Trace-element geochemical characteristics of pyrite in polymetallic mineralization in the depth of the Xiangshan uranium orefield, Jiangxi Province
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P578.2+92;P619.14

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    Abstract:

    Several kinds of lead, zinc, silver and copper polymetallic mineralization have been discovered in the Xiangshan uranium orefield during the deep exploration. In this paper, the authors used ICP-MS to determine the content of trace elements of pyrite in the polymetallic mineralization. The results show that the pyrites are rich in Co, Ni, Cu, Zn, Cd, Sb, Tl, Pb and Bi. The LREE/HREE, (La/Yb)N, Y/Ho, Zr/Hf and Nb/Ta characteristics of pyrites were compared with those of the magmatic rocks and metamorphic basement, and the results show that the ore-forming fluid of polymetallic mineralization was strongly mixed with metamorphic basement materials during upward movement. The LREE enrichment and the low Hf/Sm, Nb/La and Th/La ratios (less than 1) indicate that the ore-forming fluid of polymetallic mineralization was not rich in F and was significantly different from the ore-forming fluid of uranium. The Co content and Co/Ni ratios show that the polymetallic mineralization occurred in a medium-low temperature environment and the ore-forming materials were mainly from metamorphic basement.

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郭建,李子颖,聂江涛,黄志章,李秀珍,王健,司志发,王健菲,2020,江西相山铀矿田深部多金属矿化中黄铁矿微量元素地球化学特征[J].岩石矿物学杂志,39(3):257~266. GUO Jian, LI Zi-ying, NIE Jiang-tao, HUANG Zhi-zhang, LI Xiu-zhen, WANG Jian, SI Zhi-fa, WANG Jian-fei,2020,Trace-element geochemical characteristics of pyrite in polymetallic mineralization in the depth of the Xiangshan uranium orefield, Jiangxi Province[J]. Acta Petrologica et Mineralogica,39(3):257~266.

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History
  • Received:September 22,2019
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  • Online: May 11,2020
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