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Trace element concentrations in fish and bottom sediments of a eutrophic dam reservoir

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Total trace element concentrations and their binding forms were studied in benthic sediments and in roach (benthivore), bream (planktivore/benthivore), and pikeperch (piscivore) in the upper and lower sections of the Dobczyce Reservoir in southern Poland. The sediment was polluted to a low degree by Cd and relatively unpolluted by Pb, Zn, Mn, and Fe. According to the index of geoaccumulation (Igeo), Cd was the most mobile element in the sediment and was bioconcentrated in fish tissues to the highest degree, especially in roach, which feeds by burrowing into the sediment. The trace element distribution in fish tissues (muscle, liver, kidney, and gills), fish species, and in fish from different locations is discussed.
Słowa kluczowe
Rocznik
Strony
331--352
Opis fizyczny
bibliogr. 66 poz., tab., wykr.
Twórcy
autor
autor
  • Institute of Nature Conservation, Polish Academy of Sciences Karol Starmach Institute of Freshwater Biology Al. Mickiewicza 33, 31-120 Cracow, Poland, szarek@iop.krakow.pl
Bibliografia
  • Allen-Gil S.M., Martynov V.G., 1995, Heavy metal burdens in nine species of freshwater and anadromous fish from the Pechora River, northern Russia, Sci. Total Environ., 160/161: 653-9
  • Amirowicz A., 1998, Consequences of the basin morphology for fish community in a deep-storage submontane reservoir, Acta Hydrobiol., 39(Suppl. 1): 35-56
  • Amundsen P-A., Staldvik F.J., Lukin A.A., Kashulin N.A., Popova O.A., Reshetnikov, Y.S., 1997, Heavy metal contamination in freshwater fish from the border region between Norway and Russia, Sci. Total Environ., 201: 211-24
  • Andres S., Ribeyre F., Tourencq J.N., Boudou A., 2000, Interspecific comparison of cadmium and zinc contamination in the organs of four fish species along a polymetallic pollution gradient (Lot River, France), Sci. Total Environ., 248: 11-25
  • Barak N.A.E., Mason C.F., 1990, Mercury, cadmium and lead concentrations in five species of freshwater fish from eastern England, Sci. Total Environ., 92: 257-63
  • Batley G.E., 1990, Trace element speciation: analytical methods and problems, CRC Press, Inc. Boca Raton, Florida, USA
  • Bervoets L., Blust R., Verheyen R., 2001, Accumulations of metals in the tissues of three spined stickleback (Gasterosteus aceleatus) from natural fresh waters, Ecotoxicol. Environ. Saf., 48: 117-27
  • Blanchard M., Teil M.J., Carru A-M., Garban B., Ollivon D., Chesterikoff A., Chevreuil M., 1999, Biota contamination by PCBs and trace metals in the freshwater estuary of the River Seine (France), Hydrobiologia., 400: 149-54
  • Brown M.W., Thomas D.G., Shurben D., Solbe J.F.L.G., Kay J, Cryer A., 1986, A comparison of the differential accumulation of cadmium in the tissue of three species of freshwater fish: Salmo gairdneri, Rutilus rutilus and Noemacheilus barbatulus, Comp. Biochem. Physiol., 84C: 213-17
  • Cain D.J., Carter J.L., Fend S.V., Luoma S.N., Alpers C.N., Taylor H.E., 2000, Metal exposure in a benthic macroinvertebrate, Hydropsyche californica, related to mine drainage in the Sacramento River, Can. J. Fish Aquat. Sci., 57(2): 380-90
  • Calmano W., Hong J., Förstner U., 1993, Binding and mobilization of heavy metals in contaminated sediments affected by pH and redox conditions, Wat. Sci. Technol., 28: 223-35
  • Carpene E., Gumiero B., Fedrizzini G., Serra R., 1994, Trace elements (Zn, Cu, Cd) in fish from rearing ponds of Emilia-Romagna region (Italy), Sci. Total Environ., 141: 139-46
