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(597297) HEAP LEACHING OF COPPER ORES - STATE OF THE SCIENCE

机译:(597297)铜矿堆浸出 - 科学状态

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Heap leaching accounts for around 20% of the global production of copper. In heap leaching coarsely crushed ore particles are contacted with an aqueous lixiviant percolating through large packed beds (heaps) of the ore particles, with the loaded solution collected at the foot of the heap for metal recovery, solution make-up and recycle. While dominant for copper oxide acid leaching, it finds application also in copper sulphide (bio)leaching. Despite their apparent simplicity, heaps are in fact complex chemical reactors in which a number of competing sub-processes determine the overall rate of metal extraction. Therefore, meaningful prediction of copper production rates from heaps, as well as operational optimisation and control, all hinge on a comprehensive and quantitative understanding of these complexities. The paper gives a comprehensive overview of the various sub-processes in copper heap leaching and their interactions, including those relating to mineral-particle-solution-gas phase interactions at the micro-scale bulk transport and distribution of solution in unsaturated dense beds at the macro-scale. On the basis of a more fundamental understanding and modelling, the potential for optimized operation offers new opportunities for the extraction of value from both low-grade and complex polymetallic ores.
机译:堆浸出占全球铜生产的20%。在堆浸出粗碎的矿石颗粒与矿石颗粒(堆)通过矿石颗粒(堆)接触,其中负载溶液在堆的脚下收集,用于金属回收,溶液化妆和再循环。虽然对氧化铜酸浸出的占主导地位,但它也可以在硫化铜(Bio)浸出中的应用。尽管他们明显的简单性,但堆实际上是复杂的化学反应器,其中许多竞争的子过程确定了金属提取的总体速率。因此,从堆上的铜生产率的有意义预测,以及操作优化和控制,所有铰链都是对这些复杂性的全面和量化的理解。本文综合概述了铜堆浸出的各种子过程及其相互作用,包括与矿物颗粒 - 溶液 - 气相相互作用有关的微级散装输送和在不饱和密集床中的溶液分布的那些。宏观规模。在更基础的理解和建模的基础上,优化操作的潜力为从低级和复杂的多金属矿石中提取价值提供了新的机会。

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