No. 6, 2005, pp. 452–459. Original Russian Text Copyright © 2005 by Ostroumov. The English edition of the paper is available on SprigerLink: www.springerlink.com/index/Y6370W774LK7G786.pdf; Key words : aquatic, ecosystems, water quality, water, self-purification, pollution, paradigm shift, surfactants, detergents, sustainability, environment, filter-feeders, invertebrates, bivalves, freshwater, marine, resources, bioassay, hazards,
**
E. A. Solomonova and S. A. Ostroumov. Tolerance of an Aquatic Macrophyte Potamogeton crispus L.to Sodium Dodecyl Sulphate. Moscow University Biological Sciences Bulletin, 2007, Vol. 62, No. 4, p. 176–179. DOI: 10.3103/S0096392507040074; -------------------------------Full text see online free: http://www.scribd.com/doc/45556848;
Abstract: Macrophytes are important components of ecosystems and participate in the purification of water, which contributes to the sustainability of water quality. This is especially important in conditions of pollution of water bodies and water streams. Surfactants constitute an important class of pollutants. Therefore, further investigation and clarification of the facts concerning the interaction of plants and various surfactants are necessary. The present paper presents the results of investigations of the effect of various concentrations of aqueous solutions of the anionic surfactant sodium dodecyl sulphate (SDS) on the viability of the aquatic macrophytes, the pondweed Potamogeton crispus L. When the effects of the anionic surfactant sodium dodecyl sulphate on the aquatic macrophytes Potamogeton crispus L. were studied, it was found that the concentrations of 83–133 mg/l caused fragmentation of the stems of plants. The tolerance of the plants to the negative effects of the surfactant was higher in the spring (April) than in the autumn (September). DOI:10.3103/S0096392507040074; Moscow University Biological Sciences Bulletin, 2007, Vol. 62, No. 4, p. 176–179. ISSN 0096-3925, © Allerton Press, Inc., 2007. Available at SpringerLink; Original Russian Text © E.A. Solomonova, S.A. Ostroumov, 2007, published in Vestnik Moskovskogo Universiteta. Biologiya, 2007, No. 4, pp. 39–42. Keywords: effects, surfactant, aquatic, macrophytes, Potamogeton, crispus, concentrations, fragmentation, stems, plants, negative, pollution, detergents, phytoremediation, chemico-biotic interactions, water quality, sodium dodecyl sulphate, SDS, phytotechnology;
**
Опубликовано 2 days ago пользователем Dr Green
Ярлыки: ecotoxicology environmental science indexed PubMed water quality improvement water science
0
Добавить комментарий
AUG
25
New facts, new concepts. Recommended 150 publications on ecology, environment, biology, environmental toxicology, water
Recommended 150 Publications: Ecology, Environmental Sciences, Biology
150 new ecology facts, ideas, explanations, links.
New facts, new concepts. Recommended: 150 publications on ecology, environment, biology, environmental toxicology, water (selected)
http://5bio5.blogspot.com/2014/08/new-facts-new-concepts-recommended-150.html
https://www.researchgate.net/publication/264992091_Recommended_150_Publications_Ecology_Environmental_Sciences_Biology
Detailed explanation of innovations in the publications of this series was provided by reviewers at World Catalog (see:http://5bio5.blogspot.ru/2014/07/31-reviews-explanation-of-novelty.html ) and by experts in environmental science and ecology (see: https://www.researchgate.net/publication/264973219_; http://ru.scribd.com/doc/237573444/).
Also, a clear and concise explanation of novelty and prospective use of these publications is offered here:
http://5bio5.blogspot.com/2014/07/review-explanation-3-innovations.html
http://5bio5.blogspot.com/2014/06/3-innovative-steps-in-ecology.html
5bio5.blogspot.ru/2014/05/explanation-of-use-enviro-sci-research.html
Updated in July 2014;
bibliography, more detail at Google Scholar.
http://5bio5.blogspot.com/2014/07/publications-bibliography-of-dr-sergei.html
see the list of the 150 papers and books, with links:
http://scholar.google.ru/citations?user=hvqWG6YAAAAJ&hl=en
**
Tags:
Publications, bibliography, Google, Scholar, papers, books, articles, ecology, environmental, science, biology, water quality, aquatic, water self-purification, toxicology, detergents, surfactants, environmental safety, education, ecotoxicology
Updated: July 30, 2014;
Many of these publications were commented favorably at WorldCatalog, rated as excellent by experts /reviewers at the site of WorldCatalog: http://5bio5.blogspot.ru/2014/07/31-reviews-explanation-of-novelty.html ;
http://5bio5.blogspot.com/2014/07/rating-excellent-top-publications.html ;
Award: these publications were awarded, see: http://5bio5.blogspot.com/2014/07/award-july-1-2014-to-series-of.html ;
The publications, bibliography:
Title
Year
Polyfunctional role of biodiversity in processes leading to water purification: current conceptualizations and concluding remarks
Hydrobiologia 469 (1), 203-204;
55
2002
Inhibitory analysis of top-down control: new keys to studying eutrophication, algal blooms, and water self-purification
Hydrobiologia 469 (1-3), 117-129;
54
2002
Biological effects of surfactants
CRC Press;
52
2010
Conservation of living nature and resources: problems, trends, and prospects.
AV Yablokov et al.;
Conservation of living nature and resources: problems, trends, and prospects.
Springer.
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New updated editions of this book were published in Spanish, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
51
∗
1991
Biological filtering and ecological machinery for self-purification and bioremediation in aquatic ecosystems: towards a holistic view
Rivista di Biologia/Biology Forum 91 (2), 221-232
50
1998
Some aspects of water filtering activity of filter-feeders
Aquatic Biodiversity II, 275-286
44
2005
Doklady Biological Sciences 374, 514-516
35
2000
The concept of aquatic biota as a labile and vulnerable component of the water self-purification system
DOKLADY BIOLOGICAL SCIENCES 372, 286-289
30
2000
On the biotic self-purification of aquatic ecosystems: elements of the theory
Doklady Biological Sciences 396 (1), 206-211
25
2004
Filtration inhibition induced by two classes of synthetic surfactants in the bivalve mollusc (Narushenije filtracii dvustvorchatymi molluskami pod vozdejstvijem poverkhnostno-aktivnykh veshchestv dvukh klassov)
[SA O., P Donkin, F Staff]
Doklady Akademii Nauk 362, 574-576
21
1998
Inhibitory Analysis of Regulatory Interactions in Trophic Webs
Doklady Biological Sciences full text: http://www.scribd.com/doc ...
20
2001
Inhibition by the anionic surfactant, sodium dodecyl sulphate, of the ability of mussels Mytilus edulis to filter and purify sea water.
[SA O., P Donkin, F Staff]
VESTN. MOSK. UNIV.(BIOL.), 30-36
20
1997
Vvedenie v biokhimicheskuyu ekologiyu (Introduction to Biochemical Ecology)
Gos. Univ, 176
19
1986
Biodiversity protection and quality of water: the role of feedbacks in ecosystems
Doklady Biological Sciences; full text free: http://www.academia.edu/876887 ...
18
2002
Biodiversity protection and water quality: the role of feedbacks in ecosystems
Doklady Akademii Nauk; text free: https://sites.google.com/site ...
18
∗
2002
Introduction to biochemical ecology; comment: http://5bio5.blogspot.ru/2013/01/on-book-introduction-to-biochemical.html
Moscow University, Moscow, 176 p.
18
1986
Vvedenie v biokhimicheskuyu ekologiyu
M.: Izd-vo MGU
17
1986
Inhibition of mussel suspension feeding by surfactants of three classes
[SA O., J Widdows]
Hydrobiologia 556 (1), 381-386
16
2006
On some issues of maintaining water quality and self-purification
Water Resources; full text: http://www.scribd.com/doc/57511892 32 (3), 305-313
16
2005
Studying effects of some surfactants and detergents on filter-feeding bivalves
Aquatic Biodiversity, 341-344
16
2003
**
More evidence of merit of publications of this series.
30 of these articles were cited and commented favorably by Professor V.A. Abakumov (2013), the leading expert in aquatic ecology in Russian Federation, and Chair, Department of Ecology, an international university in the Moscow Region. He cited 30 of these articles in his paper entitled “A review of some achievements in environmental sciences, general ecology and aquatic ecology: functioning of ecosystems and environmental toxicology”.
Title /
Year
Biologicheskie effekty poverkhnostnoaktivnykh veshchestv v svyazi s antropogennymi vozdeistviyami na biosferu
Biological Effects of Surfactants as Related to the Anthropogenic Impact on ...
16
2000
On the multifunctional role of the biota in the self-purification of aquatic ecosystems
Russian Journal of Ecology 36 (6), 414-420
14
2005
Anthropogenic effects on the biota: towards a new system of principles and criteria for analysis of ecological hazards
RIVISTA DI BIOLOGIA / BIOLOGY FORUM text: http://www.scribd.com/doc ...
14
2003
Biologicheskiie effekty pri vozdeistvii poverkhnostno-aktivnykh veshchestv na organizmy (Biological Effects of Surfactants on Organisms)
MAX Press, Moscow
14
2001
Suspension-feeders as factors influencing water quality in aquatic ecosystems
The Comparative Roles of Suspension-Feeders in Ecosystems, 147-164
13
2005
Synecological foundation for the solution of the problem of eutrophication (Sinekologicheskie osnovy resheniya problemy evtrofirovaniya)
Doklady Akademii Nauk Full text free: http://www.scribd.com/doc/49065550 ...
13
2001
Criteria of the Environmental Hazard of Anthropogenic Impact on Biota: Search for a System
Dokl. Akad. Nauk; full text: http://www.academia.edu/1900879; http://www ...
12
2000
Effect of marine pollution with a nonionic surfactant on the marine diatom Thalassiosira pseudonana. [Eng. edition: Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana]
N Fisher, et al.
Izvestiya Rossijskoj Akademii nauk. Seriya biologicheskaya/Proceedings of ...
12
∗
1996
Medium-term and long-term priorities in ecological studies. http://scipeople. com/uploads/materials/4389/3RivistaBio96Priorities2. rtf
[SA O., S Dodson, D Hamilton, S Peterson, RG Wetzel]
Rivista di Biologia/Biology Forum; full text free: http://ru.scribd.com/doc ...
11
2003
Tetradecyltrimethylammonium bromide (tetradetziltrimetilammonij bromid)
NV Kartasheva, et al.
Toxicological Bulletin (Toksikologicheskii Vestnik) 5, 30-32
11
1998
Tolerance of an aquatic macrophyte Potamogeton crispus L. to sodium dodecyl sulphate
EA Solomonova, et al.
Moscow University Biological Sciences Bulletin; DOI 10.3103 ...
10
2007
System of principles for protecting the biogeocenotic function and biodiversity of filter-feeders
Doklady Akademii Nauk; English edition: Doklady Biological Sciences, 2002 ...
10
∗
2002
Biological activity of waters containing surfactants
Khimiya i tekhnologiya vody. Kiev [translation of the title into English ...
10
1991
Vvedenie v problemy biokhimicheskoi ekologii (Introduction to the Problem of Biochemical Ecology)
MM Telitchenko, et al.
Moscow: Nauka
10
1991
Urovni okhrany zhivoi prirody (Levels of Conservation of Living Nature)
AV Yablokov, et al.
Moscow: Nauka
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New books on this topic were published by the same authors in Spanish, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
10
1985
Decreasing the measurable concentrations of Cu, Zn, Cd, and Pb in the water of the experimental systems containing Ceratophyllum demersum: The phytoremediation potential
[SA O., TV Shestakova]
Doklady biological sciences; full text free: http://www.scribd.com/doc ...
9
2009
Developing fundamental concepts in aquatic and general ecology: from aquatic and ecological research to applications relevant to sustainability
Ecological Studies, Problems, Solutions 6, 28-33
9
∗
2003
Criteria of ecological hazards due to anthropogenic effects on the biota: searching for a system
DOKLADY BIOLOGICAL SCIENCES 371, 204-206
9
2000
Wprowadzenie do ekologii biochemicznej
Wydaw. Naukowe PWN
9
1992
Aquatic ecosystem as a bioreactor: water purification and some other functions
Rivista di Biologia/Biology Forum 97 (1), 67-78
8
2004
**
Additional evidence of merit:
Diploma (Academy of Water Sciences) – a certificate of high scientific quality - was awarded to the series of publications (on ecology, environmental science) including many of the articles listed here http://5bio5.blogspot.com/2014/07/award-july-1-2014-to-series-of.html;
Effects of amphiphilic chemicals on marine organisms filter-feeders (Vozdeistvie amfifil'nykh veshchestv na morskikh gidrobiontov-filtratorov);
Dokl. Akad. Nauk.(Eng.edition: Doklady Biological Sciences, 2001, 378: 248 ...
Biological effects of surfactants on organisms
MAX Press, Moscow,
2001
The most important components of self-purification of ecosystems and its possible impairment as a result of chemical pollution
SA Ostroumov, VD Fedorov
Vestnik Moskovskogo universiteta. Seriya biologiya. Moscow, 1: 24-32
Ostroumov, S. A., and Fedorov, V. D., 1999. The most important components of self-purification of ecosystems
and its possible impairment as a result of chemical pollution. Vestnik Moskovskogo Universiteta Seriya XVI, Biologiya, 1: 24-32.
Translit of the Russian title of this paper: Osnovnyje komponenty samoochishchenija ekosistem i ...
A detailed abstract: https://www.researchgate.net/publication/263737989_ ;
1999
Biotic self-purification of aquatic ecosystems: from the theory to ecotechnologies
Ecologica 15 (50), 15-21
2007
Biological effects of surfactants in connection with the anthropogenic impact on the biosphere
MAX Press, Moscow
2000
Biotesting of solutions of surfactants
[SA O., VN Maximov]
Izvestiia Akademii Nauk SSSR, Seriia Biologicheskaia (= Biology Bulletin of ...
1991
Introduction to Problems of Biochemical Ecology: Biotechnology, Agriculture, and Environmental Protection
MM Telitchenko, et al.
Nauka, Moscow
1990
Accelerated decrease in surfactant concentration in the water of a microcosm in the presence of plants: innovations for phytotechnology
EV Lazareva et al.
Doklady Biological Sciences 425 (1), 180-182 (in English)
2009
Biomachinery for maintaining water quality and natural water self-purification in marine and estuarine systems: elements of a qualitative theory
International Journal of Oceans and Oceanography 1 (1), 111-118
6
2006
Amphiphilic chemical inhibits the ability of molluscs...; English edition: An amphiphilic substance inhibits the mollusk capacity to filter out phytoplankton cells from water. Biology Bulletin, 2001, 28:p. 95-102. http://www.scribd.com/doc/63444377/
Izvestia RAN. Seriya Biology (Bulletin of Russian Academy of Sciences ...
6
∗
2001
Water self-purification in ecosystems and sustainable development
Aquatic Ecosystems and Organisms, 14
6
1999
Certain Aspects of Evaluating Biological Activity of Xenobiotics
Vestn. MGU, Ser. 16, Biologiya, 27-34
6
1990
Urovni okhrany zhivoi prirody (Levels of the Protection of Living Nature)
AV Yablokov, et al.
Moscow: Nauka
6
1985
Okhrana zhivoi prirody: problemy i perspektivy
AV Yablokov, et al.
Conservation of Living Nature: Problems and Prospects), Moscow: Lespromizdat
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New updated editions of this book were published in English, Spanish, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
6
1983
Toxicology of nanomaterials and environment.-Ecologica. 2011, vol. 18, issue 61, pp. 3-10.
Ecologica 18 (61), 3-10
5
2011
Basics of the molecular-ecological mechanism of water quality formation and water self-purification
Contemporary Problems of Ecology; full text: http://ru.scribd.com/doc ...
5
2008
Effect of nonionogenic surfactant on cyanobacteria
J Waterbury et al.
Microbiology 63 (2), 140-142;
https://www.researchgate.net/publication/264988450_;
https://www.researchgate.net/publication/264988450_Effect_of_Nonionogenic_Surfactant_on_Cyanobacteria;
5
1994
Effect of Nonionogenic Surface Active Substance on Cyanobacteria
D Uoterberi, et al.
Mikrobiologiya 63 (2), 258-263
5
1994
Urovni okhrany zhivoi prirody (Levels of Nature Conservation)
AV Yablokov, et al.
Moscow: Nauka
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New editions of books on this topic were published by the same authors in English, Spanish, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
5
1985
On studying the hazards of pollution of the biosphere: Effects of sodium dodecyl sulfate (SDS) on planktonic filter-feeders
IM Vorozhun, et al.
Doklady Biological Sciences; full text: http://www.scribd.com/doc/45914806 ...
4
2009
**
Title
Year
REACTION OF FAGOPYRUM-ESCULENTUM MOENCH TO POLLUTION OF AQUEOUS-MEDIUM WITH POLYMERIC SURFACTANTS
[S.A. O., NA Semykina]
Russian Journal of Ecology 24 (6), 386-390
4
1993
Responses of test-organisms to a quaternary ammonium compound
Vodnye Resursy (Water Resources) 2, 112-116
4
1991
Problems of assessment of biological activity of xenobiotics.