  • Carru A-M., Teil M.J., Blanchard M., Chevreuil M., Chesterikoff A., 1996, Evaluation of the roach (Rutilus rutilus) and the perch (Perca fluviatilis) for the biomonitoring of metal pollution, J. Environ. Sci. Health., A31: 1149-58
  • De Boeck G., Ngo T.T.H., Van Campenhout K., Blust R., 2003, Differential metallothionein induction patterns in three freshwater fish during sublethal copper exposure, Aquatic Toxicology., 65(4): 413-24
  • Dobicki W., Polechoński R., 2003, Relationship between age and heavy metal bioaccumulation by tissues of four fish species inhabiting Wojnowskie Lakes. Acta Scient. Pol. -Piscaria, 2 (1): 27-44
  • Dobrowolski R., Skowrońska M., 2001, Distribution and environmental mobility of selected trace metals in the Zemborzyce Reservoir, Polish Journal of Environmental Studies, 10: 383-88
  • Eggleton J., Thomas K.V., 2004, A review of factors affecting the release and bioavailability of contaminants during sediment disturbance events, Environ Int., 30(7): 973-80
  • Farkas A., Salánki J., Specziár A., 2003, Age- and size- specific patterns of heavy metals in the organs of freshwater fish Abramis brama L. populating a low contaminated site, Water Research., 37: 959-64
  • Frank A., 1984, Automatic wet ashing, Association of Official Analytical Chemists., 7: pp. 5
  • Förstner U., Calmano W., 1982, Bindungsformen von Schwermetallen in Baggerschlämmen, Vom. Wasser., 59: 83-93, (in German)
  • Förstner U., Ahlf W., Calmano W., Kersten M., Salomons W., 1986, Mobility of heavy metals in Dredged Harbor Sediments [in:] Sediments and water interactions, Sly P.G. (ed.), Proc. 3rd Internat. Symp., Genewa, 1984, Springer., 371-80
  • Fytianos K., Lourantou A., 2004, Speciation of elements in sediment samples collected at lakes Volvi and Koronia N. Greece, Environment International., 30: 11-17
  • Glushankova M.A., Pashkova I.M., 1992, Heavy metals in tissues of fish of the Pskovsko-Chudskoye and Virts'yarv Lakes, Tsitologiya, 34: 46-50
  • Głosińska G., Sobczyński T., Boszke L., Bierła K., Siepak J., 2005, Fractionation of some heavy metals in bottom sediments from the middle Odra River (Germany/Poland), Pol. J. Environ. Stud. 14(3): 305-17
  • Guo T., Delaune R.D., Patrick W.H., 1997, The effect of sediment redox chemistry on solubility/chemically active forms of selected metals in bottom sediment receiving produced water discharge, Spill Science and Technology Bulletin., 4(3): 165-75
  • Hongve D., 2003, Chemical stratigraphy of recent sediments from a depth gradient in a meromictic lake, Nordbytjernet, SE Norway, in relation to variable external loading and sedimentary fluxes, Journal of Paleolimnology, 30(1): 75-93
  • Hoogenboezem W., Lammens E.H.R.R., van Vugt Y., Osse J.W.M., 1992, A model for switching between particulate-feeding and filter-feeding in the common bream, Abramis brama, Environ. Biol. Fish., 33: 13-21
  • Ikem A., Egiebor N.O., Nyavor K., 2003, Trace elements in water, fish and sediment from Tuskegee Lake, Southeastern USA, Water, Air, and Soil Pollution., 149: 51-75
  • Jezierska B., Witeska M., 2001, Metal toxicity to fish, Wyd. Akademii Podlaskiej (Monografie, 42), Siedlce, pp. 318
  • Jezierska B., Witeska M., 2004, The effect of metals on fish gill functions - gas and ion exchange (Review), Fresenius Environmental Bulletin, 13: 1370-78
  • Kostecki M., 2000, Heavy metals in flesh and liver of some fish species in Dzierżono Duże dam-reservoir (Upper Silesia), Archives of Environmental Protection, 26(4): 109-25.
