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Chernobyl-derived radiocaesium in fish as dependent on water quality and lake morphometry
Authors:Jukka  Särkkä  Aulis  Jämsä Antti  Luukko†
Institution:Department of Biology, University of Jyväskylä, P.O.B. 35, FIN-40351 Jyväskylä;Laboratory of Physics, Lappeenranta University of Technology, P. O. B. 20, FIN-53851 Lappeenranta, Finland
Abstract:137Cs concentrations in perch Perca fluviatilis , pike Esox lucius and roach Rutilus rutilus obtained from lakes of different size and water quality in an area which received about 10–67 kBq m?2137Cs, were compared with environmental data. Radiocaesium concentrations were highest in pike, and were about two to three times higher in the pike and perch than in the roach. The largest perch had about four times more 137Cs than the smallest ones, but the activities in the pike and roach were independent of fish size. All of the water quality parameters examined correlated with 137Cs concentrations in the fish, but the concentrations of 137Cs in the bottom sediment did not. l37Cs fallout and water retention time in lakes showed a positive correlation with fish 137Cs, while the size of the catchment area, phosphorus content of the water, water colour, pH and electrical conductivity showed a negative one. Thus there was more 137Cs in the fish from the oligotrophic lakes than from the eutrophic ones, from the less humic lakes than from the more humic ones, from the more acid than from the less acid ones and from the lakes containing less potassium than from those containing more potassium. The depth, area and volume of the lake did not affect radiocaesium in the fish. Regression equations are presented for predicting 137Cs in fish on the basis of environmental data. Fallout, total phosphorus and pH together had the highest influence in multiple regression models but were less significant in the roach than in the perch and pike.
Keywords:radiocaesium  regional variation  environmental influence  water quality  lake morphometry
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