陕西山阳庙梁金矿地质特征及流体包裹体研究
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P618.51;P611

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中国地质调查局项目(DD20160346,DD20190379-53);陕西地矿局综合地质大队项目(220227180191)


Geological characteristics and fluid inclusions of Miaoliang gold deposit, Shanyang, Shaanxi Province
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    摘要:

    庙梁金矿床位于南秦岭柞水-山阳矿集区的中心地带,为了查明庙梁金矿成矿流体特征、金的沉淀机制及矿床成因,对该矿床不同成矿阶段脉石矿物中的流体包裹体进行了详细的岩相学、显微测温、激光拉曼光谱分析研究并与周边典型金矿床特征进行了对比。结果表明,该矿床包裹体类型丰富,成矿早阶段主要为H2O-NaCl型包裹体(Ⅱ型)、部分H2O-CO2型包裹体(Ⅲ型)和少量纯CO2型包裹体(Ⅰ型);主成矿阶段主要为H2O-NaCl型包裹体(Ⅱ型)和H2O-CO2型包裹体(Ⅲ型);成矿晚阶段主要为H2O-NaCl型包裹体(Ⅱ型)。显微测温结果显示,从早阶段至晚阶段,流体性质由中高温、中等盐度、低密度、富CO2流体向中低温、中低盐度、中等密度、贫CO2流体演化。激光拉曼成分分析表明包裹体气相成分除CO2外,还含有一定量的CH4和H2S。综合研究认为在低氧逸度的还原环境下,金在流体中以Au(HS)2-络合物的形式迁移,流体在向上运移过程中,因温度、压力的降低而发生不混溶现象是金沉淀的主要机制。

    Abstract:

    The Miaoliang gold deposit is located in the center of the Southern Qinling Zhashui-Shanyang ore concentration area. In order to find out the characteristics of ore-forming fluids, the precipitation mechanism of gold and genesis of the Miaoliang gold deposit, the fluid inclusions in gangue minerals at different metallogenic stages of the deposit were studied in detail by petrography, microthermometry, laser Raman spectroscopy, comparing with the characteristics of typical surrounding gold deposits. The results show that the deposit is rich in types of inclusions. The early stage of mineralization is mainly H2O-NaCl type inclusions (type Ⅱ), part of H2O-CO2 type inclusions (type Ⅲ) and a small amount of pure CO2 type inclusions (type Ⅰ); the main metallogenic stage is mainly H2O-NaCl type inclusions (type Ⅱ) and H2O-CO2 type inclusions (type Ⅲ); the late mineralization stage is mainly H2O-NaCl type inclusions (type Ⅱ). Microscopic temperature measurements show that from the early stage to the late stage, the fluid properties evolve from medium and high temperature, medium salinity, low density, CO2-rich fluid to medium and low temperature, medium-low salinity, medium density and CO2-poor fluid. Laser Raman analysis shows that the gas phase of inclusions contains a certain amount of CH4 and H2S in addition to CO2. Comprehensive study concluded that gold migrates in the form of Au(HS)2- complex in the fluid under the reduction environment of low oxygen fugacity, and that immiscibility due to the decrease of temperature and pressure is the main mechanism of gold precipitation in the process of fluid upward migration.

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陈永康,梁婷,周义,等, 2022. 陕西山阳庙梁金矿地质特征及流体包裹体研究[J]. 岩石矿物学杂志, 41(1):95~111.
CHEN Yong-kang, LIANG Ting, ZHOU Yi, et al, 2022. Geological characteristics and fluid inclusions of Miaoliang gold deposit, Shanyang, Shaanxi Province[J]. Acta Petrologica et Mineralogica, 41(1): 95~111.

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  • 收稿日期:2021-04-08
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  • 在线发布日期: 2022-01-21
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