Moscow University Biological Sciences Bulletin 45 (2), 26-32
4
1990
Effects of an anionic surfactant on green algae and seedlings of some angiosperms (Vozdejstvije anionnogo deterghenta na zelenuju vodorosl'i prorostki nekotorykh pokrytosemennykh rastenij)
SV Goryunova, et al.
Biological Sciences (Biologicheskie Nauki) 7, 84-86
4
1986
Membrane potential as a possible polyfunctional regulator of the activity of membrane proteins
SA Ostroumov, LN Vorob'ev
Nauchnye doklady vysshei shkoly. Biologicheskie nauki, 22-26
4
1975
The aquatic macrophyte Ceratophyllum demersum immobilizes Au nanoparticles after their addition to water
[S.A. O., GM Kolesov]
Doklady Biological Sciences 431 (1), 124-127;
full text: https://www.researchgate.net/publication/44634488_ ;
3
2010
On the concepts of biochemical ecology and hydrobiology: Ecological chemomediators
Contemporary Problems of Ecology; Full text free: http://ru.scribd.com/doc ...
3
2008
Phytoremediation of perchlorate using aquatic plant Myriophyllum aquaticum
[S.A. O., D Yifru, V Nzengung, S McCutcheon]
Ecological Studies, Hazards, Solution 11, 25-27
3
2006
Identification of a new type of ecological hazard of chemicals: inhibition of processes of ecological remediation
Doklady Biological Sciences 385 (1), 377-379
3
2002
New definitions of the concepts and terms ecosystem and biogeocenosis
Doklady Biological Sciences 383 (1), 141-143
3
2002
Effect of amphiphilic chemicals on filter-feeding marine organisms
Doklady Biological Sciences 378 (1), 248-250
3
2001
An amphiphilic substance inhibits the mollusk capacity to filter out phytoplankton cells from water
Biology Bulletin of the Russian Academy of Sciences 28 (1), 95-102
3
2001
Filtration inhibition induced by two classes of synthetic surfactants in the bivalve mollusk Mytilus edulis
[SA O., P Donkin, F Staff]
DOKLADY BIOLOGICAL SCIENCES SECTION C/C OF DOKLADY-AKADEMIIA NAUK SSSR 362 ...
3
1998
Effect of environmental pollution with a cationic surface active substance on algae and Fagopyrum esculentum sprouts.
[SA O., AN Tret'yakova]
Soviet Journal of Ecology 21 (2), 79-81
3
1990
Assessment of efficiency of biodegradation of anionic surfactants by biotests.
[SA O., LS Samojlenko]
Moskovskii Gosudarstvennyi Universitet. Vestnik. Seriya 7: Filosofiya, 74-78
3
1990
Conservación de la naturaleza viva: problemas y perspectivas (in Spanish)
AV I︠A︡blokov, et al.
Vneshtorgizdat
The book presented a broad range of facts on issues of nature conservation and anthropogenic (man-made) impact on the biosphere and living organisms. The book was one of the first publications that started the modern analysis and understanding of issues of biodiversity protection. The book was one of the first publications to form a modern scientific discipline of conservation biology. New updated editions of this book were published in English, Czech, Bulgarian languages. Innovation in the book: The new productive conceptual approach: the analysis is made on the basis of the concept of the levels of organization of living systems.
3
1989
Okhrana prirody: problemy i perspektivy (Protection of Nature: Problems and Prospects)
AV Yablokov, et al.
Lespromizdat Press, Moscow (in Russian)
3
1983
Study of the interactions between Elodea canadensis and CuO nanoparticles
ME Johnson, et al.
Russian Journal of General Chemistry 81 (13), 2688-2693;
full text: https://www.researchgate.net/publication/257860248_ ;
2
2011
SNIZhENIE IZMERYaEMYKh KONTsENTRATsII Cu, Zn, Cd, Pb B VODE EKSPERIMENTAL'NYKh SISTEM S CERATOPHYLLUM DEMERSUM: POTENTsIAL FITOREMEDIATsII
SA Ostroumov, TV Shestakova
Doklady Akademii Nauk 428 (2), 282-285
2
2009
USKORENIE SNIZhENIYa KONTsENTRATsII POVERKhNOSTNO-AKTIVNOGO VEShchESTVA V VODE MIKROKOSMA V PRISUTSTVII RASTENII: INNOVATsII DLYa FITOTEKhNOLOGII
EV Lazareva, et al.
Doklady Akademii Nauk 425 (6), 843-845
2
2009
**
Title
Year
Towards the general theory of ecosystem-depended control of water quality
Ecologica 16 (54), 25-32
2
2009
Filter-feeders as part of ecological biomachinery to purify water
Internationale Vereinigung fur Theoretische und Angewandte Limnologie ...
2
2005
The functions of living substances in the biosphere
HERALD-RUSSIAN ACADEMY OF SCIENCES C/C OF VESTNIK-ROSSIISKAIA AKADEMIIA NAUK ...
2
2003
A New Type of Effect of Potentially Hazardous Substances: Uncouplers of Pelagial–Benthal Coupling
Doklady Biological Sciences 383 (1), 127-130
2
2002
The synecological approach to the problem of eutrophication
Doklady Biological Sciences 381 (1), 559-562
2
2001
Integrity-oriented approach to ecological biomachinery for self-purification and bioremediation in aquatic ecosystems: stopping an ecological time bomb
Limnology and Oceanography: Navigating into the Next Century, 1-5
2
1999
The ability of mussels to filter and purify the sea water is inhibited by surfactants
ASLO, 1-5
2
1999
Nontraditional nonanimal approaches to the ecotoxicology of xenobiotics
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 203, 302-ENVR
2
1992
Biologically active substances of ecological importance and methodological aspects of the estimation of the biological activity of pollutants
Russian Chemical Reviews 60 (3), 265-265
2
1991
Some aspects of the estimation of biological activity of xenobiotics
Bulletin of Moscow University 2, 27-34
2
1990
The effect of sulphonol on the culture of alga Dunaliella asymmetrica and on Fagopyrum esculentum seedlings
SA Ostroumov, EB Borisova, LI Lenova, VN Maksimov
Gidrobiologicheskij zhurnal/Hydrobiological journal. Kiev 26 (2), 96-98
2
1990
EXPERIMENTAL INTERDISCIPLINARY RESEARCH IN LIFE SCIENCE: MOLECULAR AND ENVIRONMENTAL TOXICOLOGY, BIOPHYSICS. FROM FUNDAMENTAL BIOMEDICAL RESEARCH TO APPLICATIONS. SOME RESULTS AND BIBLIOGRAPHY
SN Orlov, SV Kotelevtsev, KN Novikov, AA Selishcheva, OA Akimova, ...
ПРЕДИСЛОВИЕ/FOREWORD, 9
1
2013
Biocontrol of water quality: Multifunctional role of biota in water self;-purification
Russian Journal of General Chemistry 80 (13), 2754-2761;
full text free: https://www.researchgate.net/publication/227303635_ ;
1
2010
VODNYI MAKROFIT CERATOPHYLLUM DEMERSUM IMMOBILIZUET Au POSLE DOBAVLENIYa V VODU NANOChASTITs
SA Ostroumov, GM Kolesov
Doklady Akademii Nauk 431 (4), 566-569
1
2010
The Effect of Synthetic Surfactants on the Hydrobiological Mechanisms of Water Self-Purification
Water Resources 31 (5), 502-510
1
2004
Effect of cationic surfactant on mussels: Inhibition of water filtration
SA Ostroumov, J Widdows
MOSCOW UNIVERSITY BIOLOGICAL SCIENCES BULLETIN C/C OF VESTNIK-MOSKOVSKII ...
1
2004
Effect of a cationic amphiphilic compound on rotifers
SA Ostroumov, N Walz, R Rusche
Doklady Biological Sciences 390 (1), 252-255
1
2003
Responses of Unio tumidus to Mixed Chemical Preparations and the Hazard of Synecological Summation of Anthropogenic Effects
Doklady Biological Sciences 380 (1), 492-495
1
2001
The hazard of a two-level synergism of synecological summation of anthropogenic effects
Doklady Biological Sciences 380 (1), 499-501
1
2001
Pellets of some mollusks in the biogeochemical flows of C, N, P, Si, and Al
SA Ostroumov, MP Kolesnikov
Doklady Biological Sciences 379 (1), 378-381
1
2001
**
Title
Year
Imbalance of factors providing control of unicellular plankton populations exposed to anthropogenic impact
Doklady Biological Sciences 379 (1), 341-343
1
2001
BIOLOGICAL-ACTIVITY OF WATERS POLLUTED WITH A LIQUID SURFACTANT-CONTAINING DETERGENT
SA Ostroumov, VS Khoroshilov
Izvestiya Akademii Nauk SSSR Seriya Biologicheskaya, 452-458
1
1992
Bioassay of surfactants based on the disruption of seedling attachment to the substrate and rhizoderm root hair formation
SA Ostroumov, VN Maksimov
Biology bulletin of the Academy of Sciences of the USSR (USA)
1
1992
Biotesting of surfactant(sulphonol) toxicity using rice seedlings as a test-object
SA Ostroumov, AE Golovko
Gidrobiologicheskij zhurnal/Hydrobiological journal. Kiev 28 (3), 72-75
1
1992
Response of test-organisms to water pollution with quaternary ammonia compounds
Water resources (USA)
1
1992
A BIOASSAY OF SUFRACTANT SOLUTIONS BASED ON THE DISTURBANCE OF SEEDLING ADHESION TO THE SUBSTRATE AND THE DEVELOPMENT OF ROOT HAIRS BY RHYZODERMIS
SA Ostroumov, VN Maximov
IZVESTIYA AKADEMII NAUK SSSR SERIYA BIOLOGICHESKAYA, 571-575
1
1991
ECOLOGICALLY SIGNIFICANT BIOLOGICALLY-ACTIVE SUBSTANCES AND METHODOLOGICAL ASPECTS OF ANALYSIS OF BIOLOGICAL-ACTIVITY OF POLLUTANTS
Uspekhi Khimii 60 (3), 554-555
1
1991
Ochrana zive prirody [in Czech language; recommended for universities as a textbook];
AV Jablokov, et al.
Prague.
Acad
1
1991
Phytotoxicity of a surfactant-containing product towards macrophytes
SA Ostroumov, EA Solomonova
Russian Journal of General Chemistry 83 (13), 2614-2617; full text:
https://www.researchgate.net/publication/263456086_;
2013
Study of hydrocarbon oxidizing microorganisms from deep groundwater of the Puchezh-Katunki impact structure
GV Kondakova et al.
Moscow University Biological Sciences Bulletin 68 (3), 119-123
2013
Environment, Ecology, Conservation of Biodiversity, Natural and Aquatic Resources, Sustainability: These publications of modern scientists are available in libraries:[key words: books, publications, environment, ecology, biology, environmental science, life science, conservation, nature]
2013
List of key publications of Dr. SA Ostroumov in English, short comments that explain it: what is the innovative thing in each of those publications; the web-sites where those publications are available online free.
2013
e-Archiv of Environmental and Life Sciences. 2012. Vol. 1, No. 1 (January 12), 04/29/2011-01/12/2012, a summary of recent materials at Scribd: 356 materials
2013
Environmental Sciences, Life Sciences. Authored, coauthored by Dr. Sergei Ostroumov: These publications are available online at the site: Springerlink
2013
Response of test-organisms to water pollution with quaternary ammonia compounds.-Water Resources (USA; ISSN 0097-8078) 1992, v. 18 (2) p. 171-175.**Реагирование тест-организмов на загрязнение водной среды четвертичным аммониевым соединением//Водные ресурсы. 1991.№ 2. С. 112-116.
Water Resources
2013
Toxicity of nanoparticles of copper oxide and iron oxide: Bioassay on the human cell cultures of the HeLa cells
SA Ostroumov, RY Podchernyaeva, IA Suetina, OA Lopatina
Ecologica 20 (72), 759-762
2013
Environmental sciences, at PubMed, selected innovative papers
http://5bio5.blogspot.com/2014/08/34-paper-collection-on-environmental.html
2013
Effects of three types of metal oxide nanoparticles (TiO2, CuO, Al2O3) on the seedlings of the higher plant Lens culinaris
SA Ostroumov, B Xing
Ecologica 19 (65), 10-14
2012
Studying the fate of pollutants in the environment: binding and immobilization of nanoparticles and chemical elements
Ecologica 18 (62), 129-132
2011
The role of biodetritus in accumulation of elements in aquatic ecosystems
SA Ostroumov, GM Kolesov
Contemporary Problems of Ecology 3 (4), 369-373
2010
**
Title
Year
Interaction of nanoparticles of gold with aquatic plant: Binding to Ceratophyllum demersum
SA Ostroumov, GM Kolesov
Ecologica 17 (57), 3-6
2010
K IZUChENIYu OPASNOSTI ZAGRYaZNENIYa BIOSFERY: VOZDEISTVIE DODETsILSUL'FATA NATRIYa NA PLANKTONNYKh FIL'TRATOROV
IM Vorozhun, et al.
Doklady Akademii Nauk 425 (2), 271-272
2009
On studying the hazards of pollution of the biosphere: effects of sodium dodecylsulfate (SDS) on planktonic filter-feeders.-Doklady Biological Sciences, 2009, Vol. 425, pp. 133–134
Doklady Biological Sciences 425, 133-124
2009
Effects of the synthetic surfactants and chemical mixtures on marine mollusks used in aquaculture
Рыбное хозяйство (Российская Федерация)
2009
On the concept of the database on the role of aquatic organisms in biogenic migration of matter including metals and other elements
Reports of 5. International scientific-practical conference'Heavy metals and ...
2008
On the concepts of biochemical ecology and hydrobiology: ecological chemomediators.-Contemporary Problems of Ecology, 2008, Volume 1 (2): 238-244
Contemporary Problems of Ecology, 1 (2), 238-244.
2008
Basics of the molecular-ecological mechanism of water quality formation and water self-purification.-Contemporary Problems of Ecology, 2008, Vol. 1, No. 1, p. 147-152
Contemporary Problems of Ecology, 1 (1), 147-152.
2008
Статьи по экологии, papers on environmental sciences, ecology
EA Solomonova, SA Ostroumov
Moscow University Biological Sciences Bulletin 62 (4), 176-179
2007
Solomonova EA et al. Tolerance of an aquatic macrophyte Potamogeton crispus L. to sodium dodecyl sulphate.-Moscow University Biological Sciences Bulletin, 2007, 62 (4): 176-179.
Moscow University Biological Sciences Bulletin 62 (4), 176-179
2007
The Roles of Suspension-Feeders in Ecosystems: Synthesis and Conclusions The Comparative Roles of Suspension-Feeders in Ecosystems
Springer Netherlands 47, 345-353
2005
The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation
VESTNIK-ROSSIISKAIA AKADEMIIA NAUK 74, 785-791
2004
О БИОТИЧЕСКОМ САМООЧИЩЕНИИ ВОДНЫХ ЭКОСИСТЕМ. ЭЛЕМЕНТЫ ТЕОРИИ
Доклады Академии Наук (ДАН). 2004, т. 396.№ 1. С. 136-141
2004
On the Fourth International Conference “Water Ecosystems and Organisms-4”
Russian Journal of Marine Biology 29 (4), 262-263
2003
Influence of Some Amphyphilic Substances and Mixtures on Marine Mollusks
Hydrobiological Journal 39 (4)
2003
HYDROBIOLOGIA: PREFACE
SA Ostroumov, SC McCutcheon, CEW Steinberg
Hydrobiologia 469
2002
Inhibitory Analysis of Regulatory Interactions in Trophic Webs.-Doklady Biological Sciences, 2001, 377: 139–141
Поиск, 377p139
2001
Criteria for assessing ecological hazards of man-made impact on biota: Searching for a system
DOKLADY AKADEMII NAUK 371 (6), 844-846
2000
Effects of surfactants on some aquatic and terrestrial organisms
The Ijebu of Western Nigeria: A Historical and Socio-cultural Study, 159
2000
Principles underlying the analysis of environmental hazards due to man-induced impacts, including chemical pollution: a philosophy and new data
MOSCOW UNIVERSITY BIOLOGICAL SCIENCES BULLETIN C/C OF VESTNIK-MOSKOVSKII ...
2000
Biocatalysis of Matter Transfer in a Microcosm Is Inhibited by a Contaminant: Effects of a Surfactant on Limnea stagnalis
SA Ostroumov, MP Kolesnikov
DOKLADY BIOLOGICAL SCIENCES SECTION C/C OF DOKLADY-AKADEMIIA NAUK SSSR 373 ...
2000
**
Title
Year
Basic components of self-purification of ecosystems and its possible chemically induced impairment
SA Ostroumov, VD Fedorov
MOSCOW UNIVERSITY BIOLOGICAL SCIENCES BULLETIN C/C OF VESTNIK-MOSKOVSKII ...
1999
Inhibition of the ability of the mussel Mytilus edulis to filter and purify seawater by an anionic surfactant
SA Ostroumov, P Donkin, FJ Staff
MOSCOW UNIVERSITY BIOLOGICAL SCIENCES BULLETIN C/C OF VESTNIK-MOSKOVSKII ...
1997
Studies on some aspects of ecotoxicology and biochemical ecology of surfactants
SA Ostroumov, LS Samoilenko, MM Telitchenko
BIODETERIORATION AND BIODEGRADATION 9, 641-641
1995
Use of rice sprouts for bioassay of the toxicity of the surfactant sulfonol.
