6533b86cfe1ef96bd12c8912

RESEARCH PRODUCT

Changes in fish mercury concentrations over 20 years in an acidified lake subject to experimental liming

Marko JärvinenMatti VertaMaiju SalonenJari SyvärantaAnna PaloheimoMartti RaskRoger Jones

subject

Perch010504 meteorology & atmospheric sciencesbiologyChemistryEcologychemistry.chemical_element010501 environmental sciencesbiology.organism_classification01 natural sciencesPollutionIsotopes of nitrogenFood webMercury (element)Animal scienceGeochemistry and PetrologyEnvironmental Chemistry14. Life underwaterWater qualitycomputerEsox0105 earth and related environmental sciencesPikecomputer.programming_languageTrophic level

description

Abstract Lake Iso Valkjarvi (southern Finland, Europe) was divided in two with a plastic curtain in 1991. One half was neutralized with CaCO 3 , and the other acted as a control. Mercury concentrations of perch ( Perca fluviatilis ) and northern pike ( Esox lucius ) in the limed and control side of the lake were studied both before and after the treatment. Average Hg concentrations of perch and pike were 0.40 and 1.2 μg g −1 (ww) in the early 1980s and 0.25 and 0.72 μg g −1 (ww) a decade later at the time of liming. Ten years after the liming the Hg concentrations of perch in the limed and control sides of the lake were 0.21 and 0.28 μg g −1 (ww) and those of pike were 0.69 and 0.43 μg g −1 (ww), respectively. Nitrogen isotope ratios ( δ 15 N) for perch in the sampling period 2002–2004 showed wide variation suggesting variable trophic positions for individual fish. Pike formed two groups according to their δ 15 N-values, suggesting that zoobenthos dominated the diet of pike around 20 cm in length and fish that of the larger pikes. Because the δ 15 N-values of fish were at similar levels in the limed and control sides of L. Iso Valkjarvi, differences in food web structure cannot account for the different fish Hg concentrations. A more likely explanation is water quality induced differences in the dynamics and bioavailability of Hg, leading to decreased formation of methyl Hg.

https://doi.org/10.1016/j.apgeochem.2007.03.015