DOI QR코드

DOI QR Code

The Use of the Brown Algae Sargassum spp. in Heavy Metal Monitoring of the Marine Environment near Vladivostok, Russia

  • Khristoforova, N.K. (Far Eastern State University) ;
  • Kozhenkova, S.I. (Pacific Geographical Institute)
  • Published : 2002.12.31

Abstract

Concentrations of Fe, Mn, Zn, Cu, Pb and Cd in two seaweed species (Sargassum miyabei and S. pallidum) from different areas in Amursky Bay near Vladivostok were determined. An assessment of heavy metal pollution in this bay was made and the results were compared with those from some localities in the world ocean.

Keywords

References

  1. Anikiev, V.V. and S.A. Perepelitsa. 1995. Estimation of trace element fluxes in the coastal zone of the Japan Sea. Geochemistry, 3, 415-425 (In Russian).
  2. Anikiev, V.V., S.A. Perepelitsa, and E.N. Shumilin. 1993. Estimation of influence of antropogenic and natural sources on spatial distribution of heavy metals in bottom sediments of Peter the Great Bay (Sea of Japan). Geochemistry, 9, 1328-1340 (In Russian).
  3. Bryan, G.W. 1980. Recent trends in research on heavy-metal contamination in the sea. Helgolander Meeresuntersuchungen, 33, 6-25. https://doi.org/10.1007/BF02414731
  4. Chernova, E.N., V.Yu. Kavun, and N.K. Khristoforova. 1988. The evaluation of chemico-ecological conditions in the areas of mollusks cultivation by the trace element content of Mytilus edulis. Russian J. Marine Biol., 4, 71-74.
  5. Elyakov, G.B. ed. 1993. The Long-Term Program of Environment Protection and Rational Use of Natural Resources in the Primorskii Krai until 2005 Year (the Ecological Program). Part 2. FEB RAS, Vladivostok, 301 p (In Russian).
  6. Ganesan, M., R. Kannan, K. Rajendran, C. Govindasamy, P. Sampathkumar, and L. Kannan. 1991. Trace metal distribution in seaweeds of the Gulf of Mannar, Bay of Bengal. Marine Poll. Bull., 22, 205-207. https://doi.org/10.1016/0025-326X(91)90472-5
  7. Ishii, T., H. Suzuki, and T. Koyanagi. 1978. Determination of trace elements in marine organisms. I. Factors for variation of trace elements. Nippon Suisan gakkaishi. Bull. Japanese Soc. Scientific Fisheries, 44, 155-162. https://doi.org/10.2331/suisan.44.155
  8. Jayasekera, R. and M. Rossbach. 1996. Use of seaweeds for monitoring trace elements in coastal waters. Environmental Geochemistry and Health, 18, 63-68. https://doi.org/10.1007/BF01771133
  9. Khristoforova, N.K. 1989. Bioindication and Monitoring of Sea Water Pollution by Heavy Metals. Nauka, Leningrad, 192 p (In Russian).
  10. Khristoforova, N.K., N.N. Bogdanova, and L.M. Tolstova. 1983a. Mineral composition of Pasific sargasso weeds with respect to the problem of monitoring of water pollution. Oceanology, 23, 270-275 (In Russian).
  11. Khristoforova, N.K., Hiu Dinh Nguyen, V.M. Shulkin, N.N. Bogdanova, and L.M. Maslova. 1983 b. Comparison of mineral composition of sargasso weeds from Japan and South China Seas. Russian J. Marine Biol., 3, 48-54.
  12. Khristoforova, N.K. and V.F. Przhemenetskaya. 1999. Sargassaceae as promoting objects for sanitary mariculture. p. 335-341. In: Proceedings of the International Symposium "Earth-Water-Humans". Kanazawa University, Kanazawa.
  13. Khristoforova, N.K., V.M. Shulkin, V.Yu. Kavun, and E.N. Chernova. 1994. Heavy Metals in Wild and Cultured Species of Marine Mollusks in Peter the Great Bay. Dalnauka, Vladivostok, 296 p (In Russian).
  14. Kureishy, T.W. 1991. Heavy metals in algae around the coast of Qatar. Marine Poll. Bull., 22, 414-416. https://doi.org/10.1016/0025-326X(91)90347-U
  15. Mesmar, M.N. 1988. Levels of zinc, cadmium and lead in some marine algae from Aquaba Red Sea. Acta Biologica Hungarica, 39, 345-349.
  16. Petrov, Yu. 1968. Genus Sargassum in the Far Eastern seas of the USSR. p. 42-48. In: Novosti Sistematiki Nizshikh Rastenii. Botanical Institute, Leningrad (In Russian).
  17. Phillips, D.J.H. 1980. Quantative Aquatic Bioligical Indicators. Elsevier, London, 488 p.
  18. Phillips, D.J.H. 1977. The use of biological indicator organisms to monitor trace metal pollution in marine and estuarine environments a review. Environmental Pollution, 13, 381-417.
  19. Shulkin, V.M. and V.Ya. Kavun. 1995. The use of marine bivalves in heavy metal monitoring near Vladivostok, Russia. Marine Poll. Bull., 31, 330-333. https://doi.org/10.1016/0025-326X(95)00169-N
  20. Tkalin, A.V. 1992. Bottom sediment pollution in some coastal areas of the Japan Sea. Ocean Res., 14, 71-75. https://doi.org/10.1016/0141-1187(92)90017-E
  21. Tkalin, A.V., T.S. Lishavskaya, and V.M. Shulkin. 1998. Radionuclides and trace metals in mussels and bottom sediments around Vladivostok, Russia. Marine Poll. Bull., 36. 551-554. https://doi.org/10.1016/S0025-326X(98)00030-7
  22. Vaschenko, M.A., L.N. Luchsheva, P.A. Zhadan, N.N. Belcheva, I.G. Syasina, and A.V. Silina. 1999. Evaluation of ecological situation in Alekseev Bay (Peter the Great Bay, Sea of Japan) by biological and biogeochemical indices. Russian J. Marine Biol., 2, 96-97.

Cited by

  1. Determination of the background ranges of trace metals in the brown alga Sargassum pallidum from the Northwestern Sea of Japan vol.38, pp.3, 2012, https://doi.org/10.1134/S1063074012030030
  2. Brown algae (Phaeophyta) for monitoring heavy metals at the Sudanese Red Sea coast 2017, https://doi.org/10.1007/s13201-017-0529-1
  3. Microelement composition of the green alga Ulva fenestrata from Peter the Great Bay, Sea of Japan vol.32, pp.5, 2006, https://doi.org/10.1134/S106307400605004X
  4. Monitoring heavy-metal pollution of the coastal waters of Amursky Bay (Sea of Japan) using the brown alga Sargassum miyabei Yendo, 1907 vol.41, pp.5, 2015, https://doi.org/10.1134/S1063074015050065
  5. Micelle-mediated extraction and neutron activation determination of nanogram levels of vanadium in seaweeds pp.1588-2780, 2018, https://doi.org/10.1007/s10967-018-6194-5
  6. Screening of seaweeds in the East China Sea as potential bio-monitors of heavy metals vol.25, pp.17, 2018, https://doi.org/10.1007/s11356-018-1612-3
  7. Bioindication of Heavy-Metal Pollution in the Coastal Marine Waters of Russky Island (Peter the Great Bay, Sea of Japan) vol.44, pp.7, 2018, https://doi.org/10.1134/S1063074018070040