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Different proportion of mantle-derived noble gases in the Cu–Fe and Fe skarn deposits: He–Ar isotopic constraint in the Edong district, Eastern China
Guiqing Xie;  Jingwen Mao;  Wei Li;  Qiaoqiao Zhu;  Hanbin Liu;  Guohao Jia;  Yanhe Li;  Junjie Li;   Jia Zhang
2016
Source PublicationOre Geology Reviews
Volume72Issue:Part 1Pages:343-354
Abstract

Cu and Fe skarns are two economically important types of skarn deposit worldwide, but the critical factors controlling the difference in metal associations remain enigmatic. The Edong ore district, China, presents an excellent opportunity to study the differences between Cu–Fe and Fe skarn deposits. We have measured He–Ar isotopes trapped in fluid released by crushing pyrite and chalcopyrite from four well known Cu–Fe and Fe deposits in the Edong district, Eastern China, with the aim of constraining their different fluid source and then discussing the factors controlling their variations between Cu–Fe and Fe skarns.

He–Ar isotopic compositions are markedly different between the Cu–Fe and Fe skarn deposits in the Edong district. 3He/4He ratios in the Cu–Fe deposits are 0.75–1.87 Ra and 40Ar/36Ar ratios are 300–472. By contrast, He–Ar isotopic compositions in minerals from the Fe deposits have lower 3He/4He and 40Ar/36Ar ratios of 0.08–0.93 Ra and 299–361, respectively. These results suggest that noble gas of the Cu–Fe and Fe skarn deposits in the Edong district formed by variable degrees of mixing between a magmatic fluid containing a mantle component, and modified air–saturated water (MASW). Importantly, He–Ar isotope data provide compelling evidence that contrasting fluid sources were involved in the formation of the Cu–Fe and Fe deposits, i.e., mineralizing fluids of the Cu–Fe deposits could have a greater contribution from mantle component, and little involvement of MASW than those of the Fe deposits in the Edong district. This conclusion is consistent with obvious differences in the nature of the intrusions related to mineralization, as well as sulfur isotopic compositions of sulfides in the Cu–Fe and Fe deposits. It is most likely that different proportion of mantle-derived noble gases play an essential role in controlling differences between the Cu–Fe and Fe skarn deposits.

KeywordFe Skarn deposit cu–Fe Skarn Deposit he–ar Isotopes middle–lower Yangtze River Metallogenic Belt
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/9604
Collection矿床地球化学国家重点实验室
Affiliation1.MLR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, CAGS, Beijing 100037, People's Republic of China
2.Beijing Research Institute of Uranium Geology, China National Nuclear Corporation, Beijing 100029, People's Republic of China
3.Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, People's Republic of China
Recommended Citation
GB/T 7714
Guiqing Xie;Jingwen Mao;Wei Li;Qiaoqiao Zhu;Hanbin Liu;Guohao Jia;Yanhe Li;Junjie Li; Jia Zhang. Different proportion of mantle-derived noble gases in the Cu–Fe and Fe skarn deposits: He–Ar isotopic constraint in the Edong district, Eastern China[J]. Ore Geology Reviews,2016,72(Part 1):343-354.
APA Guiqing Xie;Jingwen Mao;Wei Li;Qiaoqiao Zhu;Hanbin Liu;Guohao Jia;Yanhe Li;Junjie Li; Jia Zhang.(2016).Different proportion of mantle-derived noble gases in the Cu–Fe and Fe skarn deposits: He–Ar isotopic constraint in the Edong district, Eastern China.Ore Geology Reviews,72(Part 1),343-354.
MLA Guiqing Xie;Jingwen Mao;Wei Li;Qiaoqiao Zhu;Hanbin Liu;Guohao Jia;Yanhe Li;Junjie Li; Jia Zhang."Different proportion of mantle-derived noble gases in the Cu–Fe and Fe skarn deposits: He–Ar isotopic constraint in the Edong district, Eastern China".Ore Geology Reviews 72.Part 1(2016):343-354.
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