Environmental factors influencing mercury speciation in Subarctic and Boreal lakes

被引:60
作者
Braaten, Hans Fredrik V. [1 ,2 ]
de Wit, Heleen A. [1 ]
Fjeld, Eirik [1 ]
Rognerud, Sigurd [1 ]
Lydersen, Espen [3 ]
Larssen, Thorjorn [1 ]
机构
[1] Norwegian Inst Water Res NIVA, N-0349 Oslo, Norway
[2] Univ Oslo UiO, Dept Chem, N-0371 Oslo, Norway
[3] TUC, N-3901 Porsgrunn, Norway
关键词
Total mercury; Methylmercury; Methylation potential; Environmental drivers; Nitrogen; Dissolved organic matter; DISSOLVED ORGANIC-CARBON; METHYL MERCURY; METHYLMERCURY CONCENTRATIONS; BACTERIAL PRODUCTION; ATMOSPHERIC MERCURY; SOIL SOLUTION; HUMIC LAKE; HOT-SPOTS; WATER; CHEMISTRY;
D O I
10.1016/j.scitotenv.2014.01.030
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Environmental drivers of total mercury (TotHg) concentrations, methylmercury (MeHg) concentrations, and MeHg fractions (a proxy for methylation potential, expressed as %MeHg) were assessed in a synoptic study of 51 lakes in southeast (Boreal) and northeast (Subarctic) Norway. Concentrations of TotHg and MeHg ranged between 0.5-6.6 ng/L and <0.02-0.70 ng/L, respectively. The lakes span wide ranges of explanatory environmental variables, including water chemistry, catchment characteristics, climate conditions, and atmospheric deposition of Hg, sulphur and nitrogen (N). Dissolved organic matter (DOM), measured as total organic carbon (TOC), was the variable most strongly correlated with TotHg (r(2) = 0.76) and MeHg (r(2) = 0.64) concentrations. Lakes in the Subarctic region had significantly lower TotHg and MeHg concentrations, and %MeHg than lakes in the Boreal region (p < 0.01), implying a lower aquatic food web exposure of aqueous Hg species in Subarctic Norway than in the Boreal lakes. Statistical modelling (partial least squares) using data from the Boreal lakes produced models explaining 82%, 75% and 50% of the spatial variation of TotHg and MeHg concentrations and %MeHg, respectively. After TOC, the most significant explanatory variables were N availability, base cation status, and lake and catchment size. We conclude that a key process driving TotHg concentrations is DOM as a transport vector, while the role of DOM for MeHg and %MeHg is likely related to a combination of transport and DOM as a substrate for methylation. Also, negative correlations between MeHg, and catchment and lake size are consistent with in-lake and in-stream de-methylation processes. The statistical relationship suggests that N availability exerts a positive contribution on concentrations of MeHg and %MeHg. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:336 / 345
页数:10
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