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藏南扎西康铅锌银锑多金属矿多期多阶段成矿特征及其指示意义
引用本文:梁维,郑远川,杨竹森,李振清,刘英超,刘云飞,李秋耘,孙清钟,付强,侯增谦.藏南扎西康铅锌银锑多金属矿多期多阶段成矿特征及其指示意义[J].岩石矿物学杂志,2014,33(1):64-78.
作者姓名:梁维  郑远川  杨竹森  李振清  刘英超  刘云飞  李秋耘  孙清钟  付强  侯增谦
作者单位:中国地质科学院 地质研究所, 北京 100037;中国地质大学 地球科学与资源学院, 北京 100083;中国地质大学 地球科学与资源学院, 北京 100083;中国地质科学院 矿产资源研究所, 北京 100037;中国地质科学院 矿产资源研究所, 北京 100037;中国地质科学院 地质研究所, 北京 100037;中国地质科学院 地质研究所, 北京 100037;中国地质科学院 地质研究所, 北京 100037;中国地质科学院 地质研究所, 北京 100037;中国地质科学院 地质研究所, 北京 100037;中国地质科学院 地质研究所, 北京 100037
基金项目:国家重点基础研究发展计划(973计划)资助项目(2011CB403106,2011CB403104);中国地质调查局地质调查项目(1212011121253);国际地质对比计划(IGCP/SIDA-600);国家青年科学基金资助项目(41102033)
摘    要:扎西康铅锌银锑多金属矿床是北喜马拉雅金-锑成矿带的典型代表,更是该成矿带内为数不多的已达到大型规模的矿床。扎西康矿床具有丰富的金属矿物和脉石矿物组合以及极为复杂的成矿期次,因而其成矿世代的系统划分不仅对该矿床成矿过程的认识和理解具有重要意义,而且对区带成矿作用的认识也具有十分重要的指示意义。文章在总结前人的认识基础之上,根据矿物共生组合和相互穿插关系,提出了新的成矿期次划分方案,将扎西康矿床的成矿世代分为3期、7阶段和13亚阶段,这种多期多阶段成矿特点显示出扎西康矿床的形成可能是多期流体叠加的结果,并提出晚期锑元素对先存铅锌矿体的叠加改造成因。研究表明这种叠加改造成矿作用在整个区带上具有普遍意义,指示了在特提斯喜马拉雅锑金成矿带可能具有寻找铅锌矿体的潜力。

关 键 词:扎西康  铅锌银锑多金属矿  多阶段成矿  叠加改造
收稿时间:2013/3/26 0:00:00
修稿时间:2013/11/21 0:00:00

Multiphase and polystage metallogenic process of the Zhaxikang large-size Pb-Zn-Ag-Sb polymetallic deposit in southern Tibet and its implications
LIANG Wei,ZHENG Yuan-chuan,YANG Zhu-sen,LI Zhen-qing,LIU Ying-chao,LIU Yun-fei,LI Qiu-yun,SUN Qing-zhong,FU Qiang and HOU Zeng-qian.Multiphase and polystage metallogenic process of the Zhaxikang large-size Pb-Zn-Ag-Sb polymetallic deposit in southern Tibet and its implications[J].Acta Petrologica Et Mineralogica,2014,33(1):64-78.
Authors:LIANG Wei  ZHENG Yuan-chuan  YANG Zhu-sen  LI Zhen-qing  LIU Ying-chao  LIU Yun-fei  LI Qiu-yun  SUN Qing-zhong  FU Qiang and HOU Zeng-qian
Institution:Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China;School of Earth and Resources, China University of Geosciences, Beijing 100083, China;School of Earth and Resources, China University of Geosciences, Beijing 100083, China;Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China;Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China;Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China;Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China;Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China;Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China;Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China;Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China
Abstract:Located in Tethys Himalayan sub-terrane, the Zhaxikang Pb-Zn-Ag-Sb polymetallic ore deposit is not only a representative ore deposit in the antimony-gold metallogenic belt but also among a few deposits that have reached large-scale reserves. The Zhaxikang deposit has abundant assemblages of ore minerals and gangue minerals with complex ore-forming process, which indicates that recognition of ore-formaing stages and periods is very important for the study of the ore-forming process and also of indication significance for the understanding of the regional metallogenic belt. Based on summarizing the previous cognitions of the mineralization process as well as mineral paragenetic assemblages and crosscutting relationship of ore veins, the authors formulated a model for 3- period, 6-stage and 13-sub-stage complex ore-forming process, which indicates that the metallogenic process of the Zhaxikang deposit resulted from superimposition and remobilization of several stages of ore fluids, and the later antimony-bearing fluid was superimposed upon and reconstructed the pre-existent lead-zinc ore body. The overprinting and remobilization process has universal meaning for the study of the regional metallogenic belt and suggests the potential of finding lead-zinc deposits in the Tethys Himalayan Sb-Au metallogenic belt.
Keywords:Zhaxikang  Pb-Zn-Ag-Sb polymetallic deposit  multiphase and polystage metallogenic process  superimposition and remobilization metallogenesis
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