湘赣边界鹿井铀矿床流体包裹体及成矿机制
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Qifeng Zhao | Fujun Zhong | Yong Zhang | Xiaotian Zhang | Jiayong Pan | Guoqi Liu | Fei Xia | Ying-Ting Liu | Di Huang
[1] Yangyang Feng,et al. Genesis and ore-forming process of the Benqu mesothermal gold deposit in the Jiapigou ore cluster, NE China: Constraints from geology, geochronology, fluid inclusions, and whole-rock and isotope geochemistry , 2021 .
[2] D. Alderton. Fluid Inclusions , 2021, Encyclopedia of Geology.
[3] Hongrui Zhang,et al. Ore geology, fluid inclusion, and stable isotope constraints on the origin of the Damoqujia gold deposit, Jiaodong Peninsula, China , 2020 .
[4] 马旺,et al. 西藏列廷冈-勒青拉铅锌铁铜钼矿床成矿流体特征:来自流体包裹体及碳氢氧同位素的证据 , 2019, Earth Science-Journal of China University of Geosciences.
[5] Hongrui Zhang,et al. Geology and ore-forming fluids of the Dayingezhuang gold deposit, Jiaodong Peninsula, eastern China: Implications for mineral exploration , 2019, Journal of Geochemical Exploration.
[6] Z. Hou,et al. Geology, Fluid Inclusion, and H–O–S–Pb Isotope Constraints on the Mineralization of the Xiejiagou Gold Deposit in the Jiaodong Peninsula , 2019, Geofluids.
[7] 福军 钟,et al. 粤北长江铀矿田辉长闪长岩的岩石成因及其与铀成矿的关系 , 2019, Earth Science-Journal of China University of Geosciences.
[8] Y. Liu,et al. Genesis and Metallogenic Process of the Lujing Uranium Deposit, Southwest Jiangxi Province, China: Constraints of Micropetrography and S–C–O Isotopes , 2018 .
[9] Ke‐yong Wang,et al. Genesis of the Tianbaoshan Pb–Zn–Cu–Mo polymetallic deposit in eastern Jilin, NE China: Constraints from fluid inclusions and C–H–O–S–Pb isotope systematics , 2017 .
[10] Liang Li,et al. Origin and evolution of the ore-forming fluids of the Erdaogou and Xiaobeigou gold deposits, Jiapigou gold province, NE China , 2016 .
[11] Cheng Lu,et al. Ore geology, fluid inclusion and 40Ar/39Ar geochronology constraints on the genesis of the Yingchengzi gold deposit, southern Heilongjiang Province, NE China , 2016 .
[12] R. Hu,et al. Timing of uranium mineralization and geological implications of Shazijiang Granite-Hosted uranium deposit in Guangxi, South China: New constraint from chemical U-Pb age , 2015, Journal of Earth Science.
[13] R. Hu,et al. In-situ SIMS uraninite U–Pb dating and genesis of the Xianshi granite-hosted uranium deposit, South China , 2015 .
[14] Li‐Qiang Yang,et al. Fluid immiscibility and gold deposition in the Xincheng deposit, Jiaodong Peninsula, China: A fluid inclusion study , 2015 .
[15] H. Ling,et al. SHRIMP zircon U-Pb ages and tectonic implications for Indosinian granitoids of southern Zhuguangshan granitic composite, South China , 2012 .
[16] Jian‐tang Peng,et al. Uranium Metallogenesis in South China and Its Relationship to Crustal Extension during the Cretaceous to Tertiary , 2008 .
[17] R. Hu,et al. K-Ar Dating, Geochemical, and Sr-Nd-Pb Isotopic Systematics of Late Mesozoic Mafic Dikes, Southern Jiangxi Province, Southeast China: Petrogenesis and Tectonic Implications , 2006 .
[18] R. Hu,et al. Geochemistry, Petrogenesis, and Tectonic Significance of Mesozoic Mafic Dikes, Fujian Province, Southeastern China , 2004 .
[19] Xian‐Hua Li. Cretaceous magmatism and lithospheric extension in Southeast China , 2000 .
[20] B. He,et al. Mineralogical and geochemical constraints on the genesis of the granite-hosted Huangao uranium deposit, SE China , 1999 .
[21] R. Xavier,et al. Fluid evolution and chemical controls in the Fazenda Maria Preta (FMP) gold deposit, Rio Itapicuru Greenstone Belt, Bahia, Brazil , 1999 .
[22] B. Spiro,et al. Fluid mixing in the generation of mesothermal gold mineralisation in the Transvaal Sequence, Transvaal, South Africa , 1992 .
[23] R. Bodnar. A method of calculating fluid inclusion volumes based on vapor bubble diameters and P-V-T-X properties of inclusion fluids , 1983 .
[24] R. Clayton,et al. Oxygen isotope exchange between quartz and water , 1972 .