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Release of gold-bearing fluids in convergent margin magmas prompted by magnetite crystallization

机译:磁铁矿结晶促使收敛边缘岩浆中的含金流体释放

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A relationship between convergent margin magmas and copper gold ore mineralization has long been recognized(1-6). The nature of the genetic link is controversial, particularly whether the link is due to high-oxygen-fugacity (f(O 2)) melts and fluids released from subducted slabs(5-7) or to brine exsolution during magmatic evolution4. For submarine, subduction-related volcanic glasses from the eastern Manus basin, Papua New Guinea, we here report abrupt decreases in gold and copper abundances, coupled with a switch in the behaviour of titanium and iron from concentration increases to decreases as SiO2 rises. We propose that the abrupt depletion in gold and copper results from concurrent sulphur reduction as a result of f(O 2) buffering, causing enhanced formation of copper-gold hydrosulphide complexes that become scavenged from crystallizing melts into cogenetic magmatic aqueous fluids. This process is particularly efficient in oxidized arc magmas with substantial sulphate. We infer that subsequent migration and cooling of exsolved aqueous fluids create links between copper-gold mineralization and arc magmatism in the Manus basin(8,9), and at convergent margins in general(1-6).
机译:早已认识到会聚边缘岩浆与铜金矿石矿化之间的关系(1-6)。遗传联系的性质是有争议的,特别是该联系是由于高氧逸度(f(O 2))融化和俯冲板块(5-7)释放的流体还是岩浆演化过程中的盐析所致4。对于来自东部马努斯盆地(巴布亚新几内亚)的与潜艇有关的与俯冲有关的火山玻璃,我们在此报告金和铜的丰度急剧下降,并且随着SiO2的升高,钛和铁的行为也从浓度增加转换为减少。我们建议,由于f(O 2)缓冲作用同时导致的硫减少,导致金和铜的突然消耗,从而导致铜-金氢硫化物络合物的形成增强,该络合物从结晶熔体中清除为共生岩浆水流体。该方法在含大量硫酸的氧化弧岩浆中特别有效。我们推断,随后的溶解水流体的运移和冷却在Manus盆地(8,9)以及一般会聚边缘(1-6)形成了铜金矿化与弧岩浆作用之间的联系。

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