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Coupled partitioning of Au and As into pyrite controls formation of giant Au deposits

机译:将金和砷耦合分配到黄铁矿中可控制巨型金矿床的形成

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摘要

The giant Carlin-type Au deposits (Nevada, USA) contain gold hosted in arsenic-rich iron sulfide (pyrite), but the processes controlling the sequestration of Au in these hydrothermal systems are poorly understood. Here, we present an experimental study investigating the distribution of Au and As between hydrothermal fluid and pyrite under conditions similar to those found in Carlin-type Au deposits. We find that Au from the fluid strongly partitions into a newly formed pyrite depending on the As concentration and that the coupled partitioning behavior of these two trace elements is key for Au precipitation. On the basis of our experimentally derived partition coefficients, we developed a mass balance model that shows that simple partitioning (and the underlying process of adsorption) is the major depositional process in these systems. Our findings help to explain why pyrite in Carlin-type gold deposits can scavenge Au from hydrothermal fluids so efficiently to form giant deposits.
机译:巨大的卡林型金矿床(美国内华达州)含有富砷的硫化铁(黄铁矿)中的金,但在这些热液系统中控制金螯合的过程知之甚少。在这里,我们进行了一项实验研究,研究了在类似于卡林型金矿床中发现的条件下,热液和黄铁矿中金和砷的分布。我们发现,流体中的Au根据As的浓度强烈地分配到一个新形成的黄铁矿中,这两个微量元素的耦合分配行为是Au沉淀的关键。根据实验得出的分配系数,我们开发了一个质量平衡模型,该模型表明简单的分配(以及潜在的吸附过程)是这些系统中的主要沉积过程。我们的发现有助于解释为什么卡林型金矿中的黄铁矿可以如此有效地从热液中清除金,从而形成巨大的矿床。

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