Detritus: Russian Journal of General Chemistry; December 2017, Volume 87, Issue 13, pp 3244–3249; Cite as: Issues of the Study of Detritus in Aquatic Systems; available online free: https://www.researchgate.net/publication/322676675 ; Authors: A. P. Sadchikov, S. A. Ostroumov, https://5bio5.blogspot.com/2018/03/detritus.html




Russian Journal of General Chemistry;
, Volume 87, Issue 13, pp 3244–3249; | Cite as:

Issues of the Study of Detritus in Aquatic Systems,

available online free: 

https://www.researchgate.net/publication/322676675 ;


  • A. P. Sadchikov,
  • S. A. Ostroumov,
  •  https://5bio5.blogspot.com/2018/03/detritus.html
  • A. P. Sadchikov
    • 1
  • S. A. Ostroumov
    • 1
  1. 1.Faculty of Biology, Moscow State University, Moscow, Russia
Article
  • 1 Downloads



Abstract

In this paper, we present the analysis of the ecological roles of detritus and suspended particulate matter in aquatic ecosystems. New data that have been obtained for freshwater ecosystems of the central part of Russian Federation (Moscow Region, e.g., Mozhaiskoe Reservoir) have been included in the analysis. These new data include the results of studies of samples of water and detritus from the aquatic ecosystems. The review analysis addresses both freshwater and marine ecosystems. The multifunctional important role of detritus in aquatic ecosystems has been shown and exemplified using data for aquatic bodies of different trophic level, from oligotrophic to eutrophic.

Keywords:

detritus, aquatic, ecosystems, particulate organic matter, particulate organic carbon, freshwater ecosystems, marine ecosystems, ocean, oligotrophic, mesotrophic, eutrophic, 




