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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >TRACE ELEMENT AND Sr-Nd ISOTOPE GEOCHEMISTRY OF FLUORITE FROM THE XIANGSHAN URANIUM DEPOSIT, SOUTHEAST CHINA
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TRACE ELEMENT AND Sr-Nd ISOTOPE GEOCHEMISTRY OF FLUORITE FROM THE XIANGSHAN URANIUM DEPOSIT, SOUTHEAST CHINA

机译:湘乡铀矿床萤石中微量元素和Sr-Nd同位素地球化学

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摘要

The trace element and Sr-Nd isotope geochemistry of fluorite have been investigated in the Xiangshan volcanic rock-hosted uranium deposit in southeast China. Detailed Sr-Nd isotope data of the hydrothermal fluorite closely associated with the uranium mineralization suggest that ore-forming fluids were a combination of mantle-derived fluid and fluids equilibrated with basement metamorphic rocks. This model is consistent with previously published H-O isotope data and is incompatible with meteoric water as the only ore-forming fluid. Trace element geochemidal profiles across the uranium orebody can be interpreted to reflect reaction between the host rocks and a mantle-derived fluid containing high U and Th with low Th/U ratios. The mantle-derived fluid is considered to have been U-, F- and carbonate-rich. Mixing with shallowly circulated meteoric water within the fractures of the host volcanic rocks caused dilution and cooling of the ore-forming fluid and subsequent precipitation of fluorite and uranium ore.
机译:在中国东南部象山火山岩型铀矿床中,研究了萤石的痕量元素和Sr-Nd同位素地球化学。与铀矿化密切相关的热液萤石的详细Sr-Nd同位素数据表明,成矿流体是地幔衍生流体和与基底变质岩平衡的流体的组合。该模型与先前公布的H-O同位素数据一致,并且与作为唯一成矿流体的陨石水不兼容。可以解释整个铀矿体中的微量元素地球化学特征,以反映出主岩与地幔衍生的流体之间的反应,其中地幔流体中含有高的U和Th和低的Th / U比。地幔衍生流体被认为富含U,F和碳酸盐。在主体火山岩裂缝内与浅层循环的流水混合,导致成矿流体的稀释和冷却,以及随后的萤石和铀矿的沉淀。

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