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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Application of the stable-isotope system to the study of sources and fate of Hg in the environment: A review
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Application of the stable-isotope system to the study of sources and fate of Hg in the environment: A review

机译:稳定同位素系统在环境中汞来源和归宿研究中的应用

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摘要

With the improvement of analytical methods and the development of multiple-collector inductively coupled plasma-mass spectrometry (MC-ICP/MS), research on non-traditional stable isotope (Cu, Zn, Fe, Se, Mo, Cr, Hg) in geochemistry has made tremendous progress in the past decade. Recent studies have demonstrated that both organic and inorganic reactions may cause Hg isotope fractionation, and variations of Hg isotopic composition in the environment have been successfully employed to explain Hg pollution history, Hg sources and tracking Hg pathways in nature. Furthermore, Hg isotopic fractionation studies can be a powerful tool in the calibration of global Hg cycling models. Stable isotope geochemistry of Hg is therefore becoming a new frontier subject in earth sciences. Based on summarizing previous research, this paper outlines the main advances in the study of Hg stable isotopes with particular emphasis placed on a brief explanation of Hg isotope analytical techniques, possible Hg isotope fractionation mechanisms observed in both natural and experimental processes, Hg isotope composition variations in different environmental matrices, and the application prospects of the Hg stable isotopes in environmental geosciences.
机译:随着分析方法的改进和多收集电感耦合等离子体质谱法(MC-ICP / MS)的研究,非传统稳定同位素(Cu,Zn,Fe,Se,Mo,Cr,Hg)的研究地球化学在过去十年中取得了巨大进步。最近的研究表明,有机和无机反应都可能导致汞同位素分级分离,环境中汞同位素组成的变化已成功地用于解释汞的污染历史,汞来源和追踪自然界中的汞途径。此外,汞同位素分馏研究可以成为校准全球汞循环模型的有力工具。因此,汞的稳定同位素地球化学正在成为地球科学中的一个新前沿学科。在总结以前的研究成果的基础上,本文概述了汞稳定同位素研究的主要进展,特别着重于对汞同位素分析技术的简要说明,在自然和实验过程中观察到的可能的汞同位素分馏机制,汞同位素组成变化在不同的环境基质中的应用,以及汞稳定同位素在环境地球科学中的应用前景。

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