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利用 DGT 技术对水系统中单甲基汞暴露进行生物监测和评估。

Biomonitoring and assessment of monomethylmercury exposure in aqueous systems using the DGT technique.

机构信息

Trent University, Chemistry Department, 1600 West Bank Drive, Peterborough, ON K9J 7B8, Canada.

出版信息

Sci Total Environ. 2012 Feb 1;416:449-54. doi: 10.1016/j.scitotenv.2011.11.077. Epub 2012 Jan 4.

Abstract

A series of laboratory experiments was conducted under realistic environmental conditions to test the ability of the Diffusive Gradient in Thin film (DGT) technique to mimic monomethylmercury (MMHg) bioaccumulation by a clam (Macoma balthica, Baltic clam). Using isotope enriched MMHg as tracers, bioavailability was determined by comparing the rate of MMHg uptake by novel DGT devices and sentinel organism over time. Experiments were conducted under varying conditions of salinity and MMHg speciation. Depending on MMHg level and speciation in the dissolved phase, MMHg uptake rates by the sentinel organism varied greatly from 0.4 to 2.4Lg(-1)d(-1). Reproducibilities of MMHg uptakes by DGT and clams were estimated at 7 and 38%, respectively. A significant linear relationship (log basis) between MMHg accumulation by DGT and clams was observed (r(2)=0.89). The study demonstrates that DGT results reasonably predict MMHg uptake by clams from the aqueous phase and provide the basis for application of the DGT device as a surrogate for sentinel organism for monitoring bioavailable MMHg.

摘要

进行了一系列实验室实验,在实际环境条件下测试了薄膜扩散梯度(DGT)技术模拟贻贝(Macoma balthica,波罗的海贻贝)中一甲基汞(MMHg)生物累积的能力。使用同位素富集的 MMHg 作为示踪剂,通过比较新型 DGT 装置和指示生物随时间的 MMHg 吸收速率来确定生物利用度。实验在不同盐度和 MMHg 形态的条件下进行。根据溶解相中的 MMHg 水平和形态,指示生物对 MMHg 的吸收速率变化很大,从 0.4 到 2.4 Lg(-1)d(-1)。DGT 和贻贝对 MMHg 的吸收重现性分别估计为 7%和 38%。DGT 和贻贝对 MMHg 的积累之间存在显著的线性关系(以对数为基础)(r(2)=0.89)。该研究表明,DGT 结果合理地预测了贻贝从水相中吸收 MMHg,并为 DGT 装置作为监测生物可利用 MMHg 的指示生物的替代品提供了依据。

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