澳大利亚新南威尔士州东北部Drake金矿低硫化浅成热液Strauss矿床的矿化、蚀变组合、地球化学和稳定同位素

Emmanuel Madayag, I. Graham, Hong-yan Quan, Rohan Worland, L. Adler, C. Dietz
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摘要

中硫化浅成热液施特劳斯矿床是新南威尔士州东北部德雷克金矿的一部分。该矿床的矿化以金为主,银含量低,锌、铜、铅含量高。Strauss的总资源量为266 Mt,含1.5g/T Au和1.9g/T Ag。矿化主要以三个主要取向的脉网形式发生。构造分析表明,这是两个断裂系统事件和一个共轭断裂系统的结果。岩石学和扫描电镜分析表明,该区存在黄铁矿为主和闪锌矿为主两种不同的成矿风格,至少发生过3次成矿事件。相关分析表明,Au与Ag有较强的相关性,与Pb有中等的相关性。岩石学分析表明,该矿床由不同层状的英酸灰流凝灰岩和横切煌斑岩岩脉组成,尽管先前的作者将一些凝灰岩归类为侵入安山岩。XRD分析表明广泛存在泥基-枝基和丙基蚀变。碲化银是与闪锌矿化有关的晚期颗粒。锶表现出明显的强损耗,这是由于施特劳斯的强烈和普遍的变化。脉状碳酸盐的碳、氧同位素表明,晚期碳酸盐的碳来源受到低温大气水蚀变的显著影响,而硫同位素则显示岩浆硫来源。
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Mineralisation, alteration assemblages, geochemistry and stable isotopes of the low-sulfidation epithermal Strauss deposit, Drake Goldfield, north-eastern NSW, Australia
The intermediate-sulfidation epithermal Strauss deposit is part of the Drake Goldfield of north-eastern NSW. The mineralisation in this deposit is gold-dominant with minor silver and significant levels of zinc, copper and lead. Strauss has a combined total resource of 2.66 Mt @ 1.5g/T Au and 1.9g/T Ag. Mineralisation mainly occurs in the form of vein stockworks of three main orientations. Structural analysis indicates these to be the result of two fault system events and one conjugate fault system. Petrographic and SEM analysis shows that there are two separate mineralisation styles, a pyrite dominant and sphalerite dominant style, with at least three mineralisation events. Correlation analysis for the assay data indicates that Au has a strong relation with Ag and moderate correlation with Pb. Petrographic analysis has shown the deposit to be made-up of varying layers of dacitic ash flow tuffs and a cross-cutting lamprophyre dyke though previous authors classified some of the tuffs as intrusive andesites. XRD analysis indicates widespread argillic-phyllic and propylitic alteration. Silver tellurides have been found as late-stage grains associated with sphalerite mineralisation. Sr shows a significant strong depletion, due to the intense and pervasive alteration at Strauss. The carbon and oxygen isotopes of vein carbonates suggest that the carbon from the late-stage carbonates was derived from a magmatic source with a significant influence of low-temperature meteoric water alteration, while the sulphur isotopes indicate a magmatic sulphur source.
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