SA Ostroumov, AE Golovko
Hydrobiological Journal/Gidrobiologicheskiy Zhurnal 28 (6), 84-88
1992
EFFECTS OF THE NONIONOGENIC SURFACTANT ON MARINE DIATOMS
S OSTROUMOV, M MAERTZWENTE
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 201, 115-ENVR
1991
Effect of aquatic pollution by the detergent Bio-S on euglenas.
K Vasternak, SA Ostroumov
Hydrobiological Journal/Gidrobiologicheskiy Zhurnal 27 (2), 92-94
1991
Response of photo-organotrophously growing green flagellates to water pollution by the detergent preparation" Kristall"
SA Ostroumov, K Wasternack
Moscow University biological sciences bulletin (USA)
1991
Assessment of biotechnological destruction of anionic surface-active substances using biotesting
SA Ostroumov, LS Samoilenko
Moscow University biological sciences bulletin
1990
Effect of the Detergent'Bio-S' on Euglena in a Contaminated Water Medium(in Russian)
K Vasternak, et al.
Gidrobiologicheskii Zhurnal GBZUAM, 26 (6)
1990
Studies of problems of assessment of biological activities of xenobiotics.
SA Ostroumov
Vestnik Moskovskogo Universiteta, Seriya 16(Biologiya) 16 (2), 27-34
1990
Effect of synthetic detergent" Bio-S" on Euglena gracilis Klebs
K Vasternak, SA Ostroumov
Gidrobiologicheskij zhurnal/Hydrobiological journal. Kiev 26 (6), 78-79
1990
Vvedenie v biokhimičeskuju ėkologiju
Universitet
1986
3. System. of. Criteria. Rivista. pdf The paper is published: Anthropogenic effects on the biota: towards a new system of principles and criteria for analysis of ecological hazards.-Rivista di Biologia/Biology Forum. 2003. 96: 159-170. http://sites. google. com/site/ostroumovsergei/publications-1/rivista2003criteria
Ecological Studies, Hazards, Solutions, 2013, vol. 19, p. 122-124. Some priorities and fundamental concepts in contemporary issues of ecological and molecular toxicology, biogeochemistry and ecological geochemistry: ecotoxicants including membranotropic xenobiotics and metals. Kotelevtsev SV, Orlov SN, Matorin DN, Novikov KN, Sadchikov
VV Ermakov et al.
NEW EXPERIMENTAL DATA ON CHEMICAL-BIOTIC INTERACTIONS WITH PARTICIPATION OF NANOPARTICLES AND METALS.
SA Ostroumov, SV Kotelevtsev, VM Glaser, OM Gorshkova, ME Johnson, ...
The Concept of Aquatic Biota as a Labile and Vulnerable Component of the Water Self-Purification System.-Doklady Biological Sciences, 2000, 372: 286–289
System of principles for conservation of the biogeocenotic function and the biodiversity of filter-feeders.-Dokl Biol Sci (Doklady Biological Sciences). 2002; 383: 147-150
**
Title
Year
Responses of Unio tumidus to Mixed Chemical Preparations and the Hazard of Synecological Summation of Anthropogenic Effects.-Doklady Biological Sciences, 2001, 380: 492–495
Towards the general theory of ecosystem-depended control of water quality.-Ecologica, 2009, vol. 16, No. 54, p. 25-32
AQUATIC ECOSYSTEM UPGRADES WATER QUALITY: MULTI-FACTOR ANALYSIS
New discovery: the heart and core of aquatic ecosystem health
Up-dating and modernizing education in environmental science and ecology: using interdisciplinary concepts (updated 11.5. 2011)
The theory of the hydrobiological mechanism of water self-purification in water bodies: from theory to practice
**
**Addendum.
Some more recommended publications.
Article:
Ecological concepts "ecosystem", "biogeocenosis", "ecosystem boundaries": search for new definitions.
S.A.Ostroumov
Moscow University Biological Sciences Bulletin. 2003. Vol. 58. No. 3. P.29-38 01/2010;
https://www.researchgate.net/publication/201316139_Ecological_concepts_ecosystem_biogeocenosis_ecosystem_boundaries_search_for_new_definitions?ev=prf_pub
https://www.researchgate.net/publication/201316139_
**
Остроумов С.А. Концепции экологии "экосистема", "биогеоценоз", "границы экосистем": поиск новых определений // Вестник МГУ. Серия 16. Биология. 2003. № 3. С.43-50.
https://www.researchgate.net/publication/201316139_
**
Ostroumov S.A., Demina L.L. Role of biogenic detritus of aquatic systems in accumulation of metals and metalloids as exemplified by eight heavy metals and arsenic. – Water Sector of Russia (Vodnoe Khozyaistvo Rossii, ISSN 1999-4508). 2010, No. 1, p. 60-69.
Abstract:
https://www.researchgate.net/publication/260460510_ ;
https://www.researchgate.net/publication/260460510_Role_of_biogenic_detritus_of_aquatic_systems_in_accumulation_of_metals_and_metalloids_as_exemplified_by_eight_heavy_metals_and_arsenic?ev=prf_pub ;
**
Ostroumov S.A. Relationship between water self-purification and environmental repair processes // Water: Chemistry and Ecology. 2009. (Dec). No. 12, p. 29-34. ISSN: 2072-8158.
https://www.researchgate.net/publication/260461603_ ;
**
Максимов В.Н., Нагель Х. , Остроумов С.А. Экспериментальное изучение реакции проростков Fagopyrum esculentum на загрязнение водной среды детергентами - В кн.: Проблемы экологического мониторинга и моделирования экосистем. Ленинград, 1986 , т. 9, с. 87-97. Maksimov V.N., H. Nagel, Ostroumov S.A. Experimental study of the reaction of seedlings Fagopyrum esculentum on water pollution detergents - In : Problems of ecological monitoring and modeling of ecosystems. Gidrometeoizdat Press, Leningrad, 1986, vol. 9, p. 87-97;Maksimov V.N., Nagel' H., Ostroumov S.A. Eksperimental'noye izucheniye reaktsii prorostkov Fagopyrum esculentum na zagryazneniye vodnoy sredy detergentami - V kn.: Problemy ekologicheskogo monitoringa i modelirovaniya ekosistem. Leningrad, 1986 , t. 9, s. 87-97.
https://www.researchgate.net/publication/265058710_ ;
**
Максимов В.Н., Нагель Х., Ковалева Е.Н., Остроумов С.А. Биотестирование вод, загрязненных сульфонолом. - Водные ресурсы, 1988а, №1, с. 165-168; Maximov V.N., Nagel H., Kovaleva E.N., OstroumovS.A. Bioassay of waters contaminated with sulphonol. - Water Resources, 1988a, №1, p. 165-168; Maksimov V.N., Nagel H., Kovaleva Ye.N., Ostroumov S.A. Biotestirovaniye vod, zagryaznennykh sul'fonolom. - Vodnyye resursy, 1988a, №1, s. 165-168.
https://www.researchgate.net/publication/265059024_ ;
**
Максимов В.Н., Нагель Х., Остроумов С.А. Биотестирование вод, содержащих ПАВ (сульфонол) и ДНОК. – Гидробиологический журнал, 1988 б , 24, № 4, с. 54-55; Maksimov V.N., Nagel H., Ostroumov S.A. Biotesting ofwater containing surfactant (sulphonol) and DNOC. - Hydrobiological Journal, 1988 b, 24, № 4, p. 54-55; Maksimov V.N., Nagel H., Ostroumov S.A. Biotestirovaniye vod, soderzhashchikh PAV (sul'fonol) i DNOK. – Gidrobiologicheskiy zhurnal, 1988 b , 24, № 4, s. 54-55.
**
Остроумов С.А. Введение в биохимическую экологию. М.: Изд-во МГУ, 1986.- 176 с. Ostroumov S.A.Introduction to Biochemical Ecology. Moscow, Moscow University Press, 1986.- 176 p. Ostroumov S.A. Vvedeniye v biokhimicheskuyu ekologiyu. M.: Izdatel'stvo Moskovskogo universiteta, 1986.- 176 s.
https://www.researchgate.net/publication/259800839_ ;
**
Остроумов С.А., Максимов В.Н. Деградация водорослей при загрязнении водной среды ПАВ этонием. - Экология,1988, №6, с.57-58. Ostroumov S.A., Maksimov V.N. Degradation of algae under contamination of the aquatic environment with surfactant Etonium. - Ecology, 1988, №6, p.57-58; Ostroumov S.A., Maksimov V.N. Degradatsiya vodorosley pri zagryaznenii vodnoy sredy PAV etoniyem. - Ekologiya,1988, №6, s.57-58.
https://www.researchgate.net/publication/265058974_ ;
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: Articles biology ecology environment environmental toxicology Papers publications Recommendedtop water
0
Добавить комментарий
AUG
25
Prominent researchers in environmental science cited these publications. These papers and books were cited in publications of a prominent scientist, Professor Gleb V. Dobrovolsky, Member, Russian Academy of Sciences,
Prominent researchers in environmental science cited these publications.
These papers and books were cited in publications of a prominent scientist,
Professor Gleb V. Dobrovolsky, Member, Russian Academy of Sciences,
a laureate of many awards.
http://5bio5.blogspot.com/2014/08/prominent-researchers-in-environmental.html
E.g., these articles were cited in his paper on the biosphere, entitled:
The 80th anniversary of the first edition of the book “The Biosphere” of V.I. Vernadsky. Development of some important ideas of the theory of the biosphere.
http://ru.scribd.com/doc/237573788/
https://www.researchgate.net/publication/264974919__80-_____..__._______;
К 80-ЛЕТИЮ ВЫХОДА В СВЕТ КНИГИ В.И. ВЕРНАДСКОГО “БИОСФЕРА”.
РАЗВИТИЕ НЕКОТОРЫХ ВАЖНЫХ РАЗДЕЛОВ УЧЕНИЯ О БИОСФЕРЕ.
Экологическая химия 2007, 16(3): 135–143.
Г.В. Добровольский
Московский государственный университет им. М.В. Ломоносова, Воробьевы горы,
119991 Москва, Россия
Abstracts in Russian and in English; list of references;
К 80-летию выхода в свет книги В.И. Вернадского “Биосфера”. Развитие некоторых важных разделов учения о биосфере.
ABSTRACT (in Russian):
Приведен краткий обзор работ, которые развивают ряд аспектов учения о биосфере, созданного В.И. Вернадским. Основное внимание уделено исследованиям, посвященным биосфере как важному фактору формирования геохимической среды, связи между экологией и химией природных соединений, роли химических веществ как посредников во взаимоотношениях организмов и переносе сигналов и антропогенных воздействий.
Обсуждены вопросы характеристики биосферы как эколого-биохимического континуума, дополнительного выявления преобразующей роли живого вещества, создания более адекватной системы приоритетов для оценки опасности загрязнения биосферы и гидросферы, а также использования организмов для очищения среды.
Приведены сведения о разработке инновационных учебно-методических материалов.
Ключевые слова: биосфера, учение В.И. Вернадского, функции живого вещества, биогеохимия, экология, почвоведение, гидросфера
**
ЛИТЕРАТУРА:
1 Вернадский В.И. (1965) Химическое строение биосферы
Земли и ее окружения. М.: Наука, 374 с.
2. Вернадский В.И. (1989) Биосфера и ноосфера. М.: Наука,
264 с.
3. Вернадский В.И. (2001) Биосфера. М.: Изд. дом
“Ноосфера”, 243 с.
4. Симаков К.В. (2003) Неизвестное об известном. К 140-
летию со дня рождения академика В.И. Вернадского.
Вестник РА. 73. №3, 239–249.
5. Galimov E.M. (2006) Isotope organic geochemistry. Organic
Geochemistry. 37. 1200–1262.
6. Ковальский В.В. (1974) Очерки геохимической экологии.
М.: Наука, 299 с.
7. Ковальский В.В. и Летунова С.В. (1967) Биогеохимия. В
кн.: Развитие биологии в СССР. М.: Наука. с. 642–655.
8. Алимов А.Ф. (2000) Элементы теории функционирования
водных экосистем. СПб.: Наука, 147 с.
9. Винберг Г.Г. (1975) Гидробиология. В кн.: История
биологии. М.: Наука, с. 231–248.
10. Виноградов М.Е. (2004) Биологическая продуктивность
океанических экосистем. В сб.: Новые идеи в
океанологии. Ред. М.Е. Виноградов и С.С. Лаппо. Т. 1.
М.: Наука, с. 237–263.
11. Добровольский Г.В. (ред.) (2002) Деградация и охрана
почв. М.: Изд-во МГУ, 654 с.
12. Добровольский Г.В. (ред.) (2003) Структурно-
функциональная роль почв и почвенной биоты в
биосфере. М.: Наука, 364 с.
13. Добровольский Г.В. (2005) Избранные труды по
почвоведению. Т. 1. Общие вопросы теории и развития
почвоведения. М.: Изд-во МГУ, 530 с.
14. Добровольский Г.В. и Никитин Е.Д. (1990) Функции почв
в биосфере и экосистемах. (Экологическое значение
почв). М.: Наука, 261 с.
15. Добровольский Г.В. и Никитин Е.Д. (2000) Сохранение
почв как незаменимого компонента биосферы. М.:
Наука, 185 с.
16. Заварзин Г.А. (1972) Литотрофные микроорганизмы.
М.: Наука, 323 с.
17. Заварзин Г.А. (1984) Бактерии и состав атмосферы. М.:
Наука, 192 с.
18. Заварзин Г.А. (2003) Лекции по природоведческой
микробиологии. М.: Наука, 348 с.
19. Заварзин Г.А. и Колотилова Н.Н. (2001) Введение
в природоведческую микробиологию. М.: Кн. дом
“Университет”, 256 с.
20. Гальченко В.Ф., Леин А.Ю. и Иванов М.В. (2004)
Интенсивности микробного образования и окисления
метана в донных осадках и водной толще Черного
моря. Микробиология. 73. №2, 271–283.
21. Гальченко В.Ф., Леин А.Ю. и Иванов М.В. (2004)
Содержание метана в донных осадках и водной толще
Черного моря. Микробиология. 73. №2, 258–270.
22. Иванов М.В. (1964) Роль микробиологических процессов
в генезисе месторождений самородной серы. М.:
Наука, 180 с.
23. Иванов М.В. и Каравайко Г.И. (2004) Геологическая
микробиология. Микробиология. 73. №5, 581–597.
24. Израэль Ю.А. и Цыбань А.В. (1989) Антропогенная
экология океана. Л.: Гидромет, 526 с.
25. Матишов Д.Г. и Матишов Г.Г. (2001) Радиационная
экологическая океанология. Апатиты: Кольский
научный центр РАН, 417 с.
26. Сукачев В.Н. (1972) Избранные труды. Л.: Наука. Т. 1.
417 с.
27. Шварц С.С. (1980) Экологические закономерности
эволюции. М.: Наука, 278 с.
28. Шилов И.А. (2001) Экология. М.: Высшая школа, 512 с.
29. Розенберг Г.С., Мозговой Д.П. и Гелашвили Д.Б. (1999)
Экология. Самара: Самарский научный центр РАН,
396 с.
30. Yablokov A.V. and Ostroumov S.A. (1991) Conservation of
Living Nature and Resources: Problems, Trends, Prospects.
Berlin, N.-Y.: Springer, 272 p.
https://www.researchgate.net/publication/200637729_
31. Башкин В.Н. и Касимов Н.С. (2004) Биогеохимия. М.:
Научный мир, 647 с.
32. Романенко В.Д. (2004) Общая гидроэкология. Киев:
Генеза, 664 с.
33. Ermakov V.V. (2006) Technogenic aspects of biogeochemistry
and geochemical ecology. Problems of Biogeochemistry
and Geochemical Ecology. № 1, 8–23.
34. World Resources 1996–1997. (1996) N.-Y.: Oxford University
Press, 368 p.
35. Фундаментальные основы управления биологическими
ресурсами (2005) Сборник научных статей. М.:
Товарищество научных изданий КМК, 516 c.
36. Израэль Ю.А. (1984) Экология и контроль состояния
среды. М.: Гидрометеоиздат, 560 с.
37. А б а к у м о в В . А . и С у щ е н я Л . М . (19 91)
Гидробиологический мониторинг пресноводных
э ко с и с т е м и п у т и е г о с о в е р ш е н с т в о в а н и я .
Экологические модификации и критерии экологического
нормирования. Л.: Гидрометиздат. c. 41–61.
38. Розанов А.Ю. (1999) Ископаемые бактерии и новый
взгляд на процессы осадкообразования . Соросовский
Образовательный Журнал, № 10, с. 63–67.
39. Oстроумов С.A. (1986) Введение в биохимическую
экологию. М.: Изд-во МГУ, 176 с.
40. Oстроумов С.A. (2002) О роли гидробионтов в
регуляции потоков вещества и миграции элементов в
водных экосистемах. Вестник РАЕН. 2. № 3, 50–54.
41. Oстроумов С.A. (2003) О функциях живого вещества в
биосфере. Вестник РАН. 73. № 3. 232–238.
The Functions of Living Substances in the Biosphere. -
Herald of the Russian Academy of Sciences, 2003, 73 (2): 164-169, http://5bio5.blogspot.com/2012/09/the-functions-of-living-substances-in.html
42. Oстроумов С.A. (2004) Биологический механизм
самоочищения в природных водоемах и водотоках:
теория и практика. Успехи современной биологии. 124,
№5, 429–442.
