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1氧化性富金斑岩-矽卡岩矿床中碲、硒、铊富集机制的研究进展显示文摘富金斑岩-矽卡岩矿床目前提供了全球几乎所有的硒、碲及部分铊产量,其中氧化性富金斑岩-矽卡岩矿床可共伴生碲、硒、铊等稀散金属。文章从元素地球化学行为、矿床类型、岩浆作用、赋存状态、稀散金属与铜金关系等方面,总结了氧化性富金斑岩-矽卡岩矿床中有关碲、硒、铊富集机制的研究进展。碲、硒具有亲铁和亲硫的特征,而铊具有亲硫和亲石的双重特征,三者具有不同程度的挥发性。岩浆热液型矿床伴生有碲、硒、铊矿化。基性岩浆的注入和岩浆硫化物熔离可能是氧化性富金斑岩-矽卡岩矿床碲、硒、铊富集的主要岩浆作用。氧化性富金斑岩-矽卡岩矿床中铜和金含量通常呈正相关性,发育有丰富的含碲/硒/铊矿物,但碲、硒、铊与铜、金的关系还不清楚。长江中下游成矿带发育多个氧化性矽卡岩金矿、矽卡岩铜金矿,伴生大规模的碲、硒、铊矿化,且已被综合回收利用,该带是探讨氧化性富金矽卡岩矿床中碲、硒、铊富集机制的理想对象。谢桂青 李新昊 韩颖霄 朱乔乔 李伟 叶晖 宋世伟 2020矿床地质2020,39,4:12
2U-Pb Geochronology, Elemental and Sr-Nd Isotopic Geochemistry of the Houyaoyu Granite Porphyries: Implication for the Genesis of Early Cretaceous Felsic Intrusions in East Qinling显示文摘The Early Cretaceous Houyaoyu granite porphyries are located in the south margin of the North China Craton. Field observations, petrography, geochronology, major and trace elemental and Sr-Nd isotopic compositions are reported to elucidate the genesis of the Houyaoyu granite porphyries. SIMS zircon U-Pb analyses for the Houyaoyu granite porphyries yield two concordant ages of 133.2± 2.3(2σ) and 131± 1.1(2σ) Ma, respectively. Major and trace elemental compositions indicate that these porphyries are high-K I-type granites with high contents of Si O2, K2 O, Rb, U, Pb, low Nb, Ta, Ti, and P. Initial 87 Sr/86 Sr ratios range from 0.708 3 to 0.709 7, and εNd(t) values range from-9.13 to-12.3, with corresponding two-stage depleted-mantle Nd model ages(T2 DM) varying from 1.57 to 1.91 Ga. This suggests that the Houyaoyu granite porphyries were predominantly derived from ancient lower continental crust, with minor involvement of mantle-derived components. On the basis of the tectonic evolution of the Qinling Orogen and geochemical characteristics of the Houyaoyu granite porphyries, it is proposed that they were formed in an extensional tectonic setting related to lithospheric destruction of the North China Craton, and produced Mo and Pb-Zn mineralization in East Qinling Orogen.Xiaohu He Hong Zhong Zhifang Zhao Shucheng Tan Weiguang Zhu Siqi Yang Wenjun Hu Zhong Tang Congfa Bao 2018Journal of Earth Science2018,29,4:5
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