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溶解有机质的光学特性及其与偏远淡水流域水中和生物体内汞浓度的关系。

Optical Properties of Dissolved Organic Matter and Their Relation to Mercury Concentrations in Water and Biota Across a Remote Freshwater Drainage Basin.

机构信息

Laurentian University , 935 Ramsey Lake Road , Sudbury , Ontario P3E 2C6 , Canada.

Natural Resources Canada , Great Lakes Forestry Centre , 1219 Queen Street East , Sault Sainte Marie , Ontario P6A 2E5 , Canada.

出版信息

Environ Sci Technol. 2018 Mar 20;52(6):3344-3353. doi: 10.1021/acs.est.7b05348. Epub 2018 Feb 27.

Abstract

Dissolved organic matter (DOM) includes an array of carbon-based compounds that vary in size and structure and have complex interactions with mercury (Hg) cycling in aquatic systems. While many studies have examined the relationship between dissolved organic carbon concentrations ([DOC]) and methyl Hg bioaccumulation, few studies have considered the effects of DOM composition (e.g., protein-content, aromaticity). The goal of this study was to explore the relationships between total and methyl [Hg] in water, invertebrates, and fish and optically derived measures of DOM composition from 47 lake and river sites across a boreal watershed. Results showed higher aqueous total [Hg] in systems with more aromatic DOM and higher [DOC], potentially due to enhanced transport from upstream or riparian areas. Methyl [Hg] in biota were all positively related to the amount of microbial-based DOM and, in some cases, to the proportions of labile and protein-like DOM. These results suggest that increased Hg bioaccumulation is related to the availability of labile DOM, potentially due to enhanced Hg methylation. DOM composition explained 68% and 54% more variability in [Hg] in surface waters and large-bodied fish, respectively, than [DOC] alone. These results show that optical measures of DOM characteristics are a valuable tool for understanding DOM-Hg biogeochemistry.

摘要

溶解有机质(DOM)包括一系列大小和结构各异的碳基化合物,它们与水生系统中汞(Hg)循环有复杂的相互作用。虽然许多研究都考察了溶解有机碳浓度([DOC])与甲基汞生物累积之间的关系,但很少有研究考虑 DOM 组成(如蛋白质含量、芳香度)的影响。本研究的目的是探索在北方流域 47 个湖泊和河流站点的水中、无脊椎动物和鱼类中总汞和甲基汞([Hg])与 DOM 组成的光学指标之间的关系。结果表明,芳香性 DOM 和较高 [DOC] 的系统中,水中的总汞含量更高,这可能是由于上游或河岸地区的传输增强所致。生物体内的甲基汞与微生物 DOM 的含量呈正相关,在某些情况下,与易降解和类蛋白 DOM 的比例呈正相关。这些结果表明,Hg 生物累积的增加与易降解 DOM 的可用性有关,这可能是由于 Hg 甲基化增强所致。DOM 组成分别比单独的 [DOC] 更能解释地表水和大型鱼类中 [Hg] 变异的 68%和 54%。这些结果表明,DOM 特征的光学测量是理解 DOM-Hg 生物地球化学的有用工具。

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