References

  1. 1.
    Vernadskii, V.I., Biosfera (Biosphere), Moscow: Noosfera, 2001.Google Scholar
  2. 2.
    Vernadskii, V.I., Trans. Conn. Acad. Arts Sci., 1944, vol. 35. p. 483.Google Scholar
  3. 3.
    Dobrovol’skii, G.V., Ekol. Khim., 2007, vol. 16, no. 3, p. 135. https://www.researchgate.net/publication/264974919.Google Scholar
  4. 4.
    Dobrovol’skii, G.V., Voda: Tekhnol. Ekol., 2007, no. 1, p. 63.Google Scholar
  5. 5.
    Sushchenya, L.M., Gidrobiol. Zh., 1968, vol. 4, no. 2, p. 77.Google Scholar
  6. 6.
    Ostapenya, A.P., in Obshchie osnovy izucheniya vodnykh ekosistem (General Principles of the Study of Aqueous Ecosystems), Leningrad: Nauka, 1979, p. 257.Google Scholar
  7. 7.
    Ostapenya, A.P., in Produktsionno-gidrobiologicheskie issledovaniya vodnykh ekosistem (Product-Hydrobiological Studies of Aqueous Ecosystems), Leningrad: Nauka, 1987, p. 109.Google Scholar
  8. 8.
    Finenko, Z.Z., in Problemy morskoi biologii (Problems of Marine Biology), Kiev: Naukova Dumka, 1971, p. 214.Google Scholar
  9. 9.
    Connelly, T.L., Businski, T.N., Deibel. D., Parrish, C.C., and Trela, P., Coastal and Shelf Sci., 2016, vol. 181, p. 170.Google Scholar
  10. 10.
    Talarmin, A., Lomas, M.W., Bozec, Y., Savoye, N., Frigstad, H., Karl, D.M., and Martiny, A.C., Global Biogeochem. Cycles, 2016 vol. 30, no. 11, p. 1699.CrossRefGoogle Scholar
  11. 11.
    Hermes, A.L. and Sikes, E.L., Coastal and Shelf Sci., 2016, vol. 180, p. 179.CrossRefGoogle Scholar
  12. 12.
    Bayarsaikhan, U., Ruhl, A.S., and Jekel, M., Sci. Total Environ., 2016, vol. 571, p. 269.CrossRefGoogle Scholar
  13. 13.
    Khailov, K.M., Ekologicheskii metabolizm v more (Ecological Metabolism in the Sea), Kiev: Naukova Dumka, 1971.Google Scholar
  14. 14.
    Kulikov, A.S., Sadchikov, A.P., and Maksimov, V.N., Biol. Nauki, 1990, no. 8, p. 85.Google Scholar
  15. 15.
    Sadchikov, A.P., Bull. Univ. Agricult. in Prague, 1989, no. 4, p. 72.Google Scholar
  16. 16.
    Kulikov, A.S., Sadchikov, A.P., and Maksimov, V.N., Mikrobiol. Zh., 1989, vol. 51, no. 5, p. 7.Google Scholar
  17. 17.
    Ostroumov, S.A. and Demina, L.L., Ekol. Promyshl. Proizv., 2010, no. 2, p. 53.Google Scholar
  18. 18.
    Ostroumov, S.A. and Demina, L.L., Ekol. Sist. Pripor., 2009, no. 9, p. 42.Google Scholar
  19. 19.
    Ostroumov, S.A., Ecol. Studies, Hazards, Solutions, 2010, vol. 16, p. 62.Google Scholar
  20. 20.
    Ostroumov, S.A. and Kolesov, G.M., Sibir. Ekol. Zh., 2010, no. 4, p. 525. https://www.researchgate.net/publication/259484692; http://www.scribd.com/doc/54994042.Google Scholar
  21. 21.
    Ostroumov, S.A. and Kolesov, G.M., Izv. Samar. Nauch. Tsentra Ross. Akad. Nauk, 2010, vol. 12, no. 1, p. 153.Google Scholar
  22. 22.
    Ostroumov, S.A., Kolesov, G.M., and Moiseeva, Yu.A., Voda: Khim. Ekol., 2009, no. 8, p. 18.Google Scholar
  23. 23.
    Ermakov, V.V., Karpova, E.A., Korzh, V.D., and Ostroumov, S.A., in Innovatsionnye aspekty biogeokhimii (Innovative Aspects of Biogeochemistry), Moscow: GEOKHI Ross. Akad. Nauk, 2012, p. 103. https://www.researchgate.net/publication/301683889.Google Scholar
  24. 24.
    Ostroumov, S.A., Ekol. Promyshl. Proizv., 2012, no. 1, p. 26.Google Scholar
  25. 25.
    Ostroumov, S.A., Demina, L.L., Kolesov, G.M., Shestakova, T.V., Soldatov, A.A., Toderash, I.K., and Zubkova, E.I., Materialy biogeokhimicheskikh chtenii pamyati V.V.Koval’skogo (Proc. of Biogeochemical Readings of the memory of V.V. Kovalskii), Moscow: GEOKHI Ross. Akad. Nauk, 2010, p. 152.Google Scholar
  26. 26.
    Ostroumov, S.A. and Kolesov, G.M., Ekol. Sist. Pripor., 2009, no. 10, p. 37.Google Scholar
  27. 27.
    Ostroumov, S.A. and Kolesov, G.M., Voda: Khim. Ekol., 2009, no. 10, p. 36.Google Scholar
