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金属稳定同位素特征作为环境地球化学示踪剂。

Metal stable isotope signatures as tracers in environmental geochemistry.

机构信息

Soil Chemistry Group, Institute of Biogeochemistry and Pollutant Dynamics, ETH Zurich , 8092 Zurich, Switzerland.

出版信息

Environ Sci Technol. 2015 Mar 3;49(5):2606-24. doi: 10.1021/es504683e. Epub 2015 Feb 17.

Abstract

The biogeochemical cycling of metals in natural systems is often accompanied by stable isotope fractionation which can now be measured due to recent analytical advances. In consequence, a new research field has emerged over the last two decades, complementing the traditional stable isotope systems (H, C, O, N, S) with many more elements across the periodic table (Li, B, Mg, Si, Cl, Ca, Ti, V, Cr, Fe, Ni, Cu, Zn, Ge, Se, Br, Sr, Mo, Ag, Cd, Sn, Sb, Te, Ba, W, Pt, Hg, Tl, U) which are being explored and potentially applicable as novel geochemical tracers. This review presents the application of metal stable isotopes as source and process tracers in environmental studies, in particular by using mixing and Rayleigh model approaches. The most important concepts of mass-dependent and mass-independent metal stable isotope fractionation are introduced, and the extent of natural isotopic variations for different elements is compared. A particular focus lies on a discussion of processes (redox transformations, complexation, sorption, precipitation, dissolution, evaporation, diffusion, biological cycling) which are able to induce metal stable isotope fractionation in environmental systems. Additionally, the usefulness and limitations of metal stable isotope signatures as tracers in environmental geochemistry are discussed and future perspectives presented.

摘要

在自然系统中,金属的生物地球化学循环通常伴随着稳定同位素分馏,由于最近的分析进展,现在可以对其进行测量。因此,在过去的二十年中,出现了一个新的研究领域,用更多的元素(Li、B、Mg、Si、Cl、Ca、Ti、V、Cr、Fe、Ni、Cu、Zn、Ge、Se、Br、Sr、Mo、Ag、Cd、Sn、Sb、Te、Ba、W、Pt、Hg、Tl、U)来补充传统的稳定同位素体系(H、C、O、N、S),这些元素正在被探索,并有可能作为新的地球化学示踪剂。本综述介绍了金属稳定同位素作为环境研究中源和过程示踪剂的应用,特别是通过使用混合和瑞利模型方法。介绍了质量依赖和质量独立的金属稳定同位素分馏的最重要概念,并比较了不同元素的自然同位素变化程度。特别关注能够在环境系统中诱导金属稳定同位素分馏的过程(氧化还原转化、络合、吸附、沉淀、溶解、蒸发、扩散、生物循环)。此外,还讨论了金属稳定同位素特征作为环境地球化学示踪剂的有用性和局限性,并提出了未来的展望。

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