  • Köck G., Triendl M., Hofer R., 1996, Seasonal patterns of metal accumulation in Artic char (Salvelinusalpinus) from oligotrophic alpine lakes related to temperature, Can. J. Fish. Aquat. Sci., 53: 780-86
  • Kuznetsova A.I., Zarubina O.V., Leonova G.A., 2002, Comparison of Zn, Cu, Pb, Ni, Cr, Sn, Mo concentrations in tissues of fish (roach and perch) from Lake Baikal and Bratsk Reservoir, Russia, Environmental Geochemistry and Health., 24(3): 205-13
  • Langevoord M., Kraak M., Kraal M., Davids C., 1995, Importance of prey choice for Cd uptake by carp (Cyprinus carpio) finger-lings, J. N. Am. Benthol. Soc., 14: 423-29
  • Łuczyńska J., Brucka-Jastrzębska E., 2005, The relationship between the content of lead and cadmium in muscle tissue and the size of fish from lakes in the Olsztyn Lake District of northeast Poland, Arch. Pol. Fish., 13(2): 147-55
  • Łuczyńska J., Markiewicz K., Jaworski J., 2006, Interspecific differences in the contents of macro- and microelements in the muscle of six species from lakes of the Olsztyn lake district (north-east of Poland). Polish Journal of Food and Nutrition Science, 15/56(1): 29-35
  • Marek J., 1990, Heavy metals in the aquatic environment of the Barycz river-basin. Estimation of hazards to fish management. Chemia i Inżynieria Ekologiczna, 4, S1, pp. 53 (in Polish)
  • Martinez E.A., Moore B.C., Schaumloffel J., Dasgupta N., 2002, The potential association between mental deformities and trace elements in Chironomidae (Diptera) taken from a heavy metal contaminated river, Arch. Environ. Contam. Toxicol., 42(3): 286-91
  • Morsy G., Protasowicki M., 1990, Cadmium bioaccumulation and its effects on some hematological and histological aspects in carp, Cyprinus carpio L. at selected temperatures. Acta Ichthyol. et Piscat., 20(1): 105-16
  • Müller G., 1981, Die Schwermetallbelastung der Sedimente des Neckars und seiner Nebenflüsse. Eine Bestandaufnahme, Chemiker-Zeitung., 6: 157-64
  • Moiseenko T.I., Kudryavtseva L.P., Rodyushkin I.V., Lukin A.A., Kashulin N.A., 1995, Airborne contamination by heavy metals and aluminum in the freshwater ecosystems of Kola subarctic region (Russia), Sci. Total. Environ., 160/161: 715-27
  • Olsson P.E., Kille E., 1997, Functional comparison of the metal-regulated transcriptional control regions of metallothionein genes from cadmium-sensitive and tolerant fish species, BBA-Gene Struct. Exp., 1350: 325-34
  • Perkowska A., Protasowicki M., 2000, Cadmium and lead in fishes and in selected elements of the Świdwie Lake ecosystem. Acta Ichthyol. et Piscat., 30(2): 71-84.
  • Pociecha A., Amirowicz A., 2003, An attempt to determine the share of zooplankton in food consumed by fish in the limnetic zone of a eutrophic dam reservoir, Oceanol. Hydrobiol. Studies., 32(2): 15-31
  • Protasowicki M., Chodyniecki A., Ociepa A., 1983, Metale ciężkie w rybach przemysłowych poławianych w latach 1976-1980. Zesz. Nauk. AR Szczec., 103: 181-98 (in Polish)
  • Protasowicki M., Chodynicki A., 1988, Accumulation of Cd, Pb, Cu and Zn in carp (Cyprinus carpio L.) relative to metal contents in water and time of exposure. Zesz. Nauk. AR Szczec., 1988, 133: 69-84.
  • Protasowicki M., 1991, Long-term studies on heavy metals in aquatic organisms from River Odra mouth area. Acta Ichthyol. et Piscat., suppl., 21: 301-9.