43. Oстроумов С.A. (2004) Геохимический аппарат водных
экосистем: биокосная регуляция. Вестник РАН. 74, №
9, 785–791.
44. Oстроумов С.A. (2006). Факты и концепции экологии. 1.
Новые научные дисциплины: биохимическая экология
и биохимическая гидробиология. 2. О биохимическом
аппарате биосферы. Ecological Studies, Hazards, Solutions.
7, 106–115.
45. Oстроумов С.A. (2005) Поиск подходов к решению
проблемы глобальных изменений: элементы теории
биотическо-экосистемного механизма регуляции и
стабилизации параметров биосферы, геохимической
и геологической среды. Вестник Московского ун-та.
Серия биология. № 1, 24–33.
46. Федоров В.Д. и Гильманов Т.Г. (1980) Экология. М.: Изд-
во МГУ, 464 с.
47. Oстроумов С.A. (2002). Новые варианты определений
понятий и терминов “экосистема” и “биогеоценоз”.
ДАН. 383. №4, 571–573.
48. Harborne J. B. (1988) Introduction to Ecological Biochemistry.
London: Academic Press, 356 p.
49. Остроумов С.А. и Соломонова Е.А. (2006) К разработке
гидробиологических вопросов фиторемедиации:
в з а и м од е й с т в и е т р е х в и д о в м а к р о ф и т о в с
додецилсульфатом натрия. Вода и экология. № 3,
45–49.
50. Ostroumov S.A. (2006) Biological Effects of Surfactants.
Boca Raton, London, N.–Y.: CRC Press. Taylor & Francis,
279 p.
https://www.researchgate.net/publication/259364716_ ;
https://www.researchgate.net/publication/259335534_ ;
https://www.researchgate.net/publication/259384988_;
51. Малахов В.В. и Медведева Л.А. (1991) Эмбриональное
развитие двустворчатых моллюсков в норме и при
воздействии тяжелых металлов. М.: Наука, 132 с.
52. Aquatic Ecosystems and Organisms. (2006). Moscow:
MAX-Press, p 156.
53. Алимов А.Ф. (1981) Функциональная экология
пресноводных двустворчатых моллюсков. Тр.
Зоологического института АН СССР. Л.: Наука,
248 с.
54. Сущеня Л.М. (1975) Количественные закономерности
питания ракообразных. Минск: Наука и техника, 208 с.
55. Брагинский Л.П. и Сиренко Л.А. (2003) Всесторонний
анализ токсикологической опасности поверхностно
− активных веществ для гидробионтов. Гидробиол.
журнал. 39. № 3, 115–118.
56. Горшков В. Г. (1995) Физические и биологические основы
устойчивости жизни. М: ВИНИТИ, 470 с.
57. Oстроумов С.A. (2007) Фиторемедиация и зооремедиация
водных экосистем в связи с теорией биотического
самоочищении вод. Проблемы биогеохимии и
геохимической экологии. № 4, 83–97.
58. Касимов Н.С., Курбатова А.С., Башкин В.Н. и др. (2004)
Экология города. Ред. Касимов Н.С. М.: Научный мир,
620 с.
59. Черешнев В.А. (2004) Иммунитет человека и общества.
Екатеринбург: Изд-во Уральского отделения РАН,
316 с.
60. www.worldwatch.org
The 80th anniversary of the first edition of the book “The Biosphere” of V.I. Vernadsky. Development of some important ideas of the theory of the biosphere.
G.V. Dobrovolsky.
Lomonosov Moscow State University, Vorob’evy gory, 119992 Moscow, Russia;
ABSTRACT: A brief survey of publications which expand some ideas of the theory of the biosphere developed by V.I. Vernadsky was made. Main attention was paid to studies on the biosphere as an important factor for formation of the geological environment including soils and hydrosphere, to the links between ecology and chemistry of natural compounds, to the role of chemicals as mediators in interaction between organisms and transfer of signals in the biosphere. The problems on the biosphere characteristics as an ecological–biochemical continuum, on an additional data on the active transforming of alive matter, on the development of a more adequate system of priorities to estimate hazards of pollution to the biosphere and to the hydrosphere and on an usage of various organisms to clean the environment were also considered. Information on developing new educational programs and supplies was displayed.
Key words: theory of V.I. Vernadsky, biosphere, hydrosphere, functions of alive organisms, biogeochemistry, ecology, soil science**
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: citation environmental science top publications биосфера окружающая среда цитирование экология
0
Добавить комментарий
AUG
25
Distinguished scientists cited these articles on ecology, environment, water. Key words: citation, ecology, environment, water, environmental science, ecosystems, environmental toxicology, aquatic,
Distinguished scientists cited these articles on ecology, environment, water.
http://5bio5.blogspot.com/2014/08/distinguished-scientists-cited-these.html
These scientific articles were cited and commented favorably by scientists in many countries, and inter alia, by Professor V.A. Abakumov (2013), the leading expert in aquatic ecology in Russian Federation, and Chair, Department of Ecology, an international university in the Moscow Region. He cited these articles in his paper entitled “A review of some achievements in environmental sciences, general ecology and aquatic ecology: functioning of ecosystems and environmental toxicology”.
http://5bio5.blogspot.ru/2014/08/va-abakumov-review-of-some-achievements.html
Key words: citation, ecology, environment, water, environmental science, ecosystems, environmental toxicology, aquatic, V.A. Abakumov, self-purification, pollution, detergents, filter-feeders, new methods,
1. Biocontrol of water quality: Multifunctional role of biota in water self-purification. - Russian Journal of General Chemistry, 2010, 80 (13): 2754-2761. http://5bio5.blogspot.com/2012/08/biocontrol-of-water-quality.html
2. The role of biodetritus in accumulation of elements in aquatic ecosystems. - Contemporary Problems of Ecology, 2010; 3 (4): 369-373. Full text: http://ru.scribd.com/doc/114001532/
http://trove.nla.gov.au/work/40349852
Abstract: http://www.scribd.com/doc/75098592;
[authors: ... Kolesov G. M. ]
3. On the concepts of biochemical ecology and hydrobiology: Ecological chemomediators. - Contemporary Problems of Ecology, 2008, 1 (2): 238-244. http://www.scribd.com/doc/63711272/
http://www.scribd.com/doc/73795942;
4. Basics of the molecular-ecological mechanism of water quality formation and water self-purification. - Contemporary Problems of Ecology, 2008, 1 (1): 147-152. http://trove.nla.gov.au/work/79286149 http://5bio5.blogspot.com/2012/07/basics-of-molecular-ecological.html ;https://sites.google.com/site/ostroumovsergei/basics-of-the-molecular-ecological-mechanism-of-water-quality-formation-and-water-self-purification---contemporary-problems-of-ecology-2008-vol-1-no-1-p-147-152 ;
5. Inhibition of mussel suspension feeding by surfactants of three classes. Hydrobiologia, 2006, Volume: 556, Pages: 381-386. http://www.scribd.com/doc/45958156 ; [authors: ... Widdows J. ]
6. On the multifunctional role of the biota in the self-purification of aquatic ecosystems. - Russian Journal of Ecology, 2005, 36 (6): 414-420. http://www.scribd.com/doc/45572968;
http://5bio5.blogspot.com/2012/09/on-multifunctional-role-of-biota-in.html
7. Some aspects of water filtering activity of filter-feeders. Hydrobiologia, 2005, Volume: 542, Pages: 275-286. http://www.scribd.com/doc/44105992;
8. Aquatic ecosystem as a bioreactor: water purification and some other functions. - Rivista di Biologia - Biology Forum, 97(1):67–78, 2004. http://5bio5.blogspot.com/2012/08/aquatic-ecosystem-as-bioreactor-water.html ;http://www.scribd.com/doc/52656760
9. Studying effects of some surfactants and detergents on filter-feeding bivalves. - Hydrobiologia, 500: 341–344, 2003. http://www.scribd.com/doc/63898669http://www.springerlink.com/content/k05884h730t228w4/
10. S.A. Ostroumov, S.I. Dodson, D. Hamilton, S.A. Peterson, R.G. Wetzel. Medium-term and long-term priorities in ecological studies. - Rivista di Biologia, 96(2):327–332, 2003.http://www.scribd.com/doc/48100827
http://5bio5.blogspot.com/2012/08/medium-term-and-long-term-priorities-in.html
11. The Functions of Living Substances in the Biosphere. -
Herald of the Russian Academy of Sciences, 2003, 73 (2): 164-169,
http://5bio5.blogspot.com/2012/09/the-functions-of-living-substances-in.html
12. Ostroumov S.A. Anthropogenic effects on the biota: Towards a new system of principles and criteria for analysis of ecological hazards. - Rivista di Biologia - Biology Forum, 2003, Volume: 96, Issue: 1, Pages: 159-169.
http://5bio5.blogspot.com/2012/09/ostroumov-sa-anthropogenic-effects-on.html
13. Ostroumov S.A. Inhibitory analysis of top-down control: new keys to studying eutrophication, algal blooms, and water self-purification. - Hydrobiologia, 2002, Vol. 469, Issue: 1-3, Pages: 117-129. http://www.scribd.com/doc/52598579 http://www.deepdyve.com/lp/springer-journals/inhibitory-analysis-of-top-down-control-new-keys-to-studying-cDrLImLx31
http://www.scribd.com/doc/50363310
www.moip.msu.ru/?p=154
http://5bio5.blogspot.com/2012/07/inhibitory-analysis-of-top-down-control.html
14. Ostroumov S.A. Polyfunctional role of biodiversity in processes leading to water purification: current conceptualizations and concluding remarks. - Hydrobiologia, 2002, Volume: 469; Issue: 1-3; Pages: 203-204.http://www.deepdyve.com/lp/springer-journals/polyfunctional-role-of-biodiversity-in-processes-leading-to-water-6hc0hSENAj
15. Ostroumov S.A. An amphiphilic substance inhibits the mollusk capacity to filter out phytoplankton cells from water. - Biology Bulletin [ =Izvestiia Akademii nauk. Seriia biologicheskaia / Rossiĭskaia akademiia nauk = Izv. Akad. Nauk Ser. Biol.], 2001, Volume 28, No. 1, p. 95-102. http://www.scribd.com/doc/63444377 ;
[in English edition, Biology Bulletin, pp. 95–102];
[In Russian edition, Izv. Akad. Nauk Ser. Biol., pp. 108–116];
16. Ostroumov S.A. Criteria for assessing ecological hazards of man-made impact on biota: Searching for a system. - Doklady Akademii Nauk, 2000, Volume: 371, Issue: 6, Pages: 844-846. (in Russian); Criteria of ecological hazards due to anthropogenic effects on the biota: searching for a system. - Dokl Biol Sci (Doklady Biological Sciences). 2000; 371: 204-206. (in English); English paper online free:http://www.scribd.com/doc/49088234 http://sites.google.com/site/2000dbs371p204criteria/
17. Ostroumov S.A. Biological filtering and ecological machinery for self-purification and bioremediation in aquatic ecosystems: Towards a holistic view. - Rivista di Biologia - Biology Forum, 1998, Volume: 91, Issue: 2, Pages: 221-232. http://www.scribd.com/doc/42830557
18. Fisher N.; Maertz-Wernte M.; Ostroumov S.A. Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana.-
Izvestiya Akademii Nauk Seriya Biologicheskaya, 1996, No. 1, P. 91-95.
https://www.researchgate.net/publication/264984288_Effects_of_aquatic_pollution_by_a_non-ionogenic_surfactant_on_the_marine_diatom_Thalassiosira_pseudonana ;
English abstract of this paper on the web-site of the publishers: http://www.maik.ru/cgi-perl/search.pl?type=abstract&name=biobull&number=1&year=96&page=76
19. Waterbury J., Ostroumov S.A. Effect of nonionogenic surfactant on cyanobacteria. - Microbiology, 1994, 63 (2): 140-142.
https://www.researchgate.net/publication/264988450_Effect_of_Nonionogenic_Surfactant_on_Cyanobacteria ;
Cited, mentioned at British Library Direct as: http://direct.bl.uk/bld/PlaceOrder.do?UIN=023773570&ETOC=EN&from=searchengine At the site of the U.S. library (Woods Hole, MBL):http://bibapp.mbl.edu/works/416
20. Ostroumov, S. A.; Semykina, N. A. Reaction of Fagopyrum esculentum Moench to Pollution of Aqueous Medium with Polymeric Surfactants. - Russian Journal of Ecology, 1993, 24 (6): 386-390. Availability via the site: http://direct.bl.uk/bld/PlaceOrder.do?UIN=019540005&ETOC=EN&from=searchengine; Cited at British Library Direct; see: http://direct.bl.uk/bld/PlaceOrder.do?UIN=019540005&ETOC=EN&from=searchengineCited at: http://www.world-pharmacy.info/fagopyrum;
21. Ostroumov S.A.; Khoroshilov V.S. Biological activity of waters polluted with a liquid surfactant-containing detergent. - Izvestiya Akademii Nauk SSSR, Seriya Biologicheskaya, 1992, No. 3, P. 452-458, See the sites:http://moscowstate.academia.edu/SergeiOstroumov/Papers/1906576 ;http://moscowstate.academia.edu/SergeiOstroumov/Papers/1906576/Biological_activity_of_waters_polluted_with_a_liquid_surfactant-containing_detergent; Citation, e.g., in Australia: cited as Ostroumov SA, Khoroshilov VS (1992) Biological activity of waters polluted with a liquid surfactant-containing detergent. - Izvestiya Rossiiskoi Akademii Nauk Seriya Biologicheskaya 0, 452-458. At:http://www.newcrops.uq.edu.au/listing/species_pages_F/Fagopyrum_esculentum_1992.htm; Also, cited as:458. Inhttp://www.newcrops.uq.edu.au/listing/fagopyrumesculentum.htm
22. Ostroumov S.A. Nontraditional nonanimal approaches to the ecotoxicology of xenobiotics. - Abstracts of Papers of the American Chemical Society, 1992, Vol. 203 (1), P. 302-ENVR.
23. Ostroumov S.A.; Maximov V.N. A bioassay of surfactant solutions based on the disturbance of seedling adhesion to the substrate and the development of root hairs by rhizodermis. - Izvestiya Akademii Nauk SSSR, Seriya Biologicheskaya, 1991, No. 4, P. 571-575. Cited as: Ostroumov, S. A., and V. N. Maksimov (1991). A bioassay of surfactant solutions based on the disturbance of seedling adhesion to the substrate and the dev elopment of root hairs by the rhizodermis.- Izvestiya Akademii Nauk Sssr Seriya Biologicheskaya (4): 571-575.Cited in Australia: http://www.newcrops.uq.edu.au/listing/fagopyrumesculentum.htm; Cited at: http://eurekamag.com/research/006/931/bioassay-surfactant-solutions-based-disturbance-seedling-adhesion-substrate-progress-root-hairs-rhizodermis.php#.UEJkp9bN-M4 ;
24. Ostroumov S. A. Biologically active substances of ecological importance and methodological aspects of the estimation of the biological activity of pollutants. - RUSS. CHEM. REV., 1991, 60 (3), 265–265. DOI: 10.1070/RC1991v060n03ABEH001051;http://moscowstate.academia.edu/SergeiOstroumov/Papers/1908804http://moscowstate.academia.edu/SergeiOstroumov/Papers/1908804/Biologically_active_substances_of_ecological_importance_and_methodological_aspects_of_the_estimation_of_the_biological_activity_of_pollutants
25. Ostroumov, S. A.; Tret'yakova, A. N. Effect of environmental pollution with a cationic surface active substance on algae and Fagopyrum esculentum sprouts. - Soviet Journal of Ecology, 1990, Vol. 21, No. 2, pp. 79-81. Available at: http://www.cabdirect.org/abstracts/19911959003.html; jsessionid=A94FF8C3946B30B7F886D2BCF88204FC;
A variant of the translation of the title of this paper: Effect of environmental pollution by cationic surfactant on algae and seedlings of Fagopyrum esculentum;
[translated from the original paper in the Russian peer-reviewed journal ‘Ekologiya’; in the Russian journal the pages of the paper are: p. 43-46].
26. http://www.world-pharmacy.info/fagopyrum [here, Ref. 20 was cited]
27. http://www.newcrops.uq.edu.au/listing/species_pages_F/Fagopyrum_esculentum_1992.htm
28.
https://www.researchgate.net/publication/264981057_Biological_activity_of_waters_polluted_with_a_liquid_surfactant-containing_detergent ;
http://www.newcrops.uq.edu.au/listing/fagopyrumesculentum.htm
[here, see a citation of the paper: Ostroumov, S. A., and V. S. Khoroshilov (1992). Biological activity of waters polluted with a liquid surfactant-containing detergent.- Izvestiya Rossiiskoi Akademii Nauk Seriya Biologicheskaya (3): 452-458; In Australia];
29. http://www.newcrops.uq.edu.au/listing/fagopyrumesculentum.htm [here, Ref 23 was cited, i.e. this paper was cited in Australia: Ostroumov, S. A. and V. N. Maksimov (1991). A bioassay of surfactant solutions based on the disturbance of seedling adhesion to the substrate and the dev elopment of root hairs by the rhizodermis. Izvestiya Akademii Nauk Sssr Seriya Biologicheskaya (4): 571-575];
30. Abakumov V.A. Development of some concepts and issues of ecology and hydrobiology. — Ecol. Studies, Haz., Sol., 2006, v. 11, p. 34-38.
