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Variation in the isotopic composition of zinc in the natural environment and the use of zinc isotopes in biogeosciences: a review

机译:锌在自然环境中的同位素组成变化和锌同位素在生物地球科学中的用途:综述

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摘要

Zinc (Zn) is a trace element that is, as a building block in various enzymes, of vital importance for all living organisms. Zn concentrations are widely determined in dietary, biological and environmental studies. Recent papers report on the first efforts to use stable Zn isotopes in environmental studies, and initial results point to significant Zn isotope fractionation during various biological and chemical processes, and thus highlight their potential as valuable biogeochemical tracers. In this article, we discuss the state-of-the-art analytical methods for isotopic analysis of Zn and the procedures used to obtain accurate Zn isotope ratio results. We then review recent applications of Zn isotope measurements in environmental and life sciences, emphasizing the mechanisms and causes responsible for observed natural variation in the isotopic composition of Zn. We first discuss the Zn isotope variability in extraterrestrial and geological samples. We then focus on biological processes inducing Zn isotope fractionation in plants, animals and humans, and we assess the potential of Zn isotope ratio determination for elucidating sources of atmospheric particles and contamination. Finally, we discuss possible impediments and limitations of the application of Zn isotopes in (geo-) environmental studies and provide an outlook regarding future directions of Zn isotope research.
机译:锌(Zn)是一种微量元素,作为各种酶的组成部分,对所有活生物体都至关重要。锌的浓度在饮食,生物学和环境研究中被广泛确定。最近的论文报道了在环境研究中首次尝试使用稳定的锌同位素的努力,初步结果表明在各种生物和化学过程中锌同位素的分馏显着,因此突出了其作为有价值的生物地球化学示踪剂的潜力。在本文中,我们讨论了用于锌同位素分析的最新分析方法,以及用于获得准确的锌同位素比结果的程序。然后,我们回顾了Zn同位素测量在环境和生命科学中的最新应用,重点介绍了导致观察到的Zn同位素组成的自然变化的机理和原因。我们首先讨论地外和地质样品中的锌同位素变异性。然后,我们将重点放在在植物,动物和人类中诱导Zn同位素分级分离的生物过程上,并评估Zn同位素比测定对阐明大气颗粒物和污染源的潜力。最后,我们讨论了在(地质)环境研究中应用锌同位素的可能的障碍和局限性,并对锌同位素研究的未来方向提供了展望。

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