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佛罗里达大沼泽地的汞质量平衡估算及循环季节性

Mercury mass budget estimates and cycling seasonality in the Florida Everglades.

作者信息

Liu Guangliang, Cai Yong, Kalla Peter, Scheidt Daniel, Richards Jennifer, Scinto Leonard J, Gaiser Evelyn, Appleby Charlie

机构信息

Department of Chemistry & Biochemistry, Florida International University, Miami, Florida 33199, USA.

出版信息

Environ Sci Technol. 2008 Mar 15;42(6):1954-60. doi: 10.1021/es7022994.

Abstract

We estimated the mass budget for mercury (Hg) seasonally deposited into the Florida Everglades and investigated seasonality of Hg cycling by analyzing data obtained for water, soil, flocculent detrital material (floc), periphyton, and mosquitofish collected throughout the Everglades freshwater marshes in the 2005 dry and wet seasons. Higher wet season total Hg (THg) in soil, floc, and periphyton agreed with greater Hg amounts entering these compartments during the wet season, probably owing to substantially greater Hg deposition in the wet season than in the dry season. Seasonal differences were absent for THg in surface water. Methylmercury (MeHg) showed mixed seasonal patterns, with higher water and soil MeHg and lower periphyton MeHg in the dry season but no seasonality for floc MeHg. Seasonal variations in Hg deposition, MeHg production and transport, and mass of ecosystem compartments could be responsible for the seasonality of MeHg cycling. Higher mosquitofish THg, higher bioaccumulation factors, and higher biomagnification factors from periphyton to mosquitofish were observed in the wet season than in the dry season, indicating that the wet season is more favorable for Hg bioaccumulation. The mass budget estimation agreed with this result.

摘要

我们估算了季节性沉积到佛罗里达大沼泽地的汞(Hg)的质量收支,并通过分析2005年旱季和雨季在大沼泽地淡水沼泽地采集的水、土壤、絮凝碎屑物质(絮凝物)、附生植物和食蚊鱼的数据,研究了汞循环的季节性。土壤、絮凝物和附生植物中较高的湿季总汞(THg)与湿季进入这些组分的汞量增加一致,这可能是由于湿季的汞沉积量远大于旱季。地表水中的THg没有季节性差异。甲基汞(MeHg)呈现出混合的季节性模式,旱季水中和土壤中的MeHg含量较高,附生植物中的MeHg含量较低,但絮凝物中的MeHg没有季节性变化。汞沉积、甲基汞的产生和迁移以及生态系统组分质量的季节性变化可能是甲基汞循环季节性的原因。与旱季相比,湿季观察到食蚊鱼的THg含量更高、生物累积因子更高以及从附生植物到食蚊鱼的生物放大因子更高,这表明湿季更有利于汞的生物累积。质量收支估算与这一结果相符。

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