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Slow and Fast Transport in Heap Leaching of Precious Metals

机译:贵金属堆浸中的慢速和快速运输

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摘要

Heap leaching of precious metals from low-grade ores is modeled using the slow and fast zone concept of liquid movement in porous media (Kartha and Srivastava, Transport in Porous Media 75, 227-247, 2008). The heap is conceptualized as a porous medium with the pores filled by liquid and/or air. The liquid phase is further divided into three zones-immobile, slow moving, and fast moving, with only the immobile and slow-moving liquids interacting with the solid particles. The conceptual model is applied to simulate two-dimensional leaching of a shallow gold ore heap. Temporal evolution of gold concentration in the solid and the liquid phases are analyzed to ascertain the effect of several parameters on the leaching process. Sensitivity analyses are performed with respect to the irrigation rate, the equilibrium sorption coefficient, and the fractional volume of the slow-moving liquid. For a constant volume of the leaching solution and for the same duration of leaching, the metal extraction is higher when a larger number of irrigation cycles are used. The metal extraction is found to be smaller for higher values of the sorption coefficient.
机译:使用多孔介质中液体流动的慢速和快速区域概念对低品位矿石中的贵金属堆浸进行了建模(Kartha和Srivastava,多孔介质中的运输75,227-247,2008)。堆被概念化为多孔介质,其孔被液体和/或空气填充。液相又被分为三个区域:固定,缓慢移动和快速移动,只有固定和缓慢移动的液体与固体颗粒相互作用。该概念模型用于模拟浅金矿石堆的二维浸出。分析了固相和液相中金浓度的时间演变,以确定几个参数对浸出过程的影响。针对冲洗速率,平衡吸附系数和缓慢移动的液体的分数体积进行了敏感性分析。对于恒定体积的浸提溶液和相同的浸提持续时间,当使用大量灌溉周期时,金属提取量更高。发现对于较高的吸附系数值,金属提取量较小。

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