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Oxidative Leaching of Chalcopyrite by Cupric Ion in Chloride Media

机译:氯化物介质中铜离子铜铜矿的氧化浸出

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In this study, chalcopyrite concentrate produced in Sarcheshmeh copper plant was subjected to oxidative leaching investigation by cupric ion to determine the effect of several parameters on the copper and iron dissolution, including temperature of leaching, time of holding and cupric concentration as oxidant agent in a range of 38-97 degrees C, 1.5-8.5 h and 0.2-0.8 M, respectively. The leaching media was chloride providing with 3 M HCl 37% and CuCl2. The experiments were designed by central composite design method. The dissolution of copper and iron was examined. The maximum dissolution of copper 62.64%, was obtained at 85 degrees C, 7 h and oxidant concentration of 0.7 M. The kinetics model of chalcopyrite leaching and an optimized condition with maximum dissolution of copper and minimum dissolution of iron was obtained by Minitab(R)18 software. Additionally, the thermodynamics of leaching was investigated by Pourbaix diagrams of copper and iron composition, using HSC Chemistry6 software. It was found that the oxidative leaching process is controlled by diffusion through passivation layer with an activation energy of 19.57 kJ/mol.
机译:在这项研究中,通过铜离子进行硫化物浓缩物生产的铜植物中产生的氧化浸出调查,以确定几个参数对铜和铁溶解的影响,包括浸出温度,作为氧化剂的氧化剂和铜浓度的温度范围为38-97℃,1.5-8.5小时和0.2-0.8米。浸出介质是氯化物,提供3M HCl 37%和CuCl 2。实验是由中央复合设计方法设计的。检查了铜和铁的溶解。在85℃,7小时和氧化剂浓度为0.7M的氧化剂浓度下获得的最大溶解。用Minitab获得了黄铜矿浸出的动力学模型和最大溶解的铜和最小溶解的优化条件(R. )18软件。另外,使用HSC Chemisty6软件,研究了铜和铁组合物的Poutbaix图研究了浸出的热力学。发现氧化浸出过程由通过钝化层的扩散来控制,其活化能量为19.57kJ / mol。

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