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Composite Metallogenic Systems in the Weihai Area of Shandong and Evolution of Continental Dynamic Regimes
作者姓名:SUN  Zhongshi  WANG  Peifu  DENG  Jun  WANG  Qingfei  WANG  Jianping  MU  Taisheng  SUN  Li  FAN  Siqi  YE  Songqing  LIU  Zhenghong  CUI  Shuxue
作者单位:[1]Department of Earth Science, Jilin University, Changchun, Jilin 136001 [2]Xiadian Gold Mine, Zhaoyuan, Shandong 265418 [3]Department of Geosciences and Mineral Resources, China University of Geosciences, Beijing 100083
基金项目:This study is supported jointly by the National Natural Science Foundation of China (Grants 40272051 and 40572063) and the Key Foundation of National Natural Science in China (Grant 40234051). We also thank Academician Zhai Yusheng for his assistance and guidance.
摘    要:Based on 9 sheets of 1:50,000-scale regional geological survey and guided by the theory of metallogenic systems and integrated analyses of the structural and metallogenic features, this paper hereby puts forward the composite metallogenic systems of the Weihai area, Shandong Province, aiming at solving the problems on the origins and ore-controlling structures of the numerous deposits in the area. Its scientific significance is reflected in the following three aspects: (1) The basic features of the composite metallogenic systems can be recognized, which consist of two types: the Proterozoic metamorphic-hydrothermal metallogenic system and the Mesozoic magmatic-hydrothermal metallogenic system (i.e. the Indosinian-early Yanshanian contact metasomatic metallogenic series and the mid-late Yanshanian magmatic-hydrothermal metallogenic series). The two series display arcuate and NW-right lateral arrangements and a N-S parallel zonal distribution respectively, with the corresponding mineral assemblages being Au+Ag+Pb+Zn, etc.; and Cu+Mo+Fe, Au+Ag+Cu+Pb- Zn+Mo+Co-Ni+sulfides+silicides+K-feldspar, etc. (2) The composite metallogenic systems may be used to interpret the complicated genetic relations of the deposits. Through analyses of the relations between the three main metallogenic intervals and their corresponding source rock series (the Jingshan and Rongcheng groups; the Wendong super-unit and the early-middle Yanshanian Weideshan super-unit; and the mid-late Yanshanian Weideshan and Laoshan super-units) as well as a case study of the Fanjiabu gold deposit, we have distinguished the consanguinity between the contact metasomatic (skarn-type) metallogenic series and the magmatic-hydrothermal metallogenic series as well as the noncognate superposition between the two and the metamorphic-hydrothermal metallogenic system. (3) The composite metallogenic systems are easily related to the evolution of continental dynamic regimes. The formation of the metamorphic-hydrothermal metallogenic system has undergone transformations of three different types of tectono-dynamic regimes from extension→compression→ shearing; that of the contact metasomatic (skarn-type) metallogenic system from compression→extension→compression; and that of the magmatic-hydrothermal metallogenic system from extension →subductive compression of the Pacific Plate. The evolutions of the three types are all attributed to the opening-closing or divergence-convergence of the paleocontinent, and all their mineralization corresponds to the interval of transformation from the end of convergence to early integration of the Weihai paleocontinent. All these will benefit our deeper study of the dynamics of continental metallogenic processes.

关 键 词:山东  威海地区  复合成矿系统  大陆动态状况  地质演变
收稿时间:2005-09-28
修稿时间:3/9/2006 12:00:00 AM

Composite Metallogenic Systems in the Weihai Area of Shandong and Evolution of Continental Dynamic Regimes
Authors:SUN Zhongshi  WANG Peifu  DENG Jun  WANG Qingfei  WANG Jianping  MU Taisheng  SUN Li  FAN Siqi  YE Songqing  LIU Zhenghong and CUI Shuxue
Institution:SUN Zhongshi,WANG Peifu,DENG Jun,WANG Qingfei,WANG Jianping,MU Taisheng,SUN Li,FAN Siqi,YE Songqing,LIU Zhenghong and CUI Shuxue Department of Earth Science,Jilin University,Changchun,Jilin Xiadian Gold Mine,Zhaoyuan,Shandong Department of Geosciences and Mineral Resources,China University of Geosciences,Beijing
Abstract:Based on 9 sheets of 1:50,000-scale regional geological survey and guided by the theory of metallogenic systems and integrated analyses of the structural and metallogenic features, this paper hereby puts forward the composite metallogenic systems of the Weihai area, Shandong Province,aiming at solving the problems on the origins and ore-controlling structures of the numerous deposits in the area. Its scientific significance is reflected in the following three aspects: (1) The basic features of the composite metallogenic systems can be recognized, which consist of two types: the Proterozoic metamorphic-hydrothermal metallogenic system and the Mesozoic magmatic-hydrothermal metallogenic system (i.e. the Indosinian-early Yanshanian contact metasomatic metallogenic series and the mid-late Yanshanian magmatic-hydrothermal metallogenic series). The two series display arcuate and NW-right lateral arrangements and a N-S parallel zonal distribution respectively, with the corresponding mineral assemblages being Au Ag Pb Zn, etc.; and Cu Mo Fe, Au Ag Cu Pb-Zn Mo Co-Ni sulfides silicides K-feldspar, etc. (2) The composite metallogenic systems may be used to interpret the complicated genetic relations of the deposits. Through analyses of the relations between the three main metallogenic intervals and their corresponding source rock series (the Jingshan and Rongcheng groups; the Wendong super-unit and the early-middle Yanshanian Weideshan super-unit;and the mid-late Yanshanian Weideshan and Laoshan super-units) as well as a case study of the Fanjiabu gold deposit, we have distinguished the consanguinity between the contact metasomatic (skarn-type) metallogenic series and the magmatic-hydrothermal metallogenic series as well as the noncognate superposition between the two and the metamorphic-hydrothermal metallogenic system.(3) The composite metallogenic systems are easily related to the evolution of continental dynamic regimes. The formation of the metamorphic-hydrothermal metallogenic system has undergone transformations of three different types of tectono-dynamic regimes from extension→compression→shearing; that of the contact metasomatic (skarn-type) metallogenic system from compression→extension→compression; and that of the magmatic-hydrothermal metallogenic system from extension →subductive compression of the Pacific Plate. The evolutions of the three types are all attributed to the opening-closing or divergence-convergence of the paleocontinent, and all their mineralization corresponds to the interval of transformation from the end of convergence to early integration of the Weihai paleocontinent. All these will benefit our deeper study of the dynamics of continental metallogenic processes.
Keywords:composite metallogenic system  continental dynamic regime  Weihai  Shandong Province
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