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Interactions of aquaculture and waste disposal in the coastal zone

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Abstract

Throughout the world, the coastal zones of many countries are used increasingly for aquaculture in addition to other activities such as waste disposal. These activities can cause environmental problems and health problems where they overlap. The interaction between aquaculture and waste disposal, and their relationship with eutrophication are the subjects of this paper.

Sewage discharge without adequate dispersion can lead to nutrient elevation and hence eutrophication which has clearly negative effects on aquaculture with the potential for toxic blooms. Blooms may be either toxic or anoxia-causing through the decay process or simply clog the gills of filter-feeding animals in some cases. With the development of aquaculture, especially intensive aquaculture, many environmental problems appeared, and have resulted in eutrophication in some areas. Eutrophication may destroy the health of whole ecosystem which is important for sustainable aquaculture.

Sewage discharge may also cause serious public health problems. Filter-feeding shellfish growing in sewage-polluted waters accumulate micro-organims, including human pathogenic bacteria and viruses, and heavy metal ion, presenting a significant health risk. Some farmed animals may also accumulate heavy metals from sewage. Bivalves growing in areas affected by toxic algae blooms may accumulate toxins (such as PSP, DSP) which can be harmful to human beings.

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References

  • Ackefors H., and M. Enell, 1990. Discharge of nutrients from Swedish fish farming to adjacent sea areas. AMBIO, 19(1): 28–35.

    Google Scholar 

  • Anderson, D. M., 1994. Red tides. Scientific American, 271(2): 52–58.

    Article  Google Scholar 

  • Baden, S. P., L. O. Loo, L. Pihl, and R. Rosenberg, 1990. Effects of eutrophication on benthic communities including fish: Swedish west coast. AMBIO, 19(3): 113–122.

    Google Scholar 

  • Campbell, D. E., 1989. The Maquoit Bay shellfish kill of 1988: an ecological tragety. Research reference document Maine Department of Marine resources.

  • Carpene, E., and S. G. George, 1981. Absorption of cadium by gills of Mytilus Edulis. Mol. Physiol., 1, 23–34.

    Google Scholar 

  • Christensen, B. F., D. Lees, K. H. Wood, J. Bjergskov, and J. Green, 1998. Human enteric viruses in oysters causing a large outbreak of human food borne infection in 1996/1997. Journal of Shellfish Research 17(5): 1633–1635.

    Google Scholar 

  • Dickman, M. D., C. K. M. Leung, M. K. H. Leong, 1998a. Hong Kong male subfertility links to mercury in human hair and fish. Science of the Total Environment, 214(1–3): 165–174.

    Article  Google Scholar 

  • Dickman, M. D., K. M. C. Leung, 1998b. Mercury and organochlorine exposure from fish consumption in Hong Kong. Chemosphere, 37(5): 991–1015.

    Article  Google Scholar 

  • Dong S. L., Pan K. H., 2000. Review on effects of mariculture on coastal environment. Journal of Ocean University of Qingdao, 30(4): 575–582.

    Google Scholar 

  • Emmerson, W. D., Mclachlan, A., Walting, H. R., and Walting, R. J., 1983. Some ecological effects of two sewage outfalls in Algoa Bay. Water S. A., 9(1): 23–30.

    Google Scholar 

  • Friligos, N., 1982. Enrichment of inorganic nutrients in the Inner Saronikos Gulf (1973–1976). Marine Pollution Bulletin, 13(5): 154–158.

    Article  Google Scholar 

  • GESAMP, 1991. Reducing environmental impacts of coastal aquaculture. United Nations Environment Programme. UNEP Regional Seas Reports and Studies, Nairobi, (47): 25 pp.

  • Gibbs, P. J., and A. G. Miskiewicz, 1995. Heavy metals in fish near a major primary treatment sewage plant outfall. Marine Pollution Bulletin, 30(10), 667–674.

    Article  Google Scholar 

  • Grimes, D. J., 1984. Microbiological effects of wastewater effluent discharge into coastal waters of Puerto Rico. Water Research, 18(5): 613–619.

    Article  Google Scholar 

  • Hawkins, S. J., J. R. Allen, G. Russell, J. W. Eaton, I. Wallace, et al., 1993. Former commercial docks as a resource in urban conservation and education. In: Urban Waterside Regeneration Problems and Prospects. K. N. White, E. G. Bellinger, A. J. Saul, M. Symer, and K. Hendry, eds., Ellis Horwood, UK, pp. 386–399.

    Google Scholar 

  • Hodgkiss, I. J., and K. C. Ho, 1997. Are changes in N: P ratios in coastal waters the key to increased red tide blooms? Hydrobiologia, 352(1–3): 141–147.

