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Chemical and stable isotopic geochemical characteristics of ore-forming fluid of the Shizishan copper and gold ore-field, Tongling, China

机译:铜岭铜和金矿场矿石成矿液的化学稳定同位素地球化学特征,铜陵,铜陵,中国

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摘要

Shizishan ore-field is a nonferrous and noble metal ore-field which is most rich in copper and gold. There are many types of fluid inclusions in minerals of the deposits. The homogeneous temperatures and the salinities of the fluid inclusions in main mineralization stages have wide ranges, while the different types of the fluid inclusions existed together and their homogeneous temperatures are almost identical in the same mineralization stage, which indicates that the ore-forming process has great relation with the fluid boiling. The gas and liquid chemical compositions and the carbon, hydrogen and oxygen isotopic compositions of the fluid inclusions show that the ore-forming fluids of copper-gold deposits have the same characteristics and evolution tendency, which reflects that the ore-forming material mainly came from the magmatism. The stratigraphic component and the meteoric water may mix in ore-forming fluids in the later mineralization stages. Furthermore, with the fall of the ore-forming temperature the ratios of water and rock decreased. The characteristics of chemical composition and carbon isotopic composition of fluid inclusions indicate that CH_4 may play an important role for separating copper and gold in the ore-forming process.
机译:石丽山矿场是一种有色和贵族金属矿石,最丰富的铜和金。沉积物的矿物质中有许多类型的液体夹杂物。主要矿化阶段中的均匀温度和流体夹杂物的盐度具有宽的范围,而不同类型的流体夹杂物存在于相同的矿化阶段在相同的矿化阶段几乎相同,这表明矿石形成过程具有与流体沸腾的巨大关系。流体夹杂物的气体和液体化学组合物和碳,氢和氧同位素组合物表明,铜金沉积物的矿石流体具有相同的特征和演化趋势,这反映了矿石形成材料主要来自魔法师。地层组分和易于水可以在后续矿化阶段中混合在矿石形成液中。此外,随着矿石形成温度的下降,水和岩石的比例降低。流体夹杂物的化学成分和碳同位素组合物的特性表明CH_4可以在矿石形成过程中分离铜和金的重要作用。

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