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Copper precipitation during leaching of various copper sulfide concentrates with cupric chloride in acidic solutions

机译:在酸性溶液中浸出各种硫化铜浓缩铜期间的铜沉淀

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The leaching behavior of copper sulfides in concentrated cupric chloride solution at 95 degrees C and at ambient pressure was studied in order to scrutinize the leaching behavior of a single bornite and four different chalcopyrite concentrates obtained from various mines around the world. The highest chalcopyrite oxidation was achieved with the highest pyrite content in the concentrate, suggesting galvanic effect on chalcopyrite dissolution. It was found that iron and copper from chalcopyrite did not dissolve into the solution in an equal ratio, as expected. A significant amount of copper precipitated at pH <= 1.4. This study showed that chalcopyrite chloride leaching, in the absence of oxygen purging, leads to covellite precipitation. The mineralogical studies on a leach residue established that the precipitated copper was a secondary covellite (CuS). Leaching of bornite rich concentrate did not increase acidity and no equally strong copper precipitation was observed at pH = 2.1. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了浓缩铜硫化铜硫化铜的浸出行为及在环境压力下进行浸渍,以仔细审查从世界各地的各种矿山获得的单销料和四种不同的黄铜矿浓缩物的浸出行为。浓缩物中最热的黄铁矿含量实现了最高的核黄素氧化,表明对黄铜矿溶解的电致效应。结果发现,从硫代铜矿的钢铁和铜并未溶于溶液的平等比例,如预期的那样。在pH <= 1.4下沉淀的大量铜。这项研究表明,在没有氧气吹扫的情况下,氯化物氯化物浸出,导致多洛米特沉淀。对浸出残留物的矿物学研究确定沉淀的铜是次级环核(CU)。耐烧富矿浓缩物的浸出未增加酸度,并且在pH = 2.1时没有观察到同样强的铜沉淀。 (c)2016年Elsevier B.v.保留所有权利。

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