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东昆仑卡尔却卡矿区似斑状二长花岗岩成因:锆石U-Pb年龄及Sr-Nd同位素制约 被引量:13
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作者 李积清 陈静 +3 位作者 史青瑞 李彬 王进寿 舒树兰 《矿物岩石》 CAS CSCD 北大核心 2016年第3期87-95,共9页
卡尔却卡铜多金属矿区似斑状二长花岗岩体与成矿关系密切。LA-ICP-MS锆石U-Pb结果表明岩体形成时代为220.4 Ma±0.79Ma(MSWD=0.30)。岩石地球化学特征显示其属于准铝质(ACNK=0.93~1.04)、高钾钙碱性-钾玄岩系列,具有大离子亲石元素... 卡尔却卡铜多金属矿区似斑状二长花岗岩体与成矿关系密切。LA-ICP-MS锆石U-Pb结果表明岩体形成时代为220.4 Ma±0.79Ma(MSWD=0.30)。岩石地球化学特征显示其属于准铝质(ACNK=0.93~1.04)、高钾钙碱性-钾玄岩系列,具有大离子亲石元素富集、高场强元素亏损、轻稀土富集、负Eu异常中等(σEu介于0.47~0.70之间)等特征。岩体(^(87)Sr/^(86)Sr)_ⅰ值为0.710 71~0.713 66,平均0.711 52,εNd(t)值为-3.6^-5.4,平均-4.1,T_(2DM)=1.29-1.44Ga,平均1.36Ga。考虑到本区中晚三叠是花岗岩类普遍含大量暗色镁铁质包体,具有明显的岩浆底侵和混合的证据,且样品Sr-Nd同位素显示富集地幔源区特征,认为似斑状二长花岗岩形成于晚三叠世后碰撞阶段,岩浆起源于富集地幔的基性岩浆底侵并与古老陆壳发生混合,幔源岩浆活动与成矿作用关系密切,解释了东昆仑地区成矿作用主要与中晚三叠世岩浆活动有关。 展开更多
关键词 锆石U-PB年龄 SR-ND同位素 似斑状二长花岗岩 卡尔却卡矿床 东昆仑
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Numerical simulation of hydrothermal mineralization associated with simplified chemical reactions in Kaerqueka polymetallic deposit, Qinghai, China 被引量:9
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作者 Yan-hong ZOU Yao LIU +5 位作者 Yong PAN Kuan-da YANG Ta-gen DAI Xian-cheng MAO Jian-qing LAI Hai-long TIAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第1期165-177,共13页
The Kaerqueka polymetallic deposit, Qinghai, China, is one of the typical skarn-type polymetallic ore deposits in the Qimantage metallogenic belt. The dynamic mechanism on the formation of the Kaerqueka polymetallic d... The Kaerqueka polymetallic deposit, Qinghai, China, is one of the typical skarn-type polymetallic ore deposits in the Qimantage metallogenic belt. The dynamic mechanism on the formation of the Kaerqueka polymetallic deposit is always an interesting topic of research. We used the finite difference method to model the mineralizing process of the chalcopyrite in this region with considering the field geological features, mineralogy and geochemistry. In particular, the modern mineralization theory was used to quantitatively estimate the related chemical reactions associated with the chalcopyrite formation in the Kaerqueka polymetallic deposit. The numerical results indicate that the hydrothermal fluid flow is a key controlling factor of mineralization in this area and the temperature gradient is the driving force of pore-fluid flow. The metallogenic temperature of chalcopyrite in the Kaerqueka polymetallic deposit is between 250 and 350 ℃. The corresponding computational results have been verified by the field observations. It has been further demonstrated that the simulation results of coupled models in the field of emerging computational geosciences can enhance our understanding of the ore-forming processes in this area. 展开更多
关键词 numerical simulation heat transfer chemical reaction hydrothermal mineralization Kaerqueka polymetallic deposit
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