31. Abakumov V.A. Innovative approaches to remediation and restoration of polluted aquatic systems. – Water: Technology and Ecology. 2007. No. 4. p. 69-73.
32. Abakumov V.A. New achievements in the studies of aquatic ecosystems and organisms: the concept of ecological repair. - Water: Technology and Ecology. 2007. No. 2. p.70-71.
33. Abakumov V.A. New advances in remediation and restoration of polluted aquatic systems. – Problems of Biogeochemistry and Geochemical Ecology. 2007, No. 2 (4), 98-100.
34. Abakumov V.A. New concept in the development of the theory of water self-purification: ecological repair. – Problems of Biogeochemistry and Geochemical Ecology. 2007, No. 2 (4), 45-46.
ADDENDUM. Relevant web-sites:
The references and comments on these publications see here: http://www.scribd.com/doc/104689498/http://5bio5.blogspot.com/2012/08/indexed-with-abstracts-web-of-science.html ;
** Citation of these and related publications: Citation (USA, Canada, UK, France, Germany, Switzerland, Netherlands,Denmark, Belgium...) environmental sciences: http://5bio5.blogspot.com/2012/09/citation-of-scientific-research-at.html;
** Selected examples of citing Moscow University, Russian Academy of Sciences scientists.http://5bio5.blogspot.com/2012/09/citation-of-moscow-ecologists-selected.html;
** Lithuania. Citation of the book of Moscow ecologists. Cited the book: Yablokov, Ostroumov: http://5bio5.blogspot.com/2012/09/lithuania-citation-of-book-of-moscow.html ;
** Cited: 9 selected papers on environmental science from Moscow University. Citation at the site:http://www.biomedsearch.com; http://5bio5.blogspot.com/2012/09/cited-9-papers-on-environmental-science.html ;
** Italy: new citation of scientific research on environmental science, ecology at Moscow University:http://5bio5.blogspot.com/2012/09/italy-new-citation-of-scientific.html ;
** Brazil: new citation of the research at Moscow University.
http://5bio5.blogspot.com/2012/09/brazil-new-citation-of-research-at.html ;
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: aquatic citation detergents ecology ecosystems environment environmental science environmental toxicology filter-feeders new methods pollution self-purification V.A. Abakumov water
0
Добавить комментарий
AUG
25
Biological effects of surfactants. Book, papers (selected). Kew words: environmental toxicology, ecotoxicology, toxicity, detergents, pollution, bioassay, hazard assessment, environmental safety.
Biological effects of surfactants. Book, papers (selected).
Kew words: environmental toxicology, ecotoxicology, toxicity, detergents, pollution, bioassay, hazard assessment, environmental safety.
**
Show dataset
Source
Dataset: book titled: Biological Effects of Surfactants; Сover, abstract, contents, reviews; Environmental hazards of detergents; acquired by Harvard University, Oxford, Cambridge, MIT
Ostroumov S.A
[Show abstract]
Publish resources
Show dataset
Source
Dataset: On the book published, titled: Biological Effects of Surfactants. much info
Ostroumov S.A
[Show abstract]
Publish resources
Show dataset
Source
Dataset: On the book titled: Biological Effects of Surfactants. much info
Ostroumov S. A.
[Show abstract]
Publish resources
Show dataset
Source
Dataset: Pictures, photos of organisms studied in book: Biological Effects of Surfactants. More on the book: https://www.researchgate.net/publication/200637626
Ostroumov S. A.
[Show abstract]
Publish resources
0 requests
Publish full-text
Article: Biological effects of surfactants on organisms (book). Chapter 6. Studying the biological effects of mixtures that contain surfactants, and the effects of some other chemicals and samples.
Ostroumov S. A.
[Show abstract]
Chapter 6. Studying the biological effects of mixtures that contain surfactants, and the effects of some other chemicals and samples. In:Biological effects of surfactants on organisms (Moscow, MAX Press, 2001), p.124-143. 01/2010;
Publish full-text Publish resources
0 requests
Publish full-text
Article: Biological effects of surfactants on organisms (book). Chapter 4. Biological activity of water which contains non-ionic surfactants.
S.A.Ostroumov / Остроумов С.А.
[Show abstract]
Chapter 4 of the book ‘Biological effects of surfactants on organisms’, published in Russian by S.A.Ostroumov (MAX Press, Moscow, 2001; 334 pages in toto). 01/2010;
Publish full-text Publish resources
Show dataset
Source
Dataset: Citation of book. Biological effects of surfactants. Cited in U.S.A., U.K., Germany, Italy, Austria, Netherlands, Denmark, Belgium, Portugal
Ostroumov S. A.
[Show abstract]
Publish resources
Read full-text
Source
Book: Biological Effects of Surfactants
Ostroumov S. A.
[Show abstract]
01/2006; CRC Press, Taylor & Francis.
Publish resources
0 requests
Publish full-text
Chapter: Book published: Ostroumov S.A. Biological Effects of Surfactants. CRC Press. Taylor & Francis. Boca Raton, London, New York. 2006. 279 p., tab. Bibliogr. on pages 203-243 and 250-253. Subject Index: p.255-279. ISBN 0-8493-2526-9. ISBN 13: 9780849325267.
Ostroumov S. A.
[Show abstract]
01/2006; , ISBN: ISBN 0-8493-2526-9. ISBN 13: 9780849325267. [Electronic book text: ISBN: 6610517002; ISBN 13: 9786610517008;
Publish full-text Publish resources
0 requests
Publish full-text
Article: book ‘Biological effects of surfactants on organisms’2001.Chapter 1.Man-made effects and synthetic surfactants as chemicals that pollute aquatic ecosystems.
S.A.Ostroumov
[Show abstract]
Chapter 1 of the book ‘Biological effects of surfactants on organisms’, published in Russian by S.A.Ostroumov (MAX Press, Moscow, 2001; 334 pages in toto). 01/2010;
Publish full-text Publish resources
Show dataset
Source
Dataset: Citation of book. Biological effects of surfactants. Cited in U.S.A., U.K., Germany, Italy, Austria, Netherlands, Denmark, Belgium, Portugal
Ostroumov S. A.
Publish resources
Show dataset
Source
Dataset: Citation of the book. Biological effects of surfactants. Cited in U.S.A., U.K., Germany, Italy, Austria, Netherlands, Denmark, Belgium, Portugal
Ostroumov S. A.
Publish resources
0 requests
Publish full-text
Article: Biological effects of surfactants on organisms (book). Chapter 2. Organisms and methods.
S.A.Ostroumov / Остроумов С.А.
[Show abstract]
Chapter 2 of the book ‘Biological effects of surfactants on organisms’, published in Russian by S.A.Ostroumov (MAX Press, Moscow, 2001; 334 pages in toto). 01/2010;
Publish full-text Publish resources
Show dataset
Source
Dataset: Citation of book. Biological effects of surfactants. Cited in U.S.A., U.K., Germany, Italy, Austria, Netherlands, Denmark, Belgium, Portugal
Ostroumov S.A
Publish resources
Show dataset
Source
Dataset: In Harvard University.Book ‘Biological Effects of Surfactants’, other books of U.S. and international scientists, including Nobel Prize winners
Ostroumov S. A.
Publish resources
0 requests
Request full-text
Article: BIOLOGICAL EFFECTS OF SURFACTANTS
ROBERT ERNST, JOSEPH ARDITTI, PATRICK L. HEALEY
[Show abstract]
New Phytologist 04/1971; 70(3):457 - 475. · 6.74 Impact Factor
Request full-text Bookmark
0 requests
Request full-text
Article: BIOLOGICAL EFFECTS OF SURFACTANTS VII GROWTH AND DEVELOPMENT OF BRASSOCATTLEYA (ORCHIDACEAE) SEEDLINGS
R. ERNST, J ARDITTI
[Show abstract]
New Phytologist 05/2006; 96(2):197 - 205. · 6.74 Impact Factor
Request full-text Bookmark
Show dataset
Source
Dataset: Article published in journal Hydrobiologia. Title of the paper: Studying effects of some surfactants and detergents on filter-feeding bivalves. Hydrobiologia
Ostroumov S. A.
[Show abstract]
Publish resources
0 requests
Request full-text
Article: Biological effects of surfactants: Part 6—effects of anionic, non-ionic and amphoteric surfactants on a green alga (Chlamydomonas)
Robert Ernst, Christopher J. Gonzales, Joseph Arditti
[Show abstract]
Environmental Pollution Series A Ecological and Biological 01/1983; 31(3):159–175.
Request full-text Bookmark
0 requests
Request full-text
Article: Biological effects of surfactants, IV. Effects of non-ionics and amphoterics on HeLa cells.
R Ernst, J Arditti
[Show abstract]
Toxicology 02/1980; 15(3):233-42. · 4.02 Impact Factor
Request full-text Bookmark**
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: bioassay book detergents ecotoxicology environmental safety environmental toxicology hazard assessment Papers pollution toxicity
0
Добавить комментарий
AUG
25
Fisher N., Maertz-Wernte M., Ostroumov S. A. Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana . – Biology Bulletin (The original Russian title of the journal: IZVESTIYA AKADEMII NAUK SERIYA BIOLOGICHESKAYA). — 1996. — no. 1. — p. 91–95.
Fisher N., Maertz-Wernte M., Ostroumov S. A. Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana . – Biology Bulletin (The original Russian title of the journal: IZVESTIYA AKADEMII NAUK SERIYA BIOLOGICHESKAYA). — 1996. — no. 1. — p. 91–95.
http://5bio5.blogspot.com/2014/08/fisher-n-maertz-wernte-m-ostroumov-s.html
Indexed in Web of Science.
**
This is a first publication to report a hazardous effect of a synthetic non-ionic surfactant (exemplified by Triton X-100) on diatom algae (exemplified by a marine species, Thalassiosira pseudonana). In the paper, it was shown that this chemical inhibited the reproduction rate and abundance of the cells of this species of marine phytoplankton. The synthetic surfactant Triton X-100 inhibited the growth of the algal culture. Non-ionic surfactants are key components of many detergents including laundry detergents and other chemical products. Non-ionic surfactants became a new type of chemical pollution of freshwater and marine water. This publication discovered a new type of environmental hazard from water pollution with detergents and other chemical products that contain non-ionic surfactants.
** Title: Effects of aquatic pollution by a non-ionogenic surfactant on the marine diatom Thalassiosira pseudonana.
Author(s): Fisher N.; MaertzWernte M.; Ostroumov S.A. Source: IZVESTIYA AKADEMII NAUK SERIYA BIOLOGICHESKAYA, Issue: 1, Pages: 91-95, Published: JAN-FEB 1996;
Affiliation of the authors: State University of New York (U.S.A.), Moscow State University (Russian Federation).
Key words:
Algae, diatoms, phytoplankton, Thalassiosira pseudonana, non-ionogenic, surfactant, Triton X-100, ecotoxicology, environmental toxicology, marine, bioassay, growth rate, hazard assessment, State University of New York, Moscow State University
Addendum:Novelty: The first paper to report negative effect of a synthetic surfactants (detergent) on growth of marine diatom algae;
http://5bio5.blogspot.com/2013/07/in-2-hong-kong-libraries-effects-of.html
also, available in 541 U.S. libraries:
Harvard University, Princeton, University of California, Berkely; North Carolina State University , Library of Congress,Stanford University Libraries, Cornell University Library , et al.
http://5bio5.blogspot.com/2013/07/in-541-us-libraries-effects-of-aquatic.html
**
Опубликовано 3 days ago пользователем Dr Green
0
Добавить комментарий
AUG
25
Publication: Detoxification of toxic elements in the biosphere and improving environmental monitoring. In Russ.: ОБЕЗВРЕЖИВАНИЕ ТОКСИЧНЫХ ЭЛЕМЕНТОВ В БИОСФЕРЕ И СОВЕРШЕНСТВОВАНИЕ ЭКОЛОГИЧЕСКОГО МОНИТОРИНГА
Publication: Detoxification of toxic elements in the biosphere and improving environmental monitoring. In Russ.: ОБЕЗВРЕЖИВАНИЕ ТОКСИЧНЫХ ЭЛЕМЕНТОВ В БИОСФЕРЕ И СОВЕРШЕНСТВОВАНИЕ ЭКОЛОГИЧЕСКОГО МОНИТОРИНГА
http://5bio5.blogspot.com/2014/08/publication-detoxification-of-toxic.html
in the peer-reviewed journal: Ekologiya Promyshlennogo Proizvodstva, ISSN: 2073-2589;
**
Reference in Russian:
Остроумов С. Обезвреживание токсичных элементов в биосфере и совершенствование экологического мониторинга // Экология промышленного производства. — 2012. — Т. 1. — С. 26–32.
Reference, translit:
Ostroumov S.A. Obezvrezhivaniye toksichnykh elementov v biosfere i sovershenstvovaniye ekologicheskogo monitoringa // Ekologiya promyshlennogo proizvodstva. — 2012. — T. 1. — S. 26–32.
Reference, translation into English:
Ostroumov S.A. Detoxification of toxic elements in the biosphere and improving environmental monitoring // Ecology of industrial production. - 2012, v. 1, p. 26-32.
**
ОБЕЗВРЕЖИВАНИЕ ТОКСИЧНЫХ ЭЛЕМЕНТОВ В БИОСФЕРЕ И СОВЕРШЕНСТВОВАНИЕ ЭКОЛОГИЧЕСКОГО МОНИТОРИНГА
Author: ОСТРОУМОВ СЕРГЕЙ АНДРЕЕВИЧ
Affiliation: 1 МГУ им. М. В. Ломоносова, Москва, Россия;
Тип: статья в журнале - научная статья;
Цит. в РИНЦ®: 5;
УДК: 550.4.574;
Peer-reviewed journal:
ЖУРНАЛ:
ЭКОЛОГИЯ ПРОМЫШЛЕННОГО ПРОИЗВОДСТВА
Издательство: Всероссийский научно-исследовательский институт межотраслевой информации - федеральный информационно-аналитический центр оборонной промышленности (Москва);
ISSN: 2073-2589;
Web-page of the journal:
http://i-vimi.ru/editions/detail.php?SECTION_ID=158
Key words / КЛЮЧЕВЫЕ СЛОВА:
ДЕТОКСИКАЦИЯ ТОКСИЧНЫХ ОТХОДОВ, БИОСФЕРА, ОКРУЖАЮЩАЯ СРЕДА, ЭКОЛОГИЯ, ЖИВОЕ ВЕЩЕСТВО, ТИПЫ ВЕЩЕСТВА, EX-LIVING MATTER, ТЯЖЕЛЫЕ МЕТАЛЛЫ, DETOXIFICATION OF TOXIC WASTES,BIOSPHERE, ENVIRONMENT, ECOLOGY, TYPES OF MATTER, HEAVY METALS
Abstract in Russian:
АННОТАЦИЯ:
Для понимания экологических процессов обезвреживания в биосфере токсичных элементов необходимо проанализировать проблемы, связанные с современной типологией видов вещества в биосфере (в биосфере выделяют живое и неживое вещество). На основе экспериментов, проведенных автором, и данных научной литературы предложена концепция третьего типа вещества, которое автор обозначает как ex-living matter (ELM). Рассмотрены основные функции ELM в биосфере, варианты названий нового типа вещества и вытекающие из этого анализа предложения по совершенствованию экологического мониторинга содержания токсичных элементов в отходах и сточных водах промышленного производства.
ОПИСАНИЕ НА АНГЛИЙСКОМ ЯЗЫКЕ:
Abstract in English:
Detoxification of toxic elements in the biosphere and improving environmental monitoring
OSTROUMOV S. A.1
1 M. V. Lomonosov Moscow State University, Moscow, Russia
In order to understand the natural processes of detoxification of toxic wastes and waste waters, it is worthwhile to consider the main challenges to the current conceptualization of the types of matter in the biosphere. To meet and respond to the challenges, the author suggested a new conceptualization which is based on his suggestion to identify so called ex-living matter (ELM). The author discusses his experiments (carried out together with his co-authors) which provide a solid factual foundation to this conceptualization, as well as other data available in literature. The main functions of ELM in the biosphere were also formulated and considered by the author. Some alternatives and variants in verbal expression to be used as a name for the new type of matter are also included in the publication.
**
This article was cited in the following publications:
1
Остроумов С.А.
Известия Самарского научного центра Российской академии наук. 2013. Т. 15. № 3. С. 17-22.
2
Остроумов С.А.
Успехи наук о жизни. 2013. № 6. С. 69-71.
3
НОВОЕ В СОВРЕМЕННОМ РАЗВИТИИ НЕКОТОРЫХ ИДЕЙ В.И.ВЕРНАДСКОГО И ЭКОЛОГИЧЕСКИЕ АСПЕКТЫ ИСПОЛЬЗОВАНИЯ ПРИРОДНЫХ РЕСУРСОВ
Остроумов С.А.
Вестник Самарского государственного экономического университета. 2013. № 101. С. 65-74.
4
Карташова Е.Р., Фитискина Н.В.
Экология промышленного производства. 2013. № 4 (84). С. 82-88.
