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Textural and geochemical distinction between supergene and hypogene Cu sulfide phases at the Mammoth copper deposit, Queensland, Australia

机译:澳大利亚昆士兰州庞大铜矿床纯铜硫化物阶段的质影和地球化学区别

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摘要

Mammoth is a sediment-hosted, structurally controlled, Proterozoic Cu deposit located in the Mt Isa Inlier. Hypogene and supergene chalcocite are identified within the deposit and they are texturally and paragenetically distinct. Pyrite, chalcopyrite, bornite and chalcocite (both hypogene and supergene) were analyzed using Laser Ablation (LA) ICP-MS for trace element geochemistry. Supergene chalcocite is enriched in Bi (83 ppm) and depleted in both Ag (23 ppm) and As (7 ppm ) compared to hypogene chalcocite (26 ppm Bi, 302 ppm Ag and 45 ppm As). Conclusions of this study are: 1) chalcocite is a component of the hypogene ore mineralogy; 2) meteoric oxidation processes produced supergene chalcocite; and 3) clear distinction as to the genesis of the chalcocite mineralisation is possible using mineralogical, textural and geochemical criteria.
机译:猛犸象是位于MT ISA Inlier的沉积物托管,结构控制,正射性杂志矿床。在沉积物内鉴定出劣酮和叠微烷核酸核酸核酸核酸核酸含量,它们是纹理和平原性的。使用激光烧蚀(LA)ICP-MS进行痕量元素地球化学分析黄铁矿,核黄素,凤曲霉和核酸核酸胍(两者副和求核)。富含核氯钴酸盐在Bi(83ppm)中富集,与Ag(23ppm)和As(7ppm)耗尽,与kalogene Chalocite(26ppm Bi,302ppm Ag和45ppm为)。本研究的结论是:1)Chalcocite是矿物质矿物学的一种组成部分; 2)流动氧化工艺生产超乙烯核; 3)使用矿物学,纹理和地球化学标准,可以清楚地区分核心矿化的成因。

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