    Article  Google Scholar 

  • Justic, D., T. Legovic and L. Rottini-Sandrini, 1987. Trends in oxygen content 1911–1984 and the occurrence of benthic morality in the Northern Adriatic Sea. Estuarine and Coastal Shelf Science, 25: 435–445.

    Article  Google Scholar 

  • Kohn, M. A., T. A. Farley, T. Ando, M. Curtis, S. A. Wilson, et al., 1995. An outbreak of Norwalk virus gastroenteritis associated with eating raw oysters. Implications for maintaining safe oyster beds. Journal of the American Medical Association, 273(6): 466–471.

    Article  Google Scholar 

  • Miossec, L., Guyader, F. L., Haugarreau, L., Comps, M. A., and Pommepuy, M., 1998. Possible relation between a winter epidemic of acute gastroenteritis in France and viral contamination of shellfish. Journal of Shellfish Research, 17(5): 1661–1664.

    Google Scholar 

  • Motes, M. L., A. DePaola, G. M. Capers, S. R. Zywno, and R. M. McPhearson, 1992. Cholera and oysters: Mobile Bay, Alabama. Aquaculture, 92: 165–166.

    Google Scholar 

  • Páez-Osuna, F., S. R. Guerrero-Galvan, and R. C. Ruiz-Fernnadez, 1999. Discharge of nutrients from shrimp farming to coastal waters of the Gulf of California. Marine Pollution Bulletin, 38(7): 585–592.

    Article  Google Scholar 

  • Pan Y., and Subba Rao, D. V., 1997. Impacts of domestic sewage effluent on phytoplankton from Bedford Basin, eastern Canada. Marine Pollution Bulletin, 34(12): 1001–1005.

    Article  Google Scholar 

  • Rosenberg, R., 1990. Negative oxygen trends in Swedish coastal bottom water. Marine Pollution Bulletin, 21: 335–339.

    Article  Google Scholar 

  • Schüssler, W., and L. Nitschke, 1999. Death of fish due to surface water pollution by liquid manure or untreated wastewater: analytical preservation of evidence by HPLC. Water Research, 33(12): 2884–2887.

    Article  Google Scholar 

  • Shapiro, R. L., S. Altekruse, L. Hutwagner, R. Bishop, R. Hammond, et al., 1998. The role of Gulf Coast oyters harvested in warmer months in Vibrio vulnificus infections in the United States, 1988–1996. Journal of Infectious Diseases, 178(3): 752–759.

    Article  Google Scholar 

  • Smayda, T. J., 1990. Noval and nuisance phytoplankton blooms in the sea: evidence for a global epidemic. Toxic Marine Phytoplankton, eds., Elsevier, New York, pp. 29–40.

    Google Scholar 

  • Smith, S. D. A., 1997. The effects of domestic sewage effluent on marine communities at Coffs Harbour, New South Wales, Australia. Marine Pollution Bulletin, 33(7–12): 309–316.

    Google Scholar 

  • Swartz, R. C., F. A. Cole, D. W. Schults, and W. A. Deben, 1986. Ecological changes in the Southern California Bight near a large sewage outfall: Benthic conditions in 1980 and 1983. Marine Ecology Progress Series, 31(1): 1–13.

    Google Scholar 

  • Tod, E. C. D., and C. F. B. Holmes, 1993. Recent illnesses from seafood toxins in Canada: Paralytic, amnesic and diarrhetic shellfish poisoning toxic phytoplankton blooms in the sea. Mar. Biol., 3: 335–340.

    Google Scholar 

  • Tsubaki, T., and K. Irukayama, 1977. Minamata disease: Methylmercury poisoning in Minamata and Niigate, Japan. Elsevier Scientific Publ. Co., Amsterdam, 317 pp.

    Google Scholar 

  • van den Heever, D. J., and B. J. Frey, 1996. Human health aspects of certain metals in tissue of the African sharptooth catfish, Clarias gariepinus, kept in treated sewage effluent and the Krugersdrift Dam: Chromium and mercury. Water S. A., 22(1): 73–78.

    Google Scholar 

  • White, A. W., 1987: Blooms of toxic algae worldwide: Their effects on fish farming and shellfish resources. Conference 2: the Impact of Toxic Algae on Mariculture, AQUANOR 87, Tronheim, 9–14.

  • Xu, Z. Y., Li, Z. H., Wang, J. X., Xiao, Z. P., and Dong, D. X., 1992. Ecology and prevention of a shell-fish-associated hepatitis A epidemic in Shanghai, China. Vaccine, 10(1): 567–568.

    Google Scholar 

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Correspondence to Zhai Xuemei.

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Xuemei, Z., Hawkins, S.J. Interactions of aquaculture and waste disposal in the coastal zone. J Ocean Univ. China 1, 8–12 (2002). https://doi.org/10.1007/s11802-002-0023-7

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  • DOI: https://doi.org/10.1007/s11802-002-0023-7

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