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Tracing Sources and Bioaccumulation of Mercury in Fish of Lake Baikal- Angara River Using Hg Isotopic Composition

机译:汞同位素分析示踪贝加尔湖-安加拉河鱼类中汞的示踪源和生物富集

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摘要

This study presents the determination and comparison of isotopic compositions of Hg in sediments, plankton, roach, and perch of two freshwater systems in the Lake Baikal-Angara River aquatic ecosystem: the man-made Bratsk Water Reservoir contaminated by Hg from a chlor-alkali factory and the noncontaminated Lake Baikal. Isotopic ratios of biota exhibit both significant mass-independent fractionation (MIF) (△~(199)Hg from 0.20 to 1.87%.) and mass-dependent fractionation (MDF) (δ~(202)Hg from -0.97 to -0.16‰), whereas sediments exhibit high MDF (δ~(202)Hg from -1.99 to -0.83‰) but no MIF.δ~(15)N and δ~(13)C are correlated with methylmercury in organisms from both sites, indicating bioaccumulation and biomagnification through food webs of both regions. Combining this with isotopic composition of samples shows that δ~(202)Hg increases with the trophic level of organisms and also with methylmercury in fish from Lake Baikal. This study demonstrates that MIF in fish samples from Bratsk Water Reservoir allow to trace anthropogenic Hg, since fish with the highest levels of Hg in muscle have the same isotopic composition as the sediment in which anthropogenic Hg was deposited. Less contaminated fish do not exhibit this anthropogenic signature accumulating relatively lower Hg amount from the contaminated sediments. This work reveals that Hg isotopic composition can be used to track the contribution of anthropogenic sources in fish from a contaminated lake.
机译:这项研究提出了贝加尔湖-安加拉河水生生态系统中两种淡水系统的沉积物,浮游生物,蟑螂和鲈鱼中汞的同位素组成的测定和比较:人工氯碱污染的布拉茨克水库工厂和未受污染的贝加尔湖。生物群的同位素比显示出显着的质量无关分馏(MIF)(△〜(199)Hg从0.20至1.87%。)和质量相关分馏(MDF)(δ〜(202)Hg从-0.97至-0.16‰ ),而沉积物显示出高MDF(δ〜(202)Hg从-1.99至-0.83‰),但没有MIF.δ〜(15)N和δ〜(13)C与两个地点的生物体中的甲基汞都相关,表明通过两个区域的食物网进行生物富集和生物放大。将其与样品的同位素组成相结合,表明贝加尔湖鱼类的δ〜(202)Hg随生物的营养水平以及甲基汞的增加而增加。这项研究表明,布拉茨克水库鱼类样品中的MIF可以追踪人为汞,因为肌肉中汞含量最高的鱼类的同位素组成与人为汞沉积的沉积物相同。受污染较少的鱼不会表现出这种人为特征,因为受污染沉积物中的汞含量相对较低。这项工作表明,汞同位素组成可用于追踪污染湖鱼中人为来源的贡献。

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  • 来源
    《Environmental Science & Technology》 |2010年第21期|p.8030-8037|共8页
  • 作者单位

    Laboratoire de Chimie Anatytique Bio-Inorganique et Envirotmement, Institut Pluridisciplinaire de Recherche sur l'Environnement et les Matiriaux, CNRS-UPPA-UMR-5254, Helioparc, 2 Avenue du President Pierre Angot, Pau, 64053, France;

    rnLaboratoire de Chimie Anatytique Bio-Inorganique et Envirotmement, Institut Pluridisciplinaire de Recherche sur l'Environnement et les Matiriaux, CNRS-UPPA-UMR-5254, Helioparc, 2 Avenue du President Pierre Angot, Pau, 64053, France;

    rnLaboratory of Problems of Geochemical Mapping and Monitoring, Institute of Geochemistry SB RAS, 1A Favorskogo Street, PB-304, Irkutsk, 664033, Russia;

    rnLaboratory of Problems of Geochemical Mapping and Monitoring, Institute of Geochemistry SB RAS, 1A Favorskogo Street, PB-304, Irkutsk, 664033, Russia;

    rnLaboratoire des Micanismes et Transferts en Geotogie, Observaloire Midi-Pyrenees CNRS-UMR-5563 University de Toulouse 3,14 avenue Bdouard Beiin, 31400 Toulouse, France;

    rnLaboratoire des Micanismes et Transferts en Geotogie, Observaloire Midi-Pyrenees CNRS-UMR-5563 University de Toulouse 3,14 avenue Bdouard Beiin, 31400 Toulouse, France;

    rnDepartment of Agriculture Si Ecology, Plant and Soil Science,University of Copenhagen, Thorvaldsensvej,401871 Frederiksberg C Denmark;

    rnLaboratoire de Chimie Anatytique Bio-Inorganique et Envirotmement, Institut Pluridisciplinaire de Recherche sur l'Environnement et les Matiriaux, CNRS-UPPA-UMR-5254, Helioparc, 2 Avenue du President Pierre Angot, Pau, 64053, France;

    rnLaboratoire de Chimie Anatytique Bio-Inorganique et Envirotmement, Institut Pluridisciplinaire de Recherche sur l'Environnement et les Matiriaux, CNRS-UPPA-UMR-5254, Helioparc, 2 Avenue du President Pierre Angot, Pau, 64053, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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