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在冰盖影响下,冻结期湖泊冰-水-沉积物中汞和甲基汞的分布。

Distribution of mercury and methylmercury in ice-water-sediments in lakes during the freezing period under the influence of ice cover.

机构信息

Water Conservancy and Civil Engineering College, Inner Mongolia Agricultural University, Hohhot, 010018, China.

Water Conservancy and Civil Engineering College, Inner Mongolia Agricultural University, Hohhot, 010018, China; Inner Mongolia Water Resource Protection and Utilization Key Laboratory, Hohhot, 010018, China.

出版信息

Environ Pollut. 2024 Dec 15;363(Pt 2):125183. doi: 10.1016/j.envpol.2024.125183. Epub 2024 Oct 23.

Abstract

The presence of lake ice cover alters the subglacial water environment, thereby influencing the migration and transformation of mercury (Hg) and methylmercury (MeHg) within the ice-water-sediment media of lakes. This study investigated the occurrence characteristics of mercury and methylmercury in various environmental compartments within lakes located at high latitudes in cold regions during the freezing period. To this end, Wuliangsuhai Lake, the largest freshwater lake situated at 40°N in China, was selected as the study site. The contents of mercury and methylmercury in lake ice were determined for the first time. The percentage of methylmercury (MeHg%) and ice-water partition coefficient were analyzed. The pollution situation and health risk were evaluated by single factor pollution index. The results show that the ice body and water body of Wuliangsuhai are not polluted by mercury and methylmercury, but some sampling points in the sediment are slightly polluted. The mercury content in sediment is negatively correlated with the ice thickness, and the methylmercury content in water is positively correlated with the methylmercury content in sediment, but negatively correlated with the ice thickness. The migration ability of methylmercury in ice-water system is stronger than that of mercury. The MeHg% of water in ice period is higher than that in non-freezing period, which is different from other lakes without ice sheet. The results show that in the dynamic equilibrium of methylation and demethylation in the high-latitude lake water, the methylation is higher in the ice period than in the non-freezing period due to the influence of light intensity, while the mercury in the non-freezing period is more susceptible to the demethylation.

摘要

湖冰覆盖的存在改变了亚表层水的环境,从而影响了汞(Hg)和甲基汞(MeHg)在湖泊冰-水-沉积物介质中的迁移和转化。本研究调查了在寒冷地区高纬度湖泊冻结期内各种环境介质中汞和甲基汞的存在特征。为此,选择中国北纬 40°最大的淡水湖——乌梁素海作为研究地点。首次测定了湖冰中汞和甲基汞的含量。分析了甲基汞(MeHg%)和冰-水分配系数。通过单因子污染指数评价了污染状况和健康风险。结果表明,乌梁素海的冰体和水体未受到汞和甲基汞的污染,但部分沉积物采样点受到轻微污染。沉积物中汞含量与冰厚呈负相关,水中甲基汞含量与沉积物中甲基汞含量呈正相关,与冰厚呈负相关。甲基汞在冰-水体系中的迁移能力强于汞。冰期水中的 MeHg%高于非冻结期,与其他无冰盖的湖泊不同。结果表明,在高纬度湖水的甲基化和脱甲基动态平衡中,由于光照强度的影响,冰期的甲基化程度高于非冻结期,而非冻结期的汞更容易发生脱甲基化。

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