粤东北桃源铀矿床黄铁矿地球化学特征及其地质意义
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本文为中国核工业地质局项目(编号:201925、201925-2和201926)、中国核工业集团有限公司二九〇研究所科研创新项目(编号:201901)、东华理工大学资助项目(编号:NRE1904和1410000874)、江西省“双千计划”创新领军人才长期项目和国家自然科学基金资助项目(编号:42002095)的成果


Geochemical characteristics of pyrite from Taoyuan uranium deposit in Northeastern Guangdong and their geological significance
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    摘要:

    粤东北桃源铀矿床位于华南铀成矿省武夷山铀成矿带,其矿床成因、成矿物理化学环境特征等还未开展深入研究。黄铁矿的地球化学特征往往能够有效地反映其形成时的地球化学环境。桃源铀矿床中黄铁矿与沥青铀矿成因关系密切。因此笔者在野外地质调查和岩相学基础上,利用LA- ICP- MS原位分析技术,对桃源矿床黄铁矿主、微量元素开展研究。结果表明:①黄铁矿主量元素w(Fe)=41.64% ~ 49.39%,平均值为45.83%;w(S)=50.56% ~ 57.62%,平均值为53.73%,w(Fe)/w(S)=0.73 ~ 0.98,平均值为0.85,表明其形成环境是一个微弱缺铁,相对富硫的相对封闭的地球化学环境;②黄铁矿中相对富集Si、Na、Al、K、Ca、Cr、Co、Ni、Ti、Cu、Ge、As、Se、Bi、Pb等微量元素;③绝大多数微量元素与主量元素Fe、S无明显线性关系,表明在黄铁矿形成过程中,这些微量元素的地球化学行为除受到类质同象因素的影响外,还受其他因素影响;④成矿元素U与部分微量元素显示出较好的正相关关系,其中Na、Ti等元素含量高表明与铀矿物在空间上紧密相关的黄铁矿形成于成矿早期的碱性热液蚀变阶段,而非成矿期,要早于铀成矿时间,并为铀成矿提供还原剂;⑤黄铁矿内部微裂隙发育,成矿期铀矿物容易进入其中,从而引起裂隙附近铀矿含量升高。伴随的高含量As表明其形成于中低温热液环境。

    Abstract:

    Taoyuan uranium deposit is located in the Wuyishan uranium metallogenic belt in the south China uranium metallogenic province,but the genesis of mineral deposit and the physical and chemical environment of mineralization have not been studied in depth.Geochemical characteristics of pyrite can often effectively reflect the geochemical environment at the time of formation.Pyrite and pitchblende are closely related in Taoyuan uranium deposit,northeastern Guangdong.Methods: This paper uses LA-ICP-MS testing technology to systematically analyze the major and trace elements of pyrite in the Taoyuan deposit.Results: The analytical results indicate that:①w(Fe)of pyrite are 41.64%~49.39% with the average of 45.83%,whereas its w(S)are 50.56%~57.62% with the average of 53.73%.The w(Fe)/w(S) is 0.73~0.98 the average of 0.85,indicating that its formation environment is a relatively closed geochemical environment with a weak iron deficiency and relatively rich sulfur;② Si, Na, Al, K, Ca, Cr, Co, Ni, Ti, Cu, Ge, As, Se, Bi, Pb and other trace elements are relatively enriched in pyrite;③There is no obvious linear relationship between most of the trace elements and the main elements Fe and S,indicating that the geochemical behavior of these trace elements is affected by other factors in addition to the isomorphic factors during the formation of pyrite.Conclusions: ① The ore-forming element U is positively correlated with some trace elements.The high content of Na,Ti and other elements indicates that the pyrite,which is closely related to uranium minerals in space,was formed in the alkaline hydrothermal alteration stage at the early stage of mineralization rather than the mineralization stage;② The micro- cracks within the pyrite are developed,and uranium minerals are easy to enter during the mineralization period,which causes the increase of uranium deposit amount near the cracks.The accompanying high content of as indicates that the pyrite was formed in a medium—low temperature hydrothermal environment;③ Pyrite provided reduction for uranium mineralization.

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李海东,田世洪,江卫兵,祁家明,刘斌,孙中瑞,彭渤洋.2021.粤东北桃源铀矿床黄铁矿地球化学特征及其地质意义[J].地质论评,67(4):67041157-67041167,[DOI].
LI Haidong, TIAN Shihong, JIANG Weibing, QI Jiaming, LIU Bin, SUN Zhongrui, PENG Boyang.2021. Geochemical characteristics of pyrite from Taoyuan uranium deposit in Northeastern Guangdong and their geological significance[J]. Geological Review,67(4):67041157-67041167.

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  • 收稿日期:2021-03-25
  • 最后修改日期:2021-05-14
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  • 在线发布日期: 2021-07-19
  • 出版日期: 2021-07-15