5
Фитискина Н.В., Карташова Е.Р.
Экология и промышленность России. 2014. № 3. С. 32-35.
**
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: biosphere detoxification ecology Ex-living matter TOXIC WASTES TYPES OF MATTER биосфераживое вещество металлы типы вещества экология
0
Добавить комментарий
AUG
24
The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation. ГЕОХИМИЧЕСКИЙ АППАРАТ ВОДНЫХ ЭКОСИСТЕМ: БИОКОСНАЯ РЕГУЛЯЦИЯ.
The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation
http://5bio5.blogspot.com/2014/08/the-geochemical-apparatus-of-aqueous.html
Sergei A. Ostroumov
Herald of the Russian Academy of Sciences (Impact Factor). 01/2004; 74(9):785-791.
Edit
ABSTRACT:
A Diploma (Academy of Water Sciences) – a certificate of high scientific quality - was awarded to the series of publications (on ecology, environmental science) including this article: http://5bio5.blogspot.com/2014/07/award-july-1-2014-to-series-of.html;
Ostroumov, S.A. The geochemical apparatus of aqueous ecosystems: The Biocos regulation.
Vestnik Rossiiskoi Akademii Nauk; [English translation of the title of the journal: Herald of the Russian Academy of Sciences] 2004, 74 (9) , pp. 785-791 .
This paper was reviewed by an expert at World Catalog (WorldCat). This is the review taken from the web-page of WorldCat:
Innovative article on environmental science. Geochemical Apparatus of Aqueous Ecosystems.
Title of the article: The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation.
Author: S A Ostroumov;
Publisher: Moskva : Nauka,
Edition/Format: Article : Russian;
Publication: Vestnik Rossiĭskoĭ Akademii nauk. 74, no. 9, (2004): 785-791 ; translation of the title of the journal: Herald of the Russian Academy of Sciences.
This paper develops the most fundamental innovations made by one of fathers of modern biogeochmistry, Prof. Vladimir Vernadsky (Member, Russian Academy of Sciences).
This paper proposed new fundamental concepts and ideas on how ecosystems function in driving and regulation of fluxes of chemical elements and substances in the biosphere and hydrosphere. This is a fundamental contribution to ecology and geochemistry.
In the paper, some new concepts and terminology were proposed, including new concepts and terms: geochemical apparatus, geochemical regulation; 'biokosnaya regulation' of transfer of chemical elements in the biosphere;
According to World Catalog, this paper is available in United States (in 59 libraries); in U.K. (7 libraries, including Natural History Museum , the British Library etc.), in Germany (8 libraries, including Bayerische Staatsbibliothek etc.), in France (14 libraries, including Bibliothèque de la Sorbonne , etc.).
Variants of citation of thispaper:
MLA Ostroumov, S. A. "The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation." VESTNIK-ROSSIISKAIA AKADEMIIA NAUK 74 (2004): 785-791.
APA Ostroumov, S. A. (2004). The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation. VESTNIK-ROSSIISKAIA AKADEMIIA NAUK, 74, 785-791.
Chicago Ostroumov, S. A. "The Geochemical Apparatus of Aqueous Ecosystems: The Biocos Regulation." VESTNIK-ROSSIISKAIA AKADEMIIA NAUK 74 (2004): 785-791.
Another version of the reference, with a slightly different translation of the title from Russian into English:
Geochemical apparatus of aquatic ecosystems: biotic regulation. — Herald of Russian Academy of. Sciences. (Vestnik Rossiiskoi Akademii Nauk) 2004. V. 74. No. 9. P. 785-791.
I recommend this article and other innovative publications of the same author at Moscow State University to all who are involved in modern ecology and geochemistry, in environmental sciences and studies of the biosphere.
Key words:
ecology, environmental science, geochemistry, biogeochemistry, life sciences, geosciences, biosphere, V.I.Vernadsky, ecosystems, new, concepts, regulation, migration of chemical elements,
Добавление на русском языке:
Краткая аннотация этой статьи:
Геохимический аппарат водных экосистем: биокосная регуляция // Вестник Российск. академии наук (РАН). 2004. т. 74. № 9. C.785-791, табл., Библиогр. 19 назван.; портр.; Впервые введены новые понятия и новые термины: 1) геохимический аппарат и геохимическая регуляция, 2) биокосная регуляция миграции элементов и перемещений вещества в биосфере.
More about this peer-reviewed journal:
ISSN: 0869-5873;
in some libraries, the title of the journal is: VESTNIK- ROSSIISKAIA AKADEMIIA NAUK;
THE RUSSIAN TEXT IN CONDENSED FORM:
Остроумов С. А. ГЕОХИМИЧЕСКИЙ АППАРАТ ВОДНЫХ ЭКОСИСТЕМ: БИОКОСНАЯ РЕГУЛЯЦИЯ // ВЕСТНИК РОССИЙСКОЙ АКАДЕМИИ НАУК, 2004, том 74, № 9, с. 785-791.
В статье рассматривается роль биоты в регуляции перемещения химических элементов в водных экосистемах и гидросфере. Обзор данных, накопленных в экологии, гидробиологии, лимнологии, биологической океанографии, а также результаты собственных экспериментов приводят автора к ряду весьма примечательных выводов. Фрагменты содержания статьи: Миграцию химических элементов, определяемую живыми организмами, В.И. Вернадский назвал "биогенной миграцией элементов" [1]. Раскрывая закономерности "сплетенья косных масс" (по выражению М. Волошина), миграцию элементов изучали В.В. Докучаев, В.И. Вернадский и их ученики. Исследования зависимых от живых организмов потоков и циклов химических элементов стали одним из центральных разделов геохимии (А.П. Виноградов, Э.М. Галимов, Б.Б. Полынов и др.), биогеохимии (М.В. Иванов, В.А. Ковда, Е А. Романкевич и др.), океанологии (М.Е. Виноградов, А.П. Лисицын и др.), почвоведения (Г.В. Добровольский, СА. Шоба). Живые организмы играют ключевую роль в миграции радионуклидов в водных и наземных экосистемах (Н.В. Тимофеев-Ресовский, Г.Г. Поликарпов, Д.А. Криволуцкий и др.). Сейчас наблюдаются глобальные изменения в биосфере, есть свидетельства повышения частоты экстремальных погодных и климатических явлений. Тревожные глобальные тенденции проявляют себя в конкретных нарушениях. Так, выявлено, что в последние десятилетия уменьшается период ледового покрова на Байкале, а также максимальная величина толщины льда [2], явно участились катастрофические погодные явления, ведущие к трагическим исходам. В последние 20 лет XX в. погибло более 70% от числа жертв природных катаклизмов всего столетия. Наводнения стали причиной гибели 9 млн. человек, землетрясения - около 1 млн. человек, ураганы и тайфуны - 1 млн. человек. (Отметим, что от факторов, связанных с климатом и погодой, погибло почти в 10 раз больше людей, чем от чисто геологических явлений - землетрясений.) Более тщательный учет тонкого структурирования и регуляции миграций химических элементов, внимание к разнообразию механизмов этого процесса - а за ними скрывается биоразнообразие видов водных организмов - поможет лучше постигать суть катаклизмов, а в перспективе - прогнозировать их и предотвращать. Эмпирический материал о перемещении вещества в водных экосистемах (например, [3-8]) приводит к выявлению определенных закономерностей и формулировке обобщающих положений. Ранее автором была сформулирована концепция водной экосистемы как крупномасштабного диверсифицированного биореактора [9]. Катализ и регуляция перемещения веществ, в том числе потоков биогенных элементов, - стороны функционирования экосистемы в качестве биореактора. Целесообразно продолжать поиск новых постулатов и обобщающих гипотез, касающихся миграции элементов в водных экосистемах. О некоторых шагах в этом направлении рассказывается в статье. На основе знаний о потоках вещества в водных экосистемах (например, [3, 5, 10-13]) и с учетом недавних собственных работ [14] автор предлагает некоторые обобщения, рассматривая их как временные постулаты или рабочие гипотезы. Роль биоты в формировании особенностей миграции вещества (химических элементов) в биосфере включает в себя не менее четырех аспектов: прямое участие как движущего фактора миграции; энергообеспечение многих конкретных случаев миграции элементов (включая фотосинтез и хемосинтез); ускорение (биокатализ) миграции - часто при участии организмов миграция в определенном направлении происходит значительно быстрее, чем под действием только физико-химических факторов; регуляция миграции -она имеет место, когда сосуществуют несколько альтернативных путей (траекторий) миграции элементов. Биота выступает как диспетчер и стрелочник, переводящий рельсы перед мчащимся поездом, в вагонах которого вещество геохимических вихрей. "Разъяв Вселенную на вес и на число" (М. Волошин), можно выделить два типа миграции вещества в экосистемах: векторные и стохастические; циклические и нециклические перемещения. После работ В.И. Вернадского о биогенной миграции элементов неоднократно и подробно анализировалась роль живого вещества как движущей силы перемещения и фактора ускорения миграции химических элементов. В данной работе акцентируется важность и другой стороны - роли природных факторов как регулятора небиогенных перемещений. Примером может служить оседание частиц взвешенного вещества (независимо от их природы - в том числе минеральных частиц взвешенного неорганического вещества) под действием поля тяготения Земли. Конечно, такую роль выполняют и биотические, и абиотические факторы, действующие в сочетании. Чтобы подчеркнуть, что мы стремимся не упускать из виду ни те, ни другие факторы, ни важность их сочетания и совместного действия, будем говорить о биокосном (термин Вернадского) контроле перемещения химических элементов. Регуляция векторного и стохастического перемещения элементов. Первый из двух наших тезисов (обобщений) состоит в следующем. В водных экосистемах имеет место конкурентное единство и биокосная регуляция процессов векторного и стохастического перемещения химических элементов. В некоторой мере расшифровкой содержания этого тезиса является совокупность следующих четырех положений. 1. В качестве примера векторного (однонаправленного) перемещения можно привести оседание взвешенных в воде частиц [10], в том числе рыхлых хлопьев ("морского снега"), а также выделяемых организмами пеллет [11, 14]. Пример стохастического перемещения - хаотическое передвижение планктона (не случайно дафний называют водяными блохами - их поведение в воде напоминает прыжки скачущих блох). 2. Векторные и стохастические процессы тесно переплетаются и накладываются один на другой. Например, зоопланктон может одновременно участвовать и в хаотическом движении, и в вертикальных миграциях со скоростью 0.38-16 см в секунду [5]. 3. Векторный процесс может конкурировать со стохастическим. Например, морская бактерия либо остается парить в воде во взвешенном состоянии и хаотически броунировать, либо прикрепляется к более крупной частице и опускается вниз, осаждаясь под действием сил тяготения в гравитационном поле Земли. В результате скорость перемещения вещества бактерии значительно ускорится, поскольку пеллетные частицы, в зависимости от формы и размеров, опускаются на дно со скоростью 100-150 м в сутки (наиболее крупные из них - до 500 м в сутки) [11]. 4. Регуляция выбора траектории миграции вещества (то есть перевод рельсов впереди мчащегося поезда, если пользоваться упомянутой метафорой) связана с тем, какой тип процесса будет преобладать; осуществляется она совместно биотическими и абиотическими факторами. Игнорирование любого из них чревато потерей адекватности при описании, анализе и понимании перемещений химических элементов. Яркий пример сочетания названных факторов в определении масштабов векторного переноса вещества - экосистемы близ устьев крупных рек, так называемые маргинальные фильтры [11]. В таких местах смешиваются струи пресной речной воды с воспринимающими их массами океанической влаги. В зонах резкого изменения солености воды наблюдаются важные физико-химические процессы, бурное развитие планктонных организмов и в итоге - массированное выпадение веществ в донные осадки. В этих экосистемах важнейшими биотическими факторами являются фитопланктон и зоопланктон, значимыми абиогенными факторами - содержание растворенных и коллоидных веществ (оксигидраты железа и др.), свет, силы гравитации, градиент солености воды (в пределах от 5 до 20%с происходит перезарядка коллоидов и образование крупных хлопьев). Скорость осаждения (седиментации) и накопления донных осадков в зоне маргинального фильтра зачастую очень велика. Так, вблизи устья реки Лены накопление осадков достигает свыше 1500 мм за 1000 лет, что значительно, почти на два порядка, превышает скорости седиментации, свойственные областям шельфа Арктики за границами зоны маргинального фильтра - всего лишь 10-20 мм за 1000 лет [11]. В маргинальном фильтре Енисея максимум вертикальных потоков осадочного вещества при солености 15%с достигал свыше 22 г/м2 за сутки. По мнению академика А.П. Лисицына, "масштабы осаждения осадочного вещества достигают лавинных значений, идет лавинная седиментация" [11, с. 215]. Подобное выявлено и в других водных экосистемах: во фьордах Норвегии, например, осаждается до 2-7 г/м2 за сутки [11]. В серии работ, проведенных нами совместно с М.П. Колесниковым (Институт биохимии РАН), экспериментально изучено быстрое оседание на дно водной экосистемы химических элементов в составе пеллет, выделяемых обитателями водоемов: двустворчатыми моллюсками Unionidae, a также легочными моллюсками Lymnaea stagnalis. По нашим оценкам, за 120 дней вегетационного сезона на 1 м2 дна пресноводного водоема может оседать 14.9-55.3 г углерода, 0.6-2.3 г азота, 0.1-0.3 г фосфора, 0.4-1 г кремния (табл. 1 и 2). Поскольку оседание пеллет - быстрый процесс, моллюски выступают в роли мощных биокатализаторов важных процессов вертикального переноса химических элементов. В указанных работах [14], а также в других, проведенных нами при содействии сотрудников Плимутской морской лаборатории (Великобритания), кафедры микробиологии МГУ и Института биологии южных морей (ИНБЮМ, Севастополь), было выявлено, что на поток вещества, перемещающегося через звено экосистем, представленное морскими и пресноводными моллюсками, может оказывать воздействие такой абиотический фактор, как химическое загрязнение воды. Оно опосредовано биологическим фактором (снижением фильтрационной и пищевой активности морских и пресноводных моллюсков и, соответственно, снижением образования ими пеллет) [14, 17]. Таким образом, найдено новое подтверждение неразрывной связи биотического и абиотического факторов в регуляции перемещения вещества через конкретное звено экосистемы. Один из весомых факторов рассматриваемого процесса - фильтраторы, в том числе фильтрато-ры зоопланктона и зообентоса. Биомасса зоопланктона (без простейших) Мирового океана составляет 19.8 х 109 т, то есть около 19.8 млрд. т [5]. Биомасса бентоса Мирового океана приблизительно на порядок меньше: некоторые исследователи считают, что около 3.3 млрд. т [11]. Надо подчеркнуть, что оценки биомассы (в особенности бентоса), а также доли первичной продуктивности водных экосистем, достигающей дна, носят предварительный и приближенный характер. Есть сведения, что величина суммарного потока вещества в гидросфере/биосфере (в верхнем слое морской воды 0-200 м) составляет (в сыром весе) в тропической зоне Тихого океана около 3.1 г/м2 за сутки, в умеренной зоне (Курило-Камчатский район) - 12 г/м2 за сутки, в Японском море - 8 г/м2 за сутки. Связанный с этим поток энергии в тропической зоне Тихого океана - приблизительно 9.1 ккал/м2 за сутки, в Курило-Камчатском районе - 19.2 ккал/м2 за сутки, в Японском море -8 ккал/м2 за сутки [11]. Имеются указания на то, что в экосистемах озер определенного типа достигает дна в среднем примерно 15% первичной продукции и за год в донных отложениях аккумулируется около 12% чистой первичной продукции [3], хотя следует подчеркнуть, что в озерах разного типа эти показатели могут сильно варьировать. По данным Е.А. Романкевича, в донных осадках Мирового океана захоранивается около 0.4% первичной продукции в год, что в геологическом масштабе времени очень много, поскольку означает, что за 100 лет в осадочных толщах собирается 40% первичной продукции всего Мирового океана. Количество органического углерода, захораниваемое за 200 с небольшим лет, практически равно годовой продукции фотосинтеза всего Мирового океана, которая составляет, по различным оценкам, от 20 до 100 млрд. т углерода в год [13,18]. Часть атомов углерода затем оказывается в составе нефти и завершает свой полный приключений цикл в горячих выбросах двигателей внутреннего сгорания и тепловых электростанций, становясь яблоком раздора в кровопролитных межгосударственных конфликтах, а также в спорах вокруг Киотского протокола. Векторные перемещения вещества - одна из важнейших сторон структурированности биосферы. Интересно, что А. Эйнштейн, наблюдая за стремительным движением перелетных птиц в воздушном океане, заметил, что ему представляются невидимые нити, вдоль которых уверенно скользят мигрирующие птицы. Развивая его образное видение, можно сказать, что биосфера - это паутина, сотканная из нитей, вдоль которых мигрируют элементы. Но картина осложняется тем, что, как мы подчеркнули выше, часть миграций происходит вне благородной упорядоченности этих нитей (стохастически). Еще одно осложнение заключается в том, что наряду с линейным перемещением атомов наблюдаются вихри циклических траекторий. Регуляция циклических и нециклических путей перемещения элементов. В своих миграциях атомы могут совершить "петлю Нестерова", попадая в циклические вихри, из которых не всегда бывает легко выбраться. Традиционно в геохимии и биогеохимии всегда обращают внимание на то, что атомы переходят из жидкой фазы в газовую и обратно, из одного организма в другой. Остановимся на одной из сторон этого вековечного процесса, а именно на конфигурации рисунка получающейся траектории - она может быть круговой либо нециклической. В водных экосистемах имеет место конкурентное единство и биокосная регуляция циклических и нециклических путей химических элементов, представляющих собой цепи последовательных переходов химических элементов из одной фазы в другую (межфазовые переходы) и из одного организма в другой (межорганизменные переходы). В этом обобщении учитываются следующие четыре положения. 