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Mass Transfer during Hematitization and Implications for Uranium Mineralization in the Zoujiashan Deposit,Xiangshan Volcanic Basin 被引量:1
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作者 Teng Deng Guoxiang Chi +11 位作者 Xiongjie Zhang Zenghua Li Deru Xu Shengmiao Li Pengfei Du Pei Shang Shaohao Zou Wanpeng Zhou Ke Xu Hai Yan MaWen Zhengpeng Ding 《Journal of Earth Science》 SCIE CAS CSCD 2022年第2期422-434,共13页
The Zoujiashan uranium deposit in the Xiangshan ore field is the largest volcanic-related uranium deposit in China.Hematite-and fluorite-type ores are the predominant mineralization styles.Hematitization in the Xiangs... The Zoujiashan uranium deposit in the Xiangshan ore field is the largest volcanic-related uranium deposit in China.Hematite-and fluorite-type ores are the predominant mineralization styles.Hematitization in the Xiangshan ore field is closely associated with uranium mineralization,mainly occurring as hematitized rocks enclosing fluorite-type vein ores developed in pre-ore illitized porphyritic lava.Detailed petrographic and mass balance calculation studies were conducted to evaluate the mechanisms for uranium precipitation and mass transfer during hematitization.Petrographic observations suggest that in the hematitized rocks,orthoclase is more altered than plagioclase,and quartz dissolution is common,whereas in the illitized rocks,pyrite commonly occurs within the altered biotite grains,and chlorite grains are locally found.Mass balance calculations indicate that Na2O and U were gained,K2O,Ca O and Si O2were lost,whereas Fe2O3-t remained more or less constant during hematitization.These observations suggest that the hydrothermal fluids were Na-and U-rich and Ca-K-poor,and the Fe2+used for hematitization was locally derived,most likely from biotite,pyrite and chlorite in the host rocks.The Fe2+is inferred to have played the role of reductant to precipitate uranium,and calculation indicates that oxidation of Fe2+provided by host rocks is sufficient to form ores of economic significance.Consequently,the hematite-type ore is interpreted to be generated by the reaction between oxidized ore fluids and reduced components in host rocks.The development of calcite and pyrite in the fluorite ores suggests that perhaps mixing between the U-rich fluid and another fluid carrying reduced sulfur and carbon may have also contributed to uranium mineralization,in addition to temperature and pressure drop associated with the veining. 展开更多
关键词 Xiangshan uranium ore field mass transfer uranium precipitation hematitization redox reaction ore deposit geology
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某铀水冶厂碱分解法沉淀铀加碱量计算 被引量:1
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作者 高东星 刘永涛 +4 位作者 程瑞泉 袁征 任志刚 金凤博 李平 《铀矿冶》 CAS 2019年第3期181-184,189,共5页
对某铀水冶厂铀沉淀工艺中沉淀剂氢氧化钠加入量的控制方法,从2个方面展开研究:1)以反应终点pH作为控制参数,探索铀沉淀反应过程pH与溶液铀浓度、加碱量的关系;2)研究NaOH参与铀沉淀反应的作用机理,得出碱分解法沉淀铀时NaOH的加入量计... 对某铀水冶厂铀沉淀工艺中沉淀剂氢氧化钠加入量的控制方法,从2个方面展开研究:1)以反应终点pH作为控制参数,探索铀沉淀反应过程pH与溶液铀浓度、加碱量的关系;2)研究NaOH参与铀沉淀反应的作用机理,得出碱分解法沉淀铀时NaOH的加入量计算公式。验证试验表明,公式计算的加碱量可以稳定铀沉淀母液中余碱含量;控制ρ(NaOH)为(4.0±1.5)g/L,可使母液中ρ(U)<0.05 g/L。计算的加碱量既能保证铀的沉淀效率,又可节约试剂消耗。 展开更多
关键词 加碱量 铀沉淀 碱分解法 三碳酸铀酰钠
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