Zoned orthopyroxenes in the Ni-Co sulfide ore-bearing Xiarihamu mafic-ultramafic intrusion in northern Tibetan Plateau, China: Implications for multiple magma replenishments
Kai-Yuan Wang;  Xie-Yan Song;   Jun-Nian Yi;  Stephen J. Barnes;   Yu-Wei She;  Wen-Qin Zheng;  Louise E. Schoneveld
刊名Ore Geology Reviews
2019
卷号113页码:1-19
关键词The Xiarihamu Mafic-ultramafic Intrusion orthopyroxene Zoning crystal Size Distribution cumulate magma Replenishment
英文摘要

The Xiarihamu mafic-ultramafic intrusion is situated in the East Kunlun Orogenic Belt (E-KOB), northern Tibetan Plateau, China, with Ni-Co sulfide mineralization mainly in orthopyroxenite and olivine orthopyroxenite. Whole-rock and mineral compositions show cyclic variations in drill-hole intersections through the Xiarihamu mafic-ultramafic intrusion. Microbeam X-ray fluorescence (XRF) mapping shows reverse zoning (Cr-poor core, Cr-rich rim) and oscillatory zoning (Cr-poor core, Cr-rich mantle and Cr-poor rim) in orthopyroxene of olivine orthopyroxenite and orthopyroxenite. Zoned orthopyroxenes are euhedral or subhedral, and there are relatively sharp interfaces between zones with distinct Cr contents. Crystal-size distribution (CSD) curves of orthopyroxenes in olivine orthopyroxenite show concave-upward curvature at size larger than 3.0 mm, and larger orthopyroxenes commonly display zoning, implying a secondary recrystallization and grain growth of larger orthopyroxenes. Quantitative analyses show that Cr and enstatite contents of cores are relatively lower, but incompatible element (e.g., Ti, Zr, Ga and Sr) contents of cores are higher than rims in reverse zoned orthopyroxenes, and chemical profiles of unzoned orthopyroxenes resemble those of rims (but different from those of cores) in reverse zoned orthopyroxenes.

Chemical profiles of orthopyroxenes indicate that Cr zoning is not due to the change in Cr partitioning behavior between orthopyroxene and silicate melt, which shows significant temperature and redox dependence. Textural feature and crystal-size distribution of orthopyroxenes suggest the formation of Cr-rich zones attests to the multi-stage growth in the process of magma replenishment, rather than a reactive liquid flow model or in-situ trapped liquid overgrowth. Orthopyroxene zoning, together with compositional variation and intrusive relationship between olivine orthopyroxenite and orthopyroxenite imply that the Xiarihamu mafic-ultramafic intrusion was formed by multiple magma replenishments with magma varying roughly from a more evolved to a more primitive composition.

语种英语
内容类型期刊论文
源URL[http://ir.gyig.ac.cn/handle/42920512-1/10838]  
专题地球化学研究所_矿床地球化学国家重点实验室
作者单位1.CSIRO Mineral Resources, Perth, WA 6151, Australia
2.Institute for Ecological Civilization of Karst Area, Guizhou Normal University, PR China
3.University of Chinese Academy of Sciences, Beijing 100049, PR China
4.State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, PR China
5.Laboratory of Isotope Geology, Ministry of Land and Resources, Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, PR China
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GB/T 7714
Kai-Yuan Wang;Xie-Yan Song; Jun-Nian Yi;Stephen J. Barnes; Yu-Wei She;Wen-Qin Zheng;Louise E. Schoneveld. Zoned orthopyroxenes in the Ni-Co sulfide ore-bearing Xiarihamu mafic-ultramafic intrusion in northern Tibetan Plateau, China: Implications for multiple magma replenishments[J]. Ore Geology Reviews,2019,113:1-19.
APA Kai-Yuan Wang;Xie-Yan Song; Jun-Nian Yi;Stephen J. Barnes; Yu-Wei She;Wen-Qin Zheng;Louise E. Schoneveld.(2019).Zoned orthopyroxenes in the Ni-Co sulfide ore-bearing Xiarihamu mafic-ultramafic intrusion in northern Tibetan Plateau, China: Implications for multiple magma replenishments.Ore Geology Reviews,113,1-19.
MLA Kai-Yuan Wang;Xie-Yan Song; Jun-Nian Yi;Stephen J. Barnes; Yu-Wei She;Wen-Qin Zheng;Louise E. Schoneveld."Zoned orthopyroxenes in the Ni-Co sulfide ore-bearing Xiarihamu mafic-ultramafic intrusion in northern Tibetan Plateau, China: Implications for multiple magma replenishments".Ore Geology Reviews 113(2019):1-19.
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