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Aresenopyrite-pyrite paragenesis in gold deposits (thermodynamic modeling)

机译:金矿中的异铁矿-黄铁矿共生(热力学模拟)

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摘要

The compositions of parageneses including arsenopyrite (Asp), pyrite (Py), and As-pyrite (As-Py) have been calculated by the solution of primal physicochemical modeling problems. The numerical models for the interaction of Py matrix with hydrothermal solution saturated with Asp are considered for three variants of the solution penetration into the Py matrix: percolation, spreading, and tightening at 100-300 degrees C and 300 bars. It is shown that Asp forms in the zone of an ore column where fluid (solution) is predominant, with the Py matrix being replaced independently of the type of the solution transfer. Prevailing As and Fe complexes are considered. The calculated models for the three types of interaction show that the redox potential in the solution varies from -0.055 V at the ends of the Asp-containing ore column to -0.55 V in its central zone. This difference makes an electrochemical geochemical barrier at the interface, where metallic gold is deposited with Asp-Py ores.
机译:通过解决原始物理化学建模问题,已计算出了包括毒砂(Asp),黄铁矿(Py)和砷黄铁矿(As-Py)在内的共生成分。对于溶液渗透到Py基质中的三种变体,考虑了Py基质与被Asp饱和的热液相互作用的数值模型:渗透,散布和在100-300摄氏度和300 bar的压力下紧固。结果表明,Asp形成于主要以流体(溶液)为主的矿石柱区域,Py基质的取代与溶液转移的类型无关。考虑存在的As和Fe配合物。三种相互作用类型的计算模型表明,溶液中的氧化还原电势从含Asp矿石柱末端的-0.055 V到其中心区域的-0.55 V不等。这种差异在界面上形成了电化学地球化学屏障,金属金与Asp-Py矿石一起沉积在该界面上。

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