  • Rashed M.N., 2001, Monitoring of environmental heavy metals in fish from Nasser Lake, Environ. Internat., 27: 27-33
  • Smolders A.J.P., Lock R.A.C., Van der Velde G., Hoyos R.I.M., Roelofs J.G.M., 2003, Effects of mining activities on heavy metal concentrations in water, sediment, and macroinvertebrates in different reaches of the Pilcomayo River, South America Arch. Environ, Contam. Toxicol., 44(3): 314-23
  • Sobczyński T., Elbanowska H., Zerze J., Siepak J., Andrzejewski W., Mastyński J., 1995, Bioaccumulation of heavy metals in fish of the lakes of the Wielkopolska National Park, Morena 3: 111-16 (in Polish).
  • Sobczynski T, Siepak J., 2001, Speciation of heavy metals in bottom sediments of lakes in the area of Wielkopolski National Park, Pol. J. Environ. Stud. 10(6): 463-74
  • Sokal R.R., Rohlf F.J., 1987, Biostatistics, New York, W.H. Freeman and Company
  • Song Y., Müller G., 1995, Biogeochemical cycling of nutrients and trace metals in anoxic freshwater sediments of the Neckar River, Germany, Mar. Frashwater Res., 46: 237-43
  • Storelli M.M., Marcotrigiano G.O., 2001, Heavy metal monitoring in fish, bivalve mollusc, water, and sediments from Varano Lagoon, Italy, Bull. Environ, Contam. Toxicol., 66: 365-70
  • Svobodová Z., Čelechovská O., Kolářá J., Randák T., Žlábek V., 2004, Assessment of metal contamination in the upper reaches of the Tichá Orlice River, Czech J. Anim. Sci., 49: 458-64
  • Szarek-Gwiazda E., Mazurkiewicz-Boron G., 2002, Deposition of copper in the eutrophic, Submontane Dobczyce Dam reservoir (Southern Poland)- role of speciation, Water, Air and Soil Pollut, 140(1-4): 203-18
  • Szarek-Gwiazda E., Amirowicz A., 2003, Bioaccumulation of trace elements in roach, Rutilus rutilus (L.) in a eutrophicated submontane reservoir, Chemia i Inżynieria Ekologiczna., 10: 445-53
  • Szarek-Gwiazda E., Amirowicz A., 2006, Bioaccumulation of trace elements in roach, silver bream, rudd, and perch living in an inundated opencast sulphur mine, Aquatic Ecology, (in press)
  • Tessier A., Campbell P.G.C., Bisson M., 1979, Sequential extraction procedure for the speciation of particulate trace metals, Anal. Chem., 51: 844-51
  • Tessier A., Fortin D., Belzile N., Divitre R., Leppard G.G., 1996, Metal sorption to diagenetic iron and manganese oxyhydroxides and associated organic matter: narrowing the gap between field and laboratory measurements, Geochim. Cosmochim. Acta., 60: 387-404
  • Turiekian K.K., Wedepohl K.H., 1961, Distribution of the elements in some major units of the earth's crusts, Bull. Geol. Soc. Am., 72: 175-92
  • van der Berg G.A., Loch J.P.G., Van der Heijdt L.M., Zwolsman J.J.G., 1998, Mobilisation of heavy metals in contaminated sediments in the river Meuse, the Netherlands, Water Science and Technology, 37: 39-46
  • van Ryssen R., Alam M., Goeyens L., Baeyens W., 1998, The use of flux-corer experiments in the determination of heavy metal re-distribution in and of potential leaching from the sediment, Wat. Sci. Tech., 37: 283-90
  • Witeska M., Jezierska B., 2003, The effects of environmental factors on metal toxicity to fish (Review), Fresenius Environmental Bulletin, 12: 824-9
  • Wiechuła D., Loska K., Korus I., 2005, Lead partitioning in the bottom sediment of Rybnik reservoir (southern Poland), Water Air Soil Poll 164(1-4): 315-27
  • Zoumis T., Schmidt A., Grigorova L., Calmano W., 2001, Contaminants in sediments: remobilization and demobilisation, Sci. Total Environ., 266: 195-202
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0005-0052
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