1. Пример циклических перемещений: атомы углерода из растворенной двуокиси углерода при фотосинтезе переходят в состав биомолекул; они окисляются, и атомы углерода переходят опять в фонд растворенного С02. Пример нециклических процессов нетрудно проследить в цепи следующих событий: атомы углерода из растворенной двуокиси углерода переходят в состав сначала биомолекул фитопланктона, затем - зоопланктона и зообентоса, далее -пеллет, которые оседают и достигают дна, где ассимилируются моллюсками; часть атомов углерода попадает в состав раковин моллюсков; затем атомы углерода захораниваются в донных отложениях в составе створок раковин. Во многих озерах в среднем около 60% чистой первичной продукции (то есть углерода, связанного в результате фотосинтеза) потребляется в микробиальной петле, никогда не достигая дна, что говорит о важной роли циклических процессов перемещения углерода. В морских экосистемах доля чистой первичной продукции, не достигающей дна, еще выше. 2. Оба типа процессов переплетаются; траек тории циклических и нециклических переходов конкретных атомов могут иметь общие участки. 3. Пути обоих типов могут конкурировать между собой. Часть углерода биомолекул фито планктона вернется в состав фонда растворенно го в воде С02, часть будет захоронена в донных осадках. 4. Регуляция осуществления того или иного пе рехода в точках разветвления (бифуркации) пу тей миграции конкретных атомов осуществляет ся совместно биотическими и абиотическими факторами. Необходимо подчеркнуть, что для климата Земли (и зависящих от него судеб человечества) чрезвычайно важны даже небольшие сдвиги в переключении потоков элементов на тот или иной путь. Опасно нарушать эти пути: они тонко сбалансированы и словно пролегают вдоль невидимых нитей, которые, согласно древнегреческой мифологии, ткут богини судьбы, мойры - три таинственные сестры: Лахесис ("дающая жребий"), Клото ("прядущая") и Атропос ("неотвратимая"). Стремление уделить должное внимание цикличности (коловращению) конкретных потоков элементов заставляет вспомнить о высказываниях Платона, который считал, что эти три мойры -дочери богини Ананке ("необходимость"), вращающей мировое веретено. Важность даже небольших относительных изменений потоков элементов вызвана тем, что их абсолютные величины в Мировом океане огромны. Так, фонд неорганического углерода в поверхностных водах Мирового океана (около 700 х 1015 г) почти равен содержанию углерода в атмосфере (720 х 1015 г). В глубинных водах океана содержание неорганического углерода почти на два порядка выше - 36700 х 1015 г. Еще больше оно в донных осадках Мирового океана: запасы углерода в поверхностной части морских осадков составляют примерно 1022 г. Иными словами, фонд углерода в донных осадках почти на пять порядков превышает содержание углерода в атмосфере. Колоссальные запасы углерода сформированы при активной регуляторной роли и прямом участии живых организмов, общая биомасса которых в Мировом океане на много порядков уступает вышеприведенным фондам углерода: общее содержание углерода в морской биоте -около 3 х 1015 г [18], а по другим оценкам - еще меньше. То, что огромное количество углерода благодаря морским организмам спрятано в океанической бездне, можно считать удачей для человечества, ибо высвобождение даже тысячной доли процента углерода привело бы к удвоению содержания диоксида углерода в атмосфере и парниковому эффекту. Истинный "ящик Пандоры" пока еще находится на дне океана, и наше счастье в том, что он не открыт и ключ его стерегут морские существа, которые наполнили и продолжают пополнять этот ящик. Точнее говоря, ящик открыт и происходит постоянное и одновременное пополнение и опорожнение его, но гидроби-онты выступают как бдительные и деликатные менеджеры, удерживающие такой важный для нас баланс обоих процессов. Наше обращение к мифологии оправдывается еще и тем, что приходится признать наличие существенного элемента именно мифологии в той сумме представлений, которая именуется современной экологией. Стандартная экологическая доктрина включает представление о трофической (пищевой) цепи, по которой от звена к звену чинно шествует поток вещества, включая углерод; учебники экологии неизменно содержат также схемы экологических пирамид, где вещество скользит от основания к вершине. Элемент мифологии в этой идиллической картине в том, что она скрывает или недооценивает отклонения, завихрения, появление водоворотов и циклов на путях миграции элементов. Чтобы избавиться от устоявшейся мифологии, необходимо внимательнее приглядеться к роли разнообразия живых организмов: имя им легион. Регуляция конкретных перемещений элементов и роль биоразнообразия. Фундаментальные положения, которые мы обсуждали, привели нас к океаническим глубинам, где промелькнули таинственные богини судьбы. Не так широко известно, что у богинь судьбы в эллинистическую эпоху был могущественный конкурент - богиня Тиха, символизировавшая неустойчивость и изменчивость жизни, роль в ней случая. Какова же роль конкретных носителей жизни в водной среде? Основываясь на значительном объеме фактов, накопленных современной гидробиологией [3,7, 10,13], можно конкретизировать некоторые стороны роли гидробионтов в миграциях элементов. Во-первых, гидробионты участвуют в регуляции и определении доли вещества (химических элементов), которая достигает конца в цепи той или иной траектории при векторном перемещении вещества через'экосистему. Во-вторых, они задействованы в процессе регуляции и определения количества вещества, вовлеченного в циклические межфазовые и межорганизменные переходы. И в-третьих, водные организмы - участники регуляции и определения количества химических элементов, длительное время удерживаемых в петлях циклических переходов (межфазовых и межорганизменных) внутри экосистемы (это очень важно, поскольку тем самым снижаются количество и концентрация соответствующих химических элементов во внешнем пространстве, вне экосистемы). Согласно традиционному видению трофической цепи, излагаемому во всех учебниках экологии, диоксид углерода поглощается водорослями и углерод переходит в их органическое вещество; затем атомы углерода перемещаются по пищевой цепи по маршруту фитопланктон - зоопланктон -рыбы или фитопланктон - донные моллюски-фильтраторы, то есть от начала к концу цепи. Но, как отмечалось, эта схема содержит элемент мифологии (она попросту неправильна в своей примитивной линейности), поскольку очень значительная часть атомов углерода оказывается в ловушке циклических траекторий, например: моллюски - экскретированные моллюсками пеллеты - бактерии - бактериопланктон - моллюски (и цикл замкнулся!). Из всего вышесказанного вытекает немаловажное следствие: гидробионты влияют на среднюю продолжительность удержания атомов биогенных элементов (в том числе углерода) в циклических процессах внутри экосистемы, что сказывается на длительности удержания химических элементов экосистемой в целом. Не случайно в трудах Вернадского прозвучала мысль о том, что жизнь очень неохотно отдает атомы вещества, захваченные вихрями ее круговоротов. Огромные сложности возникли в жизни русалочки Андерсена, пожелавшей нарушить привычное коловращение судеб океанических существ, - не потому ли, что система ревностно удерживала ее узами своих биогеохимических объятий? Таким образом, многие важные характеристики миграции элементов регулируются при участии организмов (автотрофных и гетеротрофных). При рассмотрении каждого из звеньев пищевой цепи выявляется, что соответствующие организмы участвуют в миграции элементов или в ее регуляции. Практически все биоразнообразие задействовано в этом. Очевидно, что существует связь между биологическим разнообразием (количеством видов, обилием организмов) и потенциальным многообразием процессов преобразования и перемещения вещества в экосистеме. Стало быть, сохранение биоразнообразия содействует сохранению способности экосистемы регулировать перемещения вещества и в той или иной мере долговременно удерживать атомы углерода и биогенных элементов внутри экосистемы. Положения, сформулированные в данной работе, еще раз подтверждают справедливость и адекватность обобщения В.И. Вернадского, считавшего, что "живое вещество ... геологически ... является самой большой силой в биосфере и определяет ... все идущие в ней процессы..." [15, с. 17]. Основные положения и выводы нашей работы согласуются с рядом других [6,11,19]. Думается также, что получены дополнительные основания рассматривать водную экосистему как аналог реторты алхимика, или, говоря более современным языком, биореактора, в котором происходят сложные превращения и перемещения веществ, причем последние зависят от биотических и небиотических факторов и находятся под их биокосным контролем. Подобно тому, как изучение и использование процессов, протекающих в биореакторе, называют биотехнологией, исследование и осуществление процессов перемещения веществ, протекающих в водной экосистеме и гидросфере, можно рассматривать как биогео-технологию. Выражаем надежду, что рассмотренные здесь особенности и закономерности структурирования потоков и перемещений химических элементов в водных экосистемах будут полезны при обсуждении вопросов количественной и теоретической гидробиологии, моделирования экосистем и разработке некоторых фундаментальных вопросов экологии. Мыслители древности пользовались выражением "мировой разум", концепция которого в явном либо в завуалированном, трансформированном виде присутствует во многих философских и религиозных учениях. С другой стороны, современные школы в области наук об управлении подчеркивают полезность оптимальной децентрализации управляющих элементов в сложных системах. В одной из них - системе разветвленных траекторий перемещений вещества в ближайшей к нам части космоса (на поверхности планеты Земля) - отчетливо видны многочисленные регулирующие и управляющие элементы - живые существа. Мы попытались осветить их роль в качестве диспетчеров и менеджеров в точках разветвления указанных траекторий. Все живые существа имеют собственные внутренние управляющие системы той или иной степени сложности. Не являются ли организмы носителями элементов децентрализованного мирового разума - в широком, метафорическом смысле? Если же отказаться от метафор, можно подытожить иначе. Сказанное выше детализирует современное понимание того, что В.И. Вернадский сформулировал как "химический аппарат биосферы, созданный и поддерживаемый в своей деятельности живым веществом" [ 16, с. 153]. Автор выражает благодарность М.Е. Виноградову, А.П. Лисицыну, А.П. Кузнецову, В.В. Малахову, Е.А. Криксунову, В.А. Абакумову, другим сотрудникам кафедры гидробиологии МГУ и РАН за критическое обсуждение некоторых затронутых здесь вопросов; Дж. Виддоузу, П. Донкину, Н. Вальцу, Н.Н. Колотиловой, М.П. Колесникову, Т. А. Остроумовой, Г.Е. Шульману, Г.А. Финенко, З.А. Романовой и другим сотрудникам ИНБЮМ за помощь в работе. Часть работы поддержана Open Society Institute (RSS) и Фондом Макартуров. ЛИТЕРАТУРА 1. Вернадский В.И. Химическое строение биосферы Земли и ее окружения. М.: Наука, 1965. 2. Шимараев М.Н., Куимова Л.Н., Синюкович В.Н., Цехановский В.В. О проявлении на Байкале глобальных изменений климата в XX столетии // Доклады АН. 2002. Т. 383. № 3. 3. Алимов А.Ф. Элементы теории функционирования водных экосистем. Спб.: Наука, 2000. 4. Винберг ГГ. Гидробиология // История биологии / Ред. Л.Я. Бляхер. М.: Наука, 1975. ВЕСТНИК РОССИЙСКОЙ АКАДЕМИИ НАУК том 74 № 9 2004 ГЕОХИМИЧЕСКИЙ АППАРАТ ВОДНЫХ ЭКОСИСТЕМ: БИОКОСНАЯ РЕГУЛЯЦИЯ 791 5. Виноградов М.Е., Шушкина Э.А. Функционирование планктонных сообществ эпипелагиали океана. М.: Наука, 1987. 6. Галимов Г.А., Кодина А.А. Ислледование органического вещества газов в осадочных толщах Мирового океана. М.: Наука, 1982. 7. Сущеня Л.М. Количественные закономерности питания ракообразных. Минск: Наука и техника, 1975. 8. Федоров В.Д. О методах изучения фитопланктона и его активности. М.: Изд-во МГУ, 1979. 9. Остроумов С.А. Водная экосистема: крупноразмерный диверсифицированный биореактор с функцией самоочищения воды // Доклады АН. 2000. Т. 374. № 3. 10. Израэлъ Ю.А., Цыбань А.В. Антропогенная экология океана. Л.: Гидрометеоиздат, 1989. 11. Лисицын А.П. Потоки вещества и энергии во внешних и внутренних сферах Земли // Глобальные изменения природной среды-2001 / Ред. Н.Л. Добрецов, В.И. Коваленко. Новосибирск: Изд-во СО РАН, филиал "Гео", 2001. 12. Матишов Д.Г., Матишов Г.Г. Радиационная экологическая океанология. Апатиты: Кольский научный центр РАН, 2001. 13. Wetzel R.G. Limnology: Lake and River Ecosystems. San Diego: Academic Press, 2001. 14. Остроумов С.А. Биологические эффекты при воздействии поверхностно-активных веществ на организмы. М.: МАКС-Пресс, 2001; Остроумов С.А., Колесников М.П. Биокатализ переноса вещества в микрокосме ингибируется контаминантом: воздействие ПАВ на Lymnea stagnalis // Доклады АН. 2000. Т. 373. № 2; Остроумов С.А., Колесников М.П. Пеллеты моллюсков в биогеохимических потоках С, N, P, Si, A1 // Доклады АН. 2001. Т. 379. № 3. 15. Вернадский В.И. Научная мысль как планетное явление. М.: Наука, 1991. 16. Вернадский В.И. Биосфера. М.: Изд. дом "Ноосфера", 2001. 17. Ostroumov S.A. Inhibitory analysis of top-down control: new keys to studying eutrophication, algal blooms, and water self-purification // Hydrobiologia. 2002. V. 469. 18. Виноградов М.Е., Шушкина Э.А., Копелевич О.В., Шербастов СВ. Фотосинтетическая продукция Мирового океана по спутниковым и экспедиционным данным // Океанология. 1996. № 4. 19. Заварзин Г.А. Бактерии и состав атмосферы. М.: Наука, 1984. ВЕСТНИК РОССИЙСКОЙ АКАДЕМИИ НАУК, том 74, №9, 2004
Keywords:
потоки углерода Вернадский В. И. модернизация концепций экологии элементы теории аппарата биосферы геохимические процессы связь экологии и биогеохимии роль организмов новая концепции биосферы биотическая регуляция миграции элементов геохимическая среда биогеохимия гидросфера,новая типология миграции элементов ;
**[less]
Geochemistry ×
Ecology ×
Environmental Science ×
Life Sciences ×
Biogeochemistry ×
V.I.Vernadsky ×
Ecosystems ×
biosphere ×
Concepts ×
Regulation ×
migration of chemical elements ×
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: Вернадский В. И. биогеохимия биосфера гидросфера миграция элементов новая регуляциябтипология
0
Добавить комментарий
AUG
24
Downloads of articles from Internet, in BRICS countries. Recently, the publications on ecology, environment, water attracted interest .
Downloads of articles from Internet, in BRICS countries.
Recently, the publications on ecology, environment, water attracted interest .
http://5bio5.blogspot.com/2014/08/downloads-of-articles-from-internet-in.html
Top universities downloaded the top papers on ecology, environment.
Key words:
Downloads, BRICS, countries, ecology, environment, water, South Africa, China, India, Russia,
**
More about the related publications that are available online free: http://5bio5.blogspot.com/2014/05/available-online-at-researchgate.html
Researchers downloaded the full-texts of the publications :
including the BRICS countries which downloaded the publications:
Russia: Lomonosov Moscow State University;
India: Shikshan Vikas Mandal's Shri. S.H. Kelkar College of Arts, Commerce And Science, Devgad;;
Council of Scientific and Industrial Research (CSIR), New Delhi;
Gujarat University;
China: Chinese Research Academy of Environmental Sciences;
South Africa: Cape Peninsula University of Technology,
Also , universities in other countries downloaded these articles. U.S.A., Italy, Belgium, Germany, Canada, Portugal, Poland, Philippines, Tunisia, France; Algeria; Egypt; et al. These papers are on research results obtained in Russia.
More detailed information on these downloads see:
http://5bio5.blogspot.com/2014/08/downloads-recently-interest-attracted.html
**
in Portuguese:
Downloads de artigos de Internet, nos países do BRICS.
Recentemente, as publicações sobre ecologia, meio ambiente, água atraiu o interesse.
As principais universidades baixado os melhores artigos sobre ecologia, meio ambiente.
**
Mais informações sobre as publicações disponíveis on-line gratuito: http://5bio5.blogspot.com/2014/05/available-online-em-researchgate.html
Pesquisadores baixado o full-textos das publicações:
incluindo os países do BRICS, que baixaram as publicações:
Rússia: Lomonosov Moscow State University;
Índia: Shri de Shikshan Vikas Mandal. S.H. Kelkar Faculdade de Artes, Comércio e Ciência, Devgad;;
Conselho de Pesquisa Científica e Industrial (CSIR), Nova Delhi;
Universidade Gujarat;
China: Academia Chinesa de Ciências Ambientais Research;
África do Sul: Cape Peninsula University of Technology,
Além disso, as universidades de outros países baixaram estes artigos. EUA, Itália, Bélgica, Alemanha, Canadá, Portugal, Polônia, Filipinas, Tunísia, França; Argélia; Egito; et ai. Esses papéis são em resultados de pesquisa obtidos na Rússia.
