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无机汞负荷与水生生物群甲基汞积累之间存在线性关系的实验证据。

Experimental evidence of a linear relationship between inorganic mercury loading and methylmercury accumulation by aquatic biota.

作者信息

Orihel Diane M, Paterson Michael J, Blanchfield Paul J, Bodaly R A, Hintelmann Holger

机构信息

Clayton H. Riddell Faculty of Environment, Earth, and Resources, University of Manitoba, Winnipeg, Manitoba, Canada R3T 2N2.

出版信息

Environ Sci Technol. 2007 Jul 15;41(14):4952-8. doi: 10.1021/es063061r.

DOI:10.1021/es063061r
PMID:17711208
Abstract

Developing effective regulations on mercury (Hg) emissions requires a better understanding of how atmospheric Hg deposition affects methylmercury (MeHg) levels in aquatic biota. This study tested the hypothesis that MeHg accumulation in aquatic food webs is related to atmospheric Hg deposition. We simulated a range of inorganic Hg deposition rates by adding isotopically enriched Hg(II) (90.9% 202Hg) to 10-m diameter mesocosms in a boreal lake. Concentrations of experimentally added ("spike") Hg were monitored in zooplankton, benthic invertebrates, and fish. Some Hg(II) added to the mesocosms was methylated and incorporated into the food web within weeks, demonstrating that Hg(II) deposited directly to aquatic ecosystems can become quickly available to biota. Relationships between Hg(II) loading rates and spike MeHg concentrations in zooplankton, benthic invertebrates, and fish were linear and significant. Furthermore, spike MeHg concentrations in the food web were directly proportional to Hg(II) loading rates (i.e., a percent change in Hg(II) loading rate resulted in, statistically, the same percent change in MeHg concentration). This is the first experimental determination of the relationship between Hg(II) loading and MeHg bioaccumulation in aquatic biota. We conclude that changes in atmospheric Hg deposition caused by increases or decreases in Hg emissions will ultimately affect MeHg levels in aquatic food webs.

摘要

制定有效的汞(Hg)排放法规需要更好地了解大气汞沉降如何影响水生生物群中的甲基汞(MeHg)水平。本研究检验了水生食物网中甲基汞积累与大气汞沉降相关的假设。我们通过向北方湖泊中直径为10米的中型生态系统添加同位素富集的汞(II)(90.9% 202Hg)来模拟一系列无机汞沉降速率。在浮游动物、底栖无脊椎动物和鱼类中监测实验添加(“加标”)汞的浓度。添加到中型生态系统中的一些汞(II)在数周内被甲基化并纳入食物网,这表明直接沉积到水生生态系统中的汞(II)可以迅速被生物群利用。汞(II)加载率与浮游动物、底栖无脊椎动物和鱼类中加标甲基汞浓度之间的关系呈线性且显著。此外,食物网中加标甲基汞浓度与汞(II)加载率成正比(即汞(II)加载率的百分比变化在统计上导致甲基汞浓度产生相同的百分比变化)。这是首次对水生生物群中汞(II)加载与甲基汞生物积累之间的关系进行实验测定。我们得出结论,汞排放增加或减少导致的大气汞沉降变化最终将影响水生食物网中的甲基汞水平。

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