地质学
Mercury(编程语言)
二叠纪
污染
地球科学
古生物学
海洋学
地球化学
生态学
构造盆地
生物
程序设计语言
计算机科学
作者
Stephen E. Grasby,Wenjie Shen,Runsheng Yin,James D. Gleason,Joel D. Blum,Ryan F. Lepak,James P. Hurley,Benoı̂t Beauchamp
出处
期刊:Geology
[Geological Society of America]
日期:2016-11-09
卷期号:45 (1): 55-58
被引量:213
摘要
Abstract Sedimentary records from the northwest margin of Pangea and the Tethys show anomalously high Hg levels at the latest Permian extinction boundary. Background δ202Hg values are consistent with normal marine conditions but exhibit negative shifts coincident with increased Hg concentrations. Hg isotope mass-independent fractionation (Δ199Hg) trends are consistent with volcanic input in deep-water marine environments. In contrast, nearshore environments have Δ199Hg signatures consistent with enhanced soil and/or biomass input. We hypothesize that the deep-water signature represents an overall global increase in volcanic Hg input and that this isotope signature is overwhelmed in nearshore locations due to Hg from terrestrial sources. High-productivity nearshore regions may have experienced stressed marine ecosystems due to enhanced Hg loading.
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