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首页> 外文期刊>Scientific reports. >Linking mercury, carbon, and nitrogen stable isotopes in Tibetan biota: Implications for using mercury stable isotopes as source tracers
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Linking mercury, carbon, and nitrogen stable isotopes in Tibetan biota: Implications for using mercury stable isotopes as source tracers

机译:在藏生物群联汞,碳和氮稳定同位素:对使用水银稳定同位素作为示踪物源

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Tibetan Plateau is located at a mountain region isolated from direct anthropogenic sources. Mercury concentrations and stable isotopes of carbon, nitrogen, and mercury were analyzed in sediment and biota for Nam Co and Yamdrok Lake. Biotic mercury concentrations and high food web magnification factors suggested that Tibetan Plateau is no longer a pristine site. The primary source of methylmercury was microbial production in local sediment despite the lack of direct methylmercury input. Strong ultraviolet intensity led to extensive photochemical reactions and up to 65% of methylmercury in water was photo-demethylated before entering the food webs. Biota displayed very high Δ(199)Hg signatures, with some highest value (8.6%) ever in living organisms. The δ(202)Hg and Δ(199)Hg in sediment and biotic samples increased with trophic positions (δ(15)N) and %methylmercury. Fish total length closely correlated to δ(13)C and Δ(199)Hg values due to dissimilar carbon sources and methylmercury pools in different living waters. This is the first mercury isotope study on high altitude lake ecosystems that demonstrated specific isotope fractionations of mercury under extreme environmental conditions.
机译:西藏高原位于山区与直接人体源分离的山区。碳,氮气和汞的汞浓度和稳定同位素被分析为NAM CO和Yamdrok湖的沉积物和生物塔。生物汞浓度和高食物Web放大因素表明,藏高平台不再是原始位点。尽管缺乏直接甲基汞输入,但甲基汞的主要来源在局部沉积物中是微生物生产。强烈的紫外线强度导致了广泛的光化学反应,在进入食物网之前,水中的甲基汞的甲基汞高达65%是光脱甲基化。 Biota显示出非常高的δ(199)汞次签名,生物体中有一些最高值(8.6%)。沉积物和生物样品中的δ(202)Hg和δ(199)Hg随着营养位置(δ(15)n)和%甲基汞而增加。由于不同生活水域中的不同碳源和甲基汞,鱼总长度与δ(13)C和δ(199)Hg值紧密相关。这是关于高海拔湖生态系统的第一种汞同位素研究,在极端的环境条件下展示了汞的特异性同位素分级。

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