  28. 28.
    Ostroumov, S.A., Kolesov, G.M., Dokl. Akad. Nauk, 2010, vol. 431, no. 4, p. 566. https://www.researchgate.net/publication/301693440; http://www.scribd.com/ doc/54991990/.Google Scholar
  29. 29.
    Johnson, M.E., Ostroumov, S.A., Tyson, J.F., and Xing, B., Russ. J. Gen. Chem., 2011, vol. 81, no. 13, p. 2688. doi 10.1134/S107036321113010XCrossRefGoogle Scholar
  30. 30.
    Ostroumov, S.A., Ecologica, 2011, vol. 18, no. 62, p. 129.Google Scholar
  31. 31.
    Ostroumov, S.A., Ekol. Khim., 2011, vol. 20(3), p. 179.Google Scholar
  32. 32.
    Volkman, J.K. and Tanoue, E., J. Oceanograph., 2002, vol. 58(2), p. 265.CrossRefGoogle Scholar
  33. 33.
    Thurman, E.M., Organic Geochemistry of Natural Waters, Dordrecht: Springer, 2012.Google Scholar
  34. 34.
    Lee, C., Wakeham, S., and Arnosti, C., J. Human Environ., 2004, 33, no. 8, p. 565. doi 10.1579/0044-7447-33.8.565CrossRefGoogle Scholar
  35. 35.
    Ostroumov, S.A., Johnson, M.E., Tyson, J.F., and Xing, B., Russ. J. Gen. Chem., 2015, vol. 85, no. 13, p. 2929. doi 10.1134/S1070363215130083CrossRefGoogle Scholar
  36. 36.
    Aizatullin, T.A., in Biokhimicheskaya termodinamika morskikh pribrezhnykh ekosistem (Biochemical Thermodynamics of Marine Coastal Ecosystems), Kiev: Naukova Dumka, 1974, p. 138.Google Scholar
  37. 37.
    Romanenko, V.I., Mikrobiologicheskie protsessy produktsii organicheskogo veshchestva vo vnutrennikh vodoemakh (Microbiological Processes of Production of Organic Matter in Inland Waters), Leningrad: Nauka, 1985.Google Scholar
  38. 38.
    Sadchikov, A.P., in Vliyanie antropogennykh faktorov na strukturu i funktsionirovanie biogeotsenozov (The Influence of Anthropogenic Factors on the Structure and Functioning of Biogeocenoses), Kalinin: Kalininskii Univ., 1981, p. 3.Google Scholar
  39. 39.
    Sadchikov, A.P., in Biotsenozy mezotrofnogo ozera Glubokoe (Biocenoses of the Mesotrophic Lake Glubokoe), Moscow: Nauka, 1983, p. 181.Google Scholar
  40. 40.
    Gutel’makher, B.L., Sadchikov, A.P., and Filippova, T.G., Itogi Nauki Tekhniki, VINITI. Ser: Obshch. Ekol., Biotsenol., Gidrobiol., 1988, vol. 6.Google Scholar
  41. 41.
    Seki, K.Kh., Organicheskoe veshchestvo v vodnykh ekosistemakh (Organic Matter in Aqueous Ecosystems), Leningrad: Goskomgidromet, 1986.Google Scholar
  42. 42.
    Aizatullin, T.A. and Khailov, K.M., Okeanol., 1972, vol. 12, no. 5, p. 808.Google Scholar
  43. 43.
    Sadchikov, A.P., Kozlov, O.V., and Holod, A., Biol., 1992, no. 47. no. 6, p. 497.Google Scholar
  44. 44.
    Sadchikov, A.P., Frenkel’, O.A., Dmitrovskii, L.G., and Eremin, S.A., Gidrobiol. Zh., 1993, vol. 29, no. 3, p. 71.Google Scholar
  45. 45.
    Sadchikov, A.P. and Kanikovskaya, A.A., Mikrobiol. Zh., 1984, vol. 46, no. 4, p. 10.Google Scholar
  46. 46.
    Sadchikov, A.P., Kulikov, A.S., and Maksimov, V.N. Biol. Nauki, 1990, no. 3, p. 79.Google Scholar
  47. 47.
    47. Zaitsev, Yu.P., in Programma i metodika izucheniya biogeotsenozov morskoi sredy (Program and Methods of Studying the Biogeocoenosis of the Marine Environment), Moscow: Nauka, 1970, p. 126.Google Scholar
  48. 48.
    Sadchikov, A.P., Produktsiya fitoplanktona ozera Glubokoye (Phytoplankton production of Lake Glubokoe), no. 520–79.Google Scholar
  49. 49.
    Sadchikov, A.P., Cand. Sci. (Biol.) Dissertation, Moscow, 1980.Google Scholar
  50. 50.
    Gilyarov, A.M., Chekryzheva, T.A., and Sadchikov, A.P., Gidrobiol. Zh., 1979, vol. 15, no. 4, p. 10.Google Scholar
  51. 51.
    Sadchikov, A.P., Chekryzheva, T.A., and Kolosov, V.R., Gidrobiol. Zh., 1983, vol. 19, no. 5, p. 27.Google Scholar
  52. 52.