Informações mais detalhadas sobre estas transferências ver:
http://5bio5.blogspot.com/2014/08/downloads-recém-interesse-attracted.html
**
in Chinese:
从网上下载的文章,在金砖国家。
近日,在生态,环境的出版物,水吸引兴趣。
顶尖大学下载对生态顶部论文,环境。
**
更多关于相关的刊物,提供在线免费:http://5bio5.blogspot.com/2014/05/available - 在线-AT-researchgate.html
研究人员下载全文字的出版物:
其中包括下载的出版物金砖国家:
俄罗斯:莫斯科国立罗蒙诺索夫大学;
印度:Shikshan维卡斯曼德尔的至尊。 S.H。艺术科尔卡学院,商业和科学,Devgad;;
科学与工业研究委员会(CSIR),新德里的议会;
古吉拉特大学;
中国:中国环境科学研究院;
南非:技术的开普半岛大学,
此外,大学在其他国家下载这些文章。美国,意大利,比利时,德国,加拿大,葡萄牙,波兰,菲律宾,突尼斯,法国;阿尔及利亚;埃及;等。这些文件是在俄罗斯取得的研究成果。
这些下载的更多详细信息,请参阅:
http://5bio5.blogspot.com/2014/08/downloads,近期利益attracted.html
**
in Afrikaans:
Downloads artikels van die internet, in BRICS lande.
Onlangs het die publikasies oor die ekologie, omgewing, water gelok belang.
Top universiteite afgelaai die top vraestelle op ekologie, omgewing.
**
Meer oor die verwante publikasies wat beskikbaar is aanlyn gratis: http://5bio5.blogspot.com/2014/05/available-aanlyn-at-researchgate.html
Navorsers afgelaai die volle teks van die publikasies:
insluitend die BRICS-lande wat die publikasies afgelaai:
Rusland: Lomonosov Moscow State University;
Indië: Shikshan Vikas Mandal se shri. S.H. Kelkar Kollege van Kuns, handel en wetenskap, Devgad;;
Raad van die Wetenskaplike en Nywerheidsnavorsingsraad (WNNR), Nieu-Delhi,
Gujarat University;
China: Chinese Research Academy Omgewingswetenskappe;
Suid-Afrika: Kaapse Skiereiland Universiteit van Tegnologie,
Ook universiteite in ander lande afgelaai hierdie artikels. VSA, Italië, België, Kanada, Duitsland, Portugal, Pole, Filippyne, Tunisië, Frankryk; Algerië; Egipte; et al. Hierdie vraestelle is op navorsing resultate behaal in Rusland.
Meer inligting oor hierdie downloads sien:
http://5bio5.blogspot.com/2014/08/downloads-onlangs-rente-attracted.html
**
Опубликовано 3 days ago пользователем Dr Green
Ярлыки: BRICS China countries Downloads ecology environment India Russia South Africa water
0
Добавить комментарий
Архив блога
20141865
Август60
Июль336
Июнь276
Май281
Апрель307
Март265
Enviro.sci., 10 most viewed posts, recent 24 h; 31...
Enviro. sci. 5 most recent blog posts March 31, 20...
updated: 189 blog posts, September 2013, environme...
Enviro. sci. 164 posts, November 2013; ecology, en...
Enviro. sci. 260 posts, March: ecology, environmen...
bookmarked, upvoted today: environmental science a...
updated: Nobel Prize universities: interest in the...
Enviro. sci. Most viewed during 24 h, in countries...
Enviro. sci. 20 posts most viewed. Ecology, enviro...
Internet users: publication - THESE QUESTIONS WERE...
Internet users, colleagues - Angelica Arenas Rodr...
Links on environment, water. Of interest to Chines...
Updated: Best, top web sites with the key words (i...
Downloads. Enviro.sci. publications that attracted...
Enviro.sci.,10 most viewed to-day, 28.3.2014, vie...
Enviro.sci.: downloads in U.S.A., Italy, et al. F...
Цитировали публикации сотрудников МГУ в области эк...
Updated. New citations of scientists of Moscow Uni...
water phytoremediation, innovative technology for ...
Weekly stat update, researcher at Moscow State Uni...
Environmental science: many useful publications, r...
Downloads, Recently, these colleagues read these p...
80% of mankind are reading this. At the moment, mo...
Internet users liked this online publication on en...
Enviro. sci. December 2013, 165 posts. Ecology, e...
A-factor, Interesting innovation, Biology, Ecology...
enviro. sci., 212 posts, January 2014, ecology, pr...
Enviro. sci. 128 posts, February 2014; Ecology, sc...
Internet users liked this online publication recen...
232 blog posts March 2014 Environmental science
Enviro. sci. Most viewed at this moment: 28.3.2014...
Today, bookmarked, this publication: 2014, Mar...
upvoted: Environmental science, biology, protectio...
4 useful pages on Facebook. Environmental science,...
New citations of the article on nanotoxicology: Os...
Notification from Internet. New citation of the bo...
Recent blog posts on environmental science, protec...
U.S. Scientist bookmarked this article - ecology, ...
16 Researchers downloaded these full-texts recentl...
Most viewed, March 26, 2014; nature conservation, ...
Most viewed at the moment: ecology, environment, n...
updated: Water quality and self-purification. Inno...
updated: review: 25 achievements: environmental sc...
updated: Biocontrol of Water Quality: Multifuncti...
40 publications. Moscow University. environmental...
nice pictures of nature and recent posts on enviro...
blog posts on 25 publications, ecology, environmen...
Scopus. Environmental science. Part 4. Tags: en...
Scopus. environmental sci. Part 3. Tags: water qua...
Scopus. Environmental sci. Part 2. Hazards, pollu...
Researchers who downloaded these full-texts on env...
Scopus. Environmental Sci. Part 1. Publications, s...
Bookmarked. Articles, ecology, environmental scien...
In Japanese: ;選択したムール貝、二枚貝、水産養殖、底生生物、底生生物:キーワードと記事...
In Swedish. artiklar med nyckelord : musslor, muss...
in German. Artikel mit Schlüsselwörtern : Miesmusc...
in Italian. Articoli con le parole chiave : cozze,...
Useful 18-page sum of top Springer articles on som...
articles with key words: mussels, bivalves, aquacu...
Researchers (Germany, Russia, Poland, Brazil, Roma...
Most viewed this week, 10 blog posts, environmenta...
Internet is interested in; downloaded: 10 selected...
Most viewed today, environmental, environment, Mar...
Most viewed at the moment, environmental science, ...
Evaluation: A landmark study, impeccably researche...
Review of the article: The Functions of Living Sub...
Most viewed at the moment, environmental science, ...
book entitled: Conservation of Living Nature and R...
Reviews of book: Biological Effects of Surfactants...
Published reviews of book: Biological Effects of S...
Reviews (favorable) of book: Conservation of Livin...
New softcover reprint of the classical book on con...
10 selected publications on ecology, protection of...
Review of article: The Functions of Living Substan...
Notification from Internet. Citation of the blog p...
Very recent blog posts: environmental science, eco...
Internet users, international scientists bookmarke...
БИОТЕСТИРОВАНИЕ ВОД, СОДЕРЖАЩИХ ПАВ ( СУЛЬФАНО...
Ostroumov S.A., Semykina N.A. Response of seedling...
212 blog posts January 2014; environmental science...
128 blog posts, February 2014, environmental scien...
183 blog posts, March 2014, Springer, most viewed,...
The best international library catalog system (ww...
Reviews of articles on ecology, environmental scie...
Articles, ResearchGate: environment, ecology, biol...
Review of the article: On the Biotic Self-purific...
Explanation, FAQ on the paper: On the Biotic Self-...
Review: The Hazard of a Two-Level Synergism of Syn...
Review: Effect of Amphiphilic Chemicals on Filter-...
Explanation of the novelty, innovations in the sci...
updated, see: Concise summary of scientific result...
Internet users liked these scientific results on i...
Ecology, Springer publications, Second group of ar...
Ecology, Springer publications, selected articles....
papers, second group. Ecology, environment. Spring...
First pages of 6 selected papers published in Spri...
22 publications available online free, Springer j...
16 publications made available, full texts online ...
updated: 220 Articles available at ResearchGate: I...
ResearchGate: 3 TOP PUBLICATION VIEWS, - ECOLOGY,...
Most viewed at the moment, environmental science, ...
Article: On the Multifunctional Role of the Biota...
useful book, environmental safety, short comments...
Most viewed after the referendum in Crimea, Ukrain...
IN UKRAINIAN LANGUAGE: Україна. Цитування книг, п...
Ukraine. Citation of books, publications authored ...
10 most viewed posts - environment, ecology - on t...
Citation of the paper: Inhibitory analysis of top-...
A LARGER LIST OF RECENT POSTS: ecology, environmen...
Recent posts: downloads; links useful to scientist...
The third part of the list of 91 publications ment...
Second part of the list of 91 publications mention...
30 of 91 publications mentioned in the internation...
In Ukrainian. Корисно для вчених , дослідників , в...
Recent downloads. Environm. Sci.; March 16, 2014.
In Dutch: Nuttig voor wetenschappers , onderzoeker...
In Swedish: Användbar för vetenskapsmän, forskare ...
In Spanish. Útil para científicos, investigadores,...
In Italian. Utile per scienziati, ricercatori, pro...
In French. Utile pour les scientifiques, chercheur...
In Croatian. Korisno znanstvenika, istraživača, pr...
In Chinese, trad. 有用的科學家,研究人員,教授,學生,專業人士。在線免費。生態學,...
In Chinese: 有用的科学家,研究人员,教授,学生,专业人士。在线免费。生态学,环境科学,生...
Recent blog posts of March 15, 2014; environmenta...
updated 16.03.2014: Useful to scientists, research...
most viewed, 834 views during 24 hours, March 15, ...
In Chinese, in English: 出版物的发现,证实和解释生态系统功能的水体自净的作用...
In Japanese. 発見を実証し、水自浄における生態系の機能の役割と重要性を説明出版物。
In Spanish. Las publicaciones que descubrieron , d...
In Italian. Pubblicazioni che hanno scoperto, hann...
In French. Publications qui ont découvert , pour d...
Top institutions, Europe, N. America, S. America, ...
1603 citations of scientific publications of this ...
Phytotoxicity of a surfactant-containing product t...
The significant, important role of this book in mo...
book was cited in journal with Impact Factor 41; ...
Basque language, Euskal hizkuntza Zientzialari, ik...
Azerbaijani. Alimlər, tədqiqatçılar, professorlar ...
Armenian. Օգտակար գիտնականների, հետազոտողների, դաս...
Arabic. مفيدة للعلماء والباحثين و الأساتذة والطلاب...
Afrikaans. Nuttige wetenskaplikes, navorsers, prof...
Belarusian. Карысна для навукоўцаў , даследчыкаў ,...
Bengali. বাংলা ভাষা . বিজ্ঞানী, গবেষক, অধ্যাপক, ছা...
Bosnian, Bosanski jezik . Korisni naučnicima , ist...
Useful to scientists, researchers, professors, stu...
128 posts, environmental, February 2014, 128 blog ...
Weekly stats update at ResearchGate, a researcher ...
80% of mankind. Countries that represent 80% of ma...
Environment sci., 18 very recent blog posts, with ...
New 115 posts on environmental science, ecology, w...
Recent downloads from web, Updated: March 15, 2014...
On the book ‘Biological Effects of Surfactants’, m...
This online publication was liked. Environmental s...
updated: Full texts of 100+ publications. Environm...
Downloads: Attention, interest attracted. These un...
Downloads, most used, Environment sci. Most recent...
Публикации 2013, 2012, 2011, экология, науки об ок...
17 new citations of publications on ecology, envir...
20 most cited publications, ecology, environmental...
Most viewed. Environmental science, new, ecology, ...
Häufige Fehler bei der Beurteilung der Gesundheit ...
In German. On a new citation. Mitteilung von Inter...
in French. New citation. Notification à partir d'I...
Notification from Internet, new citation, article ...
Independent Internet user liked this. (Environment...
In Dutch, key words: sleutelwoorden , tags voor de...
In Chinese: key words: 关键词,标签为的一系列重要科学出版物: 生态学,环境...
In Japanese: key words: 重要な科学的出版物のシリーズのためのキーワード、タグ...
In Swedish: nyckelord, taggar för rad viktiga vete...
In Spanish: palabras clave, etiquetas para la seri...
Schlüsselworte , Tags für die Reihe von wichtigen ...
Parole chiave , tag per la serie di importanti pub...
écologie, sciences de l'environnement: mots clés, ...
Papers on water self-purification. The key words, ...
INNOVATIVE article: On the biotic self-purificatio...
key words, tags for the series of important scient...
Ecosystem health assessment: Explanation: Common m...
Publications which discovered, demonstrated and e...
930 views during 24 h, March 11, Environmental sci...
Short list of recent posts on citation of articles...
files, links, enviro. sci. at Sites.Google.com
Full texts of some publications. Environmental sc...
Improved format of the post. Many files. Environme...
Many files. Environmental science, toxicology, aqu...
Cited these publications on environmental science,...
Environmental sci.: Recent new and updated posts.
The list of recent blog posts on environmental sci...
2014, March. Online, 73 useful links, blog posts, ...
2014, March. Online, 73 useful links, blog posts, ...
73 blog recent posts in 2014: environmental scienc...
73 Environmental science posts in March 2014; also...
2014, March, 73 blog posts: environmental science,...
Internet users liked it. The Internet users liked ...
Citation of papers, books on ecology, environmenta...
Electronic resource: Papers, 2009-2013, on ecology...
220 Articles available at ResearchGate: Innovation...
1 074 views; recent 24 hours, 08.03.2014 9:00 – 0...
Most viewed, recent week, March 9, 2014, environme...
Ecology, environmental science top publications, a...
ONLINE ARTICLES at ResearchGate, ENVIRONMENTAL SCI...
Approval by independent Internet user, Tweet got f...
made available online free. Article: Biogenic cop...
Environmental science, Part 11, ResearchGate. Bioc...
Environmental science, Part 10, ResearchGate. cont...
Environmental science, Part 9, ResearchGate. Anthr...
Environmental sci., Part 8, ResearchGate. aquatic,...
Many recent blog posts: Environmental Sci., Ecolog...
Environmental science. Academia 5. Articles at Aca...
Environmental science. Academia 4. Articles at Aca...
Environmental science. Academia. 3. Articles at A...
Environmental sci., ecology, biol. Academia. 2. Ar...
Environmental Sci., Ecology, Biol. Academia 1. Art...
Environmental sci., full-texts downloaded recently...
Environmental sci., Researchers who downloaded th...
Environmental science, Publication views at Resear...
Environmental science. Part 7. Biological effects ...
Environmental science. Part 6. Top articles, lists...
Environmental science. Part 5. Top articles, lists...
Selected links, environmental science
on facebook, these pages, groups are recommended: ...
2000+ times these articles were used. Environmenta...
2,019 times these publications -environmental scie...
Availability in libraries, U.S., Russia, U.K., Ger...
Internet users liked it. Diana Manjarrez, Professo...
On the Article titled: The concept of aquatic biot...
The colleagues who liked the online publication on...
1154 views, 28.02.2014, 11:00 – 07.03.2014, 10...
New recent posts, environmental science, ecology, ...
Citation. 2 of publications (of the series of env...
Approval of Internet users. They approved the publ...
List of many posts, links. Environmental sci., eco...
List of posts, links. Environmental sci., ecology,...
Many recent posts on environmental science, with k...
10 Most viewed posts: 941 views during 24 hours, ...
Internet users liked this: new facts: phytotoxici...
Environmental science. Part 4. Top articles, lists...
Citation of Article: Some aspects of water filteri...
U.S., U.K., Britain, England, France, Germany, Swi...
Citation. Part 3. Environment, biology. ResearchGa...
Citation. Part 2. Environment, biology. Researchga...
Twitter. Interest to, approval of results of envir...
10 most viewed, blog posts, environmental science,...
Approval, interest of Internet users, articles on ...
1,974 Downloads. These publications on environment...
These publications were upvoted, requested at Rese...
Publications that were bookmarked recently online,...
Citation of some papers, books on environmental sc...
Internet user liked this. César Saldaña liked it: ...
Environmental sciences. Part 3. 17 Innovationen.Ge...
Environmental science, Part 2, ResearchGate. Links...
Environmental science, links, ResearchGate. Concis...
The Internet users liked these publications online...
Most viewed, 4 March, 2014; environmental science,...
Recent blog posts: environmental toxicology, ecoto...
Updated,14 publications: environmental science and...
In Italian, and English. useful bibliography, envi...
articles on ecology, environmental science, protec...
10 most viewed blog posts, recent 24 hours, 02.03....
Interest attracted to these papers on ecology, env...
10 web pages viewed most often during recent 24 h,...
Environmental science. Viewed most often, most vie...
Introduction to Biochemical Ecology; Vvedenie v bi...
scoperte, ecologia, ambiente, innovazioni, sicurez...
Very Concise summary of scientific results. Discov...
summary, scientific discoveries, innovations in ec...





