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Pt-Os isotopic constraints on the age of hydrothermal overprinting on the Jinchuan Ni-Cu-PGE deposit, China

机译:PT-OS同位素约束对中国金川镍铜卫生间的水热套印时代

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Platinum group element (PGE) mineralization occurs associated with mafic-ultramafic rocks in different environments. Although the PGE enrichment is primarily caused by magmatic processes, remobilization of Pd and Pt by hydrothermal fluids has likely been an important mechanism in increasing the precious metal grade in many cases. However, the timing of PGE enrichment by hydrothermal fluid processes is commonly difficult to constrain. The Jinchuan ultramafic intrusion in Northwest China is ranked the world's third largest magmatic Ni-Cu sulfide deposit. Besides the main ore body consisting of net-textured and disseminated sulfides, there is hydrothermal mineralization associated with sheared contact zones of the intrusion, which shows elevated Cu and Pt concentrations. The unusually high Pt is hosted mainly in sperrylite within altered silicates. In this study, we applied the Pt-Os geochronometer to a Cu-Pt-rich ore body, yielding an isochron age of 436 +/- 23 Ma. This age is significantly younger than the main ore formation age of ca. 825 Ma, but similar to that of the continental collision event between the Qaidam-Qilian Block and Alax Block of North China. This indicates that the intrusion may have been uplifted during the Paleozoic orogenic processes from deeper crust, resulting in the generation of the Cu-Pt-rich hydrothermal ore body. Our new data provide the first strong age constraints on the hydrothermal PGE enrichment, showing that the Pt-Os isotope system is potentially a powerful tool for dating hydrothermal overprinting on Ni-Cu-PGE sulfide deposits.
机译:铂族群元素(PGE)矿化发生在不同环境中的MAFIC-Ultramafic岩石相关。尽管PGE富集主要是由岩浆工艺引起的,但是水热流体的重组和PT的重新化可能是在许多情况下增加贵金属等级的重要机制。然而,水热流体过程的PGE富集的时序通常难以约束。中国西北部的金川超空地入侵是世界第三大岩浆Ni-Cu硫化物矿床。除了由净纹理和传播硫化物组成的主体主体之外,还有与侵入的剪切接触区相关的水热矿化,其显示出升高的Cu和Pt浓度。异常高的PT主要在孢子酸盐中以改变的硅酸盐托管。在这项研究中,我们将PT-OS地球瘤施加到富含Cu-Pt的矿体体,产生436 +/- 23 mA的同种档。这个年龄比加利福尼亚州的主要矿石形成年龄更年轻。 825 mA,但类似于QAIDAM-QILIAN BLOCK与华北地区的大陆碰撞事件。这表明从深层地壳的古生代造时的过程中可能已经抬起了入侵,导致富含Cu-Pt的水热矿体的产生。我们的新数据提供了对水热PGE富集的第一个强大的年龄约束,表明PT-OS同位素系统可能是在Ni-Cu-PGE硫化物沉积物上进行水热套印的有力工具。

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