中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Copper isotopic compositions of the Zijinshan high-sulfidation epithermal Cu–Au deposit, South China: Implications for deposit origin

文献类型:期刊论文

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作者Li-Yan Wu; Rui-Zhong Hu; Xiao-Feng Li; Sheng-Ao Liu; Yan-Wen Tang; Yong-Yong Tang
刊名Ore Geology Reviews ; Ore Geology Reviews
出版日期2017 ; 2017
卷号83页码:191–199
关键词Copper Isotopes Copper Isotopes hypogene high-sulfidaton zijinshan south China hypogene high-sulfidaton zijinshan south China
英文摘要

The Zijinshan high-sulfidation epithermal Cu–Au deposit is located in the Zijinshan ore field of South China, comprising porphyry–epithermal Cu–Au–Mo–Ag ore systems. The Cu ore body is more than 1000 m thick and is characterized by an assemblage of digenite–covellite–enargite–alunite. Digenite is the dominant Cu-bearing mineral, which makes this deposit unique, although the mechanisms of digenite formation remain controversial. To elucidate the genesis of digenite, this paper presents the Cu isotopic compositions of Cu-sulfides in the Zijinshan high-sulfidation Cu–Au deposit. The Cu isotopic values (65Cu relative to NIST 976) of all samples range from 2.97‰ to +0.34‰, and most values fall in a narrow range from 0.49‰ to +0.34‰, which is similar to the Cu isotopic signature of typical porphyry systems. Copper isotope ratios of each mineral decrease with increasing depth, a trend that is also typical of porphyry deposits. The variation tendency of d65Cu values between sulfides is consistent with the sequence of mineral formation. These observations suggest that the Cu-sulfides in the Zijinshan Cu– Au deposit have a hypogene origin.

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The Zijinshan high-sulfidation epithermal Cu–Au deposit is located in the Zijinshan ore field of South China, comprising porphyry–epithermal Cu–Au–Mo–Ag ore systems. The Cu ore body is more than 1000 m thick and is characterized by an assemblage of digenite–covellite–enargite–alunite. Digenite is the dominant Cu-bearing mineral, which makes this deposit unique, although the mechanisms of digenite formation remain controversial. To elucidate the genesis of digenite, this paper presents the Cu isotopic compositions of Cu-sulfides in the Zijinshan high-sulfidation Cu–Au deposit. The Cu isotopic values (65Cu relative to NIST 976) of all samples range from 2.97‰ to +0.34‰, and most values fall in a narrow range from 0.49‰ to +0.34‰, which is similar to the Cu isotopic signature of typical porphyry systems. Copper isotope ratios of each mineral decrease with increasing depth, a trend that is also typical of porphyry deposits. The variation tendency of d65Cu values between sulfides is consistent with the sequence of mineral formation. These observations suggest that the Cu-sulfides in the Zijinshan Cu– Au deposit have a hypogene origin.

语种英语 ; 英语
源URL[http://ir.gyig.ac.cn/handle/42920512-1/8699]  
专题地球化学研究所_矿床地球化学国家重点实验室
通讯作者Li-Yan Wu
作者单位1.State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
2.Key Laboratory of Mineral Resources, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China
3.State Key Laboratory of Geological Process and Mineral Resources, China University of Geosciences, Beijing 100083, China
推荐引用方式
GB/T 7714
Li-Yan Wu,Rui-Zhong Hu,Xiao-Feng Li,et al. Copper isotopic compositions of the Zijinshan high-sulfidation epithermal Cu–Au deposit, South China: Implications for deposit origin, Copper isotopic compositions of the Zijinshan high-sulfidation epithermal Cu–Au deposit, South China: Implications for deposit origin[J]. Ore Geology Reviews, Ore Geology Reviews,2017, 2017,83, 83:191–199, 191–199.
APA Li-Yan Wu,Rui-Zhong Hu,Xiao-Feng Li,Sheng-Ao Liu,Yan-Wen Tang,&Yong-Yong Tang.(2017).Copper isotopic compositions of the Zijinshan high-sulfidation epithermal Cu–Au deposit, South China: Implications for deposit origin.Ore Geology Reviews,83,191–199.
MLA Li-Yan Wu,et al."Copper isotopic compositions of the Zijinshan high-sulfidation epithermal Cu–Au deposit, South China: Implications for deposit origin".Ore Geology Reviews 83(2017):191–199.

入库方式: OAI收割

来源:地球化学研究所

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