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中国西南云南省富乐锌-铅-镉矿床中硫化物矿物风化过程中的镉同位素分馏。

Cd isotope fractionation during sulfide mineral weathering in the Fule Zn-Pb-Cd deposit, Yunnan Province, Southwest China.

机构信息

State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China; Department of Civil and Environmental Engineering, University of Wisconsin-Madison, Madison, WI 53706, USA.

State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China.

出版信息

Sci Total Environ. 2018 Mar;616-617:64-72. doi: 10.1016/j.scitotenv.2017.10.293. Epub 2017 Nov 3.

Abstract

Zinc (Zn)-Lead (Pb) deposits are generally rich in cadmium (Cd), and the weathering of sulfide minerals in such deposits results in large releases of Cd into the environment. From an environmental and public health standpoint, understanding Cd sources and cycling is critical to identifying potential hazards to humans. In this study, the Cd isotope compositions (expressed as δCd) of secondary minerals such as anglesite (-0.57±0.03‰; 2S.D.), granular smithsonite (0.04±0.14‰; 2S.D.), layered smithsonite (0.15±0.40‰; 2S.D.), hydrozincite (0.26±0.01‰; 2S.D.) and clay minerals (-0.01±0.06‰; 2S.D.) from the Fule Zn-Pb-Cd deposit, Southwest China, are investigated to better understand the Cd sources and cycling in this area. Combined with our previous study (Zhu et al., 2017), the work herein elucidates the patterns of Cd isotopic fractionation during the formation processes of such secondary minerals and traces the weathering of these minerals into the ecosystem. The δCd values of secondary minerals exhibit the following decreasing trend: hydrozincite>large granular smithsonite>small granular smithsonite>anglesite. Although different amounts of Cd were lost during the formation of equally sized samples, no or minor variations in Cd isotopic composition were observed. However, significant isotopic differences were observed between different size fractions. These results demonstrate that the particle size of secondary minerals and weathering products of sulfide significantly influence Cd isotope composition and fractionation during natural weathering. This systematic fractionation provides an initial foundation for the use of Cd isotopes as environmental tracers in ecosystems and in the global Cd isotope budget.

摘要

锌(Zn)-铅(Pb)矿床通常富含镉(Cd),这些矿床中硫化物矿物的风化会导致大量 Cd 释放到环境中。从环境和公共卫生的角度来看,了解 Cd 的来源和循环对于识别对人类的潜在危害至关重要。在这项研究中,研究了中国西南富勒锌-铅-镉矿床中次生矿物(如菱锌矿(-0.57±0.03‰;2S.D.)、粒状菱锌矿(0.04±0.14‰;2S.D.)、层状菱锌矿(0.15±0.40‰;2S.D.)、水锌矿(0.26±0.01‰;2S.D.)和粘土矿物(-0.01±0.06‰;2S.D.)的 Cd 同位素组成(表示为δCd),以更好地了解该地区 Cd 的来源和循环。结合我们之前的研究(Zhu 等人,2017 年),本文阐明了这些次生矿物形成过程中 Cd 同位素分馏的模式,并追踪了这些矿物风化进入生态系统的情况。次生矿物的δCd 值呈现出以下降低趋势:水锌矿>大颗粒菱锌矿>小颗粒菱锌矿>菱锌矿。尽管在形成同等大小的样品时,Cd 的损失量不同,但 Cd 同位素组成没有或只有微小的变化。然而,不同大小的样品之间存在明显的同位素差异。这些结果表明,次生矿物和硫化物风化产物的颗粒大小显著影响了天然风化过程中 Cd 同位素组成和分馏。这种系统的分馏为 Cd 同位素作为生态系统和全球 Cd 同位素收支中的环境示踪剂的应用提供了初步基础。

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