首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Platinum-group element geochemistry used to determine Cu and Au fertility in the Northparkes igneous suites, New South Wales, Australia
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Platinum-group element geochemistry used to determine Cu and Au fertility in the Northparkes igneous suites, New South Wales, Australia

机译:铂族群元素地球化学用于确定北路北部南威尔士州北路的Cu和Au生育能力,澳大利亚新南威尔士州

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Recent studies have shown that platinum-group elements (PGE) can be used to constrain the timing of sulfide saturation in evolving felsic systems. In this study, we report trace-element, PGE, Re and Au data for the barren and ore-associated suites of intermediate to felsic rocks from the Northparkes Cu-Au porphyry region, emphasizing the timing of sulfide saturation and its influence on the tenor of the associated hydrothermal mineralization. Two barren suites, the Goonumbla and Wombin Volcanics and associate intrusive rocks, are found in the region. Geochemical modelling shows that the barren suites are dominated by plagioclase-pyroxene fractionation, whereas the ore-associated Northparkes Cu-Au porphyry suite is characterized by plagioclase-amphibole fractionation, which requires the ore-bearing suite to have crystallized from a wetter magma than barren suites. The concentrations of PGE, Re and Au in the barren suites decrease continuously during fractional crystallization. This is attributed to early sulfide saturation with the fraction of immiscible sulfide precipitation required to produce the observed trend, being 0.13 and 0.16 wt.% for the Goonumbla and Wombin suites, respectively. The calculated partition coefficients for Au and Pd required to model the observed change in these elements with MgO are well below published values, indicating that R, the mass ratio of silicate to sulfide melt, played a significant role in controlling the rate of decline of these elements with fractionation. Palladium in the ore-associated suite, in contrast, first increases with fractionation then decreases abruptly at 1.2 wt.% MgO. The sharp decrease is attributed to the onset of sulfide precipitation. Platinum on the other hand shows a moderate decrease, starting from the highest MgO sample analysed, but then decreasing strongly from 1.2 wt.% MgO. The initial Pt decrease is attributed to precipitation of a platinum-group mineral (PGM), probably a Pt-Fe alloy, and the sharp dec
机译:最近的研究表明,铂 - 群元素(PGE)可用于约束在不断发展的肠道系统中的硫化物饱和度的定时。在这项研究中,我们向北路嘉奥氏斑岩区的贫瘠和矿石岩石的贫瘠和矿石,Re和Au数据报告了贫瘠和矿石岩石的群体,强调了硫化物饱和度的时间及其对男高音的影响相关水热矿化。在该地区发现了两个贫瘠的套房,Goonumbla和占题字火山岩和副侵入性岩石。地球化学建模表明,贫瘠套件由Plagioclase-辉石分馏主导,而矿石相关的北路Qu-au斑岩套件的特征在于Plagioclase-amphibole分馏,这需要矿石套件与湿岩浆的结晶而不是贫瘠套房。贫瘠套件中PGE,Re和Au的浓度在分馏结晶期间连续降低。这归因于早期硫化物饱和度,分别是产生观察到的趋势所需的不混溶性硫化物沉淀,分别为Goonumbla和胞浆套件的0.13和0.16重量%。所需的AU和Pd的计算分配系数与MgO的这些元素中观察到的变化良好,低于发表的值,表明R,硅酸盐与硫化物熔体的质量比在控制这些衰落率方面发挥了重要作用分馏的元素。相比之下,矿石在矿石相关套件中的钯分级增加,然后在1.2重量%下突然降低。%MgO。急剧下降归因于硫化物沉淀的开始。另一方面,铂铂显示从分析的最高MgO样品开始的中等减少,但随后从1.2重量%中逐渐减小。%MgO。初始PT减少归因于铂族群矿物(PGM)的沉淀,可能是PT-Fe合金,锐化

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