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首页> 外文期刊>Hydrometallurgy >The acidic ferric sulfate leaching of primary copper sulfides under recycle solution conditions observed in heap leaching. Part 1. Effect of standard conditions
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The acidic ferric sulfate leaching of primary copper sulfides under recycle solution conditions observed in heap leaching. Part 1. Effect of standard conditions

机译:在堆浸出中观察到循环溶液条件下初级硫化硫化硫化的酸性二硫酸盐浸出。 第1部分。标准条件的影响

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摘要

Understanding the dissolution of copper from chalcopyrite is important as chalcopyrite is the most abundant copper mineral in the earth's crust. The main method for extraction of copper from chalcopyrite is by flotation concentration before being smelted and electro-refined. However, this process is not suitable for the treatment of the vast reserves of low grade chalcopyrite ores, where hydrometallurgical extraction through heap leaching is a better option. While pressure or high temperature leaching with the addition of sodium chloride or HCl have been proposed to extract copper from chalcopyrite concentrates, this process is too expensive to treat low grade copper ores. Currently the research focus to develop a treatment process involves the use of bacteria to oxidise the sulfide minerals and produce sulfuric acid. Given the slow extraction rates of this process it requires decades to extract all the copper from the mineral which would mean the leach solution would therefore be recycled during the process once the copper had been removed. While previous studies have reported the effect of leach temperature, pH (acid concentration) and E-h on copper extraction, these have only considered initial leaching conditions. Studies using recycle leach solution conditions have not been undertaken, and this is the focus of the study reported here. The recycle solution conditions were based on a simulated long term solution composition. This article is part of a series of papers that has investigated the effect on copper and iron extraction from chalcopyrite which has evaluated conditions, major species and additives under recycle leach concentrations. This article examines the effect of the conditions, specifically temperature, pH, E-h and solids density. It was determined that the temperature had the most significant effect on the copper and iron extraction while the pH, E-h or solids density had no appreciable effect on the extraction of either copper or iron under the recycle leach conditions tested. While the effect of temperature on chalcopyrite dissolution is known, the activation energy, the rate of dissolution and the degree of copper extraction is lower under these high solute or recycle concentrations. Similar observations were found when studying pyrite but this study attributed the lowering of these parameters under recycle conditions to the sulfate concentration causing a diffusion layer around the mineral particles which alters or slows the response of pH, E-h or temperature on the dissolution reaction.
机译:了解来自核黄素铜的溶解是重要的,因为黄铜矿是地壳中最丰富的铜矿。从氯化物中萃取铜的主要方法是通过浮选浓度进行熔接和电浮精制。然而,该过程不适合治疗大量的低级核黄素矿石储量,其中通过堆浸出的液压冶金提取是更好的选择。虽然已经提出了加入氯化钠或HCl的压力或高温浸出以从硫代铜矿浓缩物中提取铜,但该方法太昂贵,以处理低级铜矿石。目前,开发治疗过程的研究重点涉及使用细菌来氧化硫化物矿物并产生硫酸。鉴于该过程的缓慢提取率,需要几十年来从矿物中提取所有铜,这意味着浸出铜期间将在过程中再循环浸出溶液。虽然先前的研究报告了浸出温度,pH(酸浓度)和E-H对铜提取的影响,但这些仅考虑了初始浸出条件。使用循环浸出溶液条件的研究尚未进行,这是在此报告的研究的重点。再循环溶液条件是基于模拟的长期溶液组合物。本文是一系列论文的一部分,研究了从核浸出浓度下评估条件,主要物种和添加剂的铜和铁萃取对铜和铁萃取的影响。本文研究了条件,特别是温度,pH,E-H和固体密度的效果。确定温度对铜和铁提取的温度有最大的影响,而pH,E-H或固体密度对循环浸出条件下的铜或铁的提取没有明显的影响。虽然在这些高溶质或再循环浓度下,温度对核偶溶解的影响是已知的,激活能量,溶解速率和铜萃取程度较低。在研究黄铁矿时发现了类似的观察结果,但该研究将这些参数降低到循环条件下对硫酸盐浓度的硫酸盐浓度降低,导致矿物颗粒周围的扩散层,其改变或减慢pH,E-H或温度对溶解反应的响应。

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