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文献详情 >Re-Os isotope dating of pyrite... 收藏

Re-Os isotope dating of pyrite from the footwall mineralization zone of the Xinqiao deposit,Tongling,Anhui Province:Geochronological evidence for submarine exhalative sedimentation

Re-Os isotope dating of pyrite from the footwall mineralization zone of the Xinqiao deposit,Tongling,Anhui Province:Geochronological evidence for submarine exhalative sedimentation

作     者:GUO WeiMin LU JianJun JIANG ShaoYong ZHANG RongQing QI Liang 

作者机构:State Key Laboratory for Mineral Deposits Research School of Earth Sciences and Engineering Nanjing University Nanjing 210093 China State Key Laboratory o fOre Deposit Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550002 China 

出 版 物:《Chinese Science Bulletin》 (Chinese Science Bulletin)

年 卷 期:2011年第56卷第35期

页      面:3860-3865页

核心收录:

学科分类:070704[理学-海洋地质] 0709[理学-地质学] 07[理学] 0707[理学-海洋科学] 

基  金:supported by the National Natural Science Foundation of China (40930742 and 40221301) the Key Project of Natural Science Foundation of Jiangsu Province (BK2008026) the National Key Technology R&D Program (2009BAB43B03) a Ph.D. Program from the Foundation of the Ministry of Education of China (1999028435) 

主  题:海底喷流沉积 同位素年代学 矿化带 同位素定年 下盘 安徽铜陵 新桥 证据 

摘      要:The Xinqiao deposit is located in the Tongling area,Anhui *** deposit is dominantly composed of stratiform sulfide orebodies,which are restricted to the transitional zone from clastic rocks to carbonates at the base of the Late Carboniferous Huanglong *** are discordant veinlets or networks of mineralization in the footwall rocks below the stratiform sulfide *** underlying discordant mineralization zones coexist with conformable stratiform sulfide orebodies,which are considered to be the most representative features of massive sulfide deposits formed by submarine exhalative *** study reports a pyrite 187Re-187Os isotopic age of 319±13 Ma(MSWD=16) for the footwall mineralization *** isochron age is consistent with the interval of strata hosting the conformable stratiform sulfide orebody,and provides direct geochronological evidence for Carboniferous exhalative sedimentary mineralization.

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