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Zircon U-Pb and chalcopyrite Re-Os geochronology, REE geochemistry of the Yinachang Fe-Cu-REE deposit in Yunnan Province and its geological significance
Ye XianTao; Zhu WeiGuang; Zhong Hong; He DeFeng; Ren Tao; Bai ZhongJie; Fan HongPeng; Hu WenJun
2013
发表期刊Acta Geologica Sinica
卷号29期号:4
摘要Yinachang Fe-Cu-REE ore deposit is hosted in the Paleoproterozoic Yinachang Formation of the Lower Kunyang Group in the Kangdian iron-copper metallogenic province, SW China. The main minerals in the Yinachang ore bodies consist of chalcopyrite, magnetite, quartz and calcite. As the host rocks of the deposit had experienced intensively alternation and metamorphism, the age and origin of the Yinachang deposit are still a matter of hot debate. U-Pb ages of detrital zircons from the volcanic tuff and breccia in the Yinachang Formation have been used to identify the provenance and evaluate the age of the Yinachang Formation of the Lower Kunyang Group. Most analyzed zircon grains show oscillatory zoning and have high Th/U ratios (> 0. 4), suggesting that they were mainly derived from igneous rocks. A total amounts of about 200 detrital zircons exhibit U-Pb age populations at 1.75 similar to 1. 88Ga, 1.90 similar to 2. 00Ga, 2.02 similar to 2. 20Ga and 2.30 similar to 2. 40Ga, with the oldest Pb-207/Pb-206 age of similar to 3. 0Ga and the youngest age of ca. 1750Ma. The dating results provide a maximum deposition age of ca. 1. 7Ga for the Yinachang Formation, and suggest the possible existence of older basement. Rhenium-osmium dating for six chalcopyrite samples from the Yinachang Fe-Cu-REE deposit was conducted to constrain the timing of sulfide mineralization. Direct Re-Os dating for chalcopyrite of ore minerals yields an isochron age of 1690 +/- 99Ma (MSWD = 9. 0) and a weighted mean of 1685 +/- 37Ma (MSWD = 3. 0), respectively, indicating the main ore-forming age of about 1. 7Ga. In addition, the major ore types exhibit significantly positive Eu anomaly and LREE enrichment, similar to those of modern submarine hydrothermal fluids. The above dating results reveal that the ore-forming age of the deposit is nearly contemporaneous with the deposition timing of the Yinachang Formation, and the characteristics of fluid deduced from REE indicate that the ore formation was related to submarine hydrothermal fluids activity. It is therefore suggested that the Yinachang Fe-Cu-REE deposit is a volcanic exhalation-hydrothermal sedimentary deposit. Several recent studies showed the occurrence of relatively widespread magmatism at ca. 1. 7Ga and large numbers of synchronous Fe-Cu deposits, suggesting that the magmatism is probably the crucial factor for the formation of deposits in this region. Furthermore, the Fe-Cu deposits in the Kangdian region may be related to the break-up of the Columbia supercontinent at about 1. 7Ga.
学科领域矿床地球化学
收录类别SCI
语种英语
文献类型期刊论文
条目标识符http://ir.gyig.ac.cn/handle/352002/5087
专题矿床地球化学国家重点实验室_矿床地球化学国家重点实验室_期刊论文
矿床地球化学国家重点实验室
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GB/T 7714
Ye XianTao,Zhu WeiGuang,Zhong Hong,et al. Zircon U-Pb and chalcopyrite Re-Os geochronology, REE geochemistry of the Yinachang Fe-Cu-REE deposit in Yunnan Province and its geological significance[J]. Acta Geologica Sinica,2013,29(4).
APA Ye XianTao.,Zhu WeiGuang.,Zhong Hong.,He DeFeng.,Ren Tao.,...&Hu WenJun.(2013).Zircon U-Pb and chalcopyrite Re-Os geochronology, REE geochemistry of the Yinachang Fe-Cu-REE deposit in Yunnan Province and its geological significance.Acta Geologica Sinica,29(4).
MLA Ye XianTao,et al."Zircon U-Pb and chalcopyrite Re-Os geochronology, REE geochemistry of the Yinachang Fe-Cu-REE deposit in Yunnan Province and its geological significance".Acta Geologica Sinica 29.4(2013).
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