    Sadchikov, A.P., Chekryzheva, T.A., and Kolosov, V.R., in Vzaimootnosheniya komponentov biogeotsenozov v yuzhno-taezhnykh landshaftakh (Mutual Relations of Components of Biogeocoenoses in the Southern Taiga Landscapes), Kalinin: Kalinin. Univ., 1984, p. 122.Google Scholar
  53. 53.
    Sadchikov, A.P. and Kulikov, A.S., Inform. Byull. Biol. Vnutr. Vod Akad. Nauk SSSR, 1990, no. 85, p. 34.Google Scholar
  54. 54.
    Sadchikov, A.P. and Kulikov, A.S., Gidrobiol. Zh., 1990, vol. 26, no. 6, p. 13.Google Scholar
  55. 55.
    Sadchikov, A.P. and Kulikov, A.S., Biol. Nauki, 1992, no. 7, p. 29.Google Scholar
  56. 56.
    Sadchikov, A.P. and Kulikov, A.S., Gidrobiol. Zh., 1992, vol. 28, no. 5, p. 16.Google Scholar
  57. 57.
    Sadchikov, A.P and Anufriev, V.A., Biol. Nauki, 1991, no. 11, p. 67.Google Scholar
  58. 58.
    Sadchikov, A.P., Doctoral (Biol.) Dissertation, Moscow, 1997.Google Scholar
  59. 59.
    Kulikov, A.S., Sadchikov, A.P., and Maksimov, V.N., Rastvorennoe organicheskoe veshchestvo i ego transformatsiya bakterial’nym soobshchestvom (Dissolved Organic Matter and Its Transformation by the Bacterial Community), no. 6557-B87.Google Scholar
  60. 60.
    Aizatullin, T.A., Lebedev, V.L., and Khailov, K.M., Okean, fronty, dispersii, zhizn’ (Ocean, Fronts, Dispersions, and Life), Leningrad: Gidrometeoizdat, 1984.Google Scholar
  61. 61.
    Sadchikov, A.P. and Frenkel’, O.A., Inform. Byull. Biol. Vnutr. Vod Akad. Nauk SSSR, 1990, no. 89, p. 81.Google Scholar
  62. 62.
    Zvyagintsev, D.G., Vzaimodeistvie mikroorganizmov s tverdymi poverkhnostyami (Interaction of Microorganisms with Solid Surfaces), Moscow: Mosk. Gos. Univ., 1983.Google Scholar
  63. 63.
    Khorn, R., Morskaya khimiya (struktura vody i khimiya gidrosfery) [Marine Chemistry (Water Structure and Hydrosphere Chemistry)], Moscow: Mir, 1972.Google Scholar
  64. 64.
    Alimov, A.F., Elementy teorii funktsionirovaniya vodnykh ekosistem (Elements of the Theory of the Functioning of Aqueous Ecosystems), St. Petersburg: Nauka, 2000.Google Scholar
  65. 65.
    Ostroumov, S.P., Dokl. Akad. Nauk, 2004, vol. 396, no. 1, p. 136. https://www.researchgate.net/publication/265294672.Google Scholar
  66. 66.
    Ostroumov, S.P., Usp. Sovr. Biol., 2004, vol. 124, no. 5, p. 429. https://www.researchgate.net/publication/ 269764796; https://www.researchgate.net/publication/ 294721461.Google Scholar
  67. 67.
    Ostroumov, S.P., Ekologiya, 2005, no. 6, p. 452. https://www.researchgate.net/publication/266736000.Google Scholar
  68. 68.
    Ostroumov, S.A., Gidrobionty v samoochishchenii vod i biogennoi migratsii elementov (Hydrobionts in Self- Purification of Waters and Biogenic Migration of Elements), Moscow, MAKS-Press, 2008. https://www.researchgate.net/publication/266200066; ISBN: 978-5-317-02625-7.Google Scholar
  69. 69.
    Ostroumov, S.A., Vvedenie v biokhimicheskuyu ekologiyu (Introduction to Biochemical Ecology), Moscow: Mosk. Gos. Univ., 1986. https://www.researchgate.net/publication/259800839.Google Scholar
  70. 70.
    Telitchenko, M.M. and Ostroumov, S.A., Vvedenie v problemy biokhimicheskoi ekologii: biotekhnologiya, sel’skoye khozyaistvo, okhrana sredy (Introduction to the Problems of Biochemical Ecology: Biotechnology, Agriculture, Environmental Protection), Moscow:Google Scholar

Copyright information

© Pleiades Publishing, Ltd. 2017

About this article

Cite this article as:
Sadchikov, A.P. & Ostroumov, S.A. Russ J Gen Chem (2017) 87: 3244. https://doi.org/10.1134/S1070363217130199

**
Other papers on detritus:
The Role of Biodetritus in Accumulation of Elements in Aquatic Ecosystems: https://www.researchgate.net/publication/225471572; DOI: 10.1134/S1995425510040016; [bottom sediments, gold, uranium];
  • August 2010
  • Contemporary Problems of Ecology 3(4):369-373
  • DOI
  • 10.1134/S1995425510040016