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Copper Dissolution from Black Copper Ore under Oxidizing and Reducing Conditions

机译:氧化还原条件下黑铜矿中的铜溶解

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Black copper oxides are amorphous materials of copper-bearing phases of manganese. They are complex mineral compounds with difficult to recognize mineralogy and have slow dissolution kinetics in conventional hydrometallurgical processes. This study evaluates the effects of various leaching media on copper dissolution from black copper minerals. Leach of a pure black copper sample from Lomas Bayas Mine and another from a regional mine were characterized by inductively coupled plasma atomic emission spectroscopy (ICP-AES), X-ray diffraction (XRD), scanning electron microscopy (SEM), Qemscan and mechanically prepared for acid leaching under standard, oxidizing and reducing conditions through the addition of oxygen, iron sulfate or sulfur dioxide, respectively. Standard and high potential leaching (770 mV (SHE)) results in a copper dissolution rate of 70% and manganese dissolution rate of 2%. The addition of potential reducing agents (FeSO 4 or SO 2 ) decreases the redox potential to 696 and 431 mV, respectively, and favors the dissolution of manganese, thus increasing the overall copper extraction rate. The addition of SO 2 results in the lowest redox potential and the highest copper extraction rates of 86.2% and 75.5% for the Lomas Bayas and regional samples, respectively, which represent an increase of 15% over the copper extract rates under standard and oxidizing conditions.
机译:黑色氧化铜是锰的含铜相的非晶态材料。它们是复杂的矿物化合物,难以识别矿物学,并且在常规湿法冶金工艺中溶解动力学较慢。这项研究评估了各种浸出介质对黑铜矿中铜溶解的影响。通过电感耦合等离子体原子发射光谱法(ICP-AES),X射线衍射(XRD),扫描电子显微镜(SEM),Qemscan和机械方法对Lomas Bayas矿和本地矿山的纯黑铜样品的浸出进行了表征分别通过添加氧气,硫酸铁或二氧化硫在标准,氧化和还原条件下进行酸浸的制备。标准和高电势浸出(770 mV(SHE))导致铜的溶出率为70%,锰的溶出率为2%。电位还原剂(FeSO 4或SO 2)的添加将氧化还原电位分别降低至696和431 mV,有利于锰的溶解,从而提高了总铜的提取率。 SO 2的添加导致Lomas Bayas和区域样品的最低氧化还原电位和最高铜提取率分别为86.2%和75.5%,这比标准和氧化条件下的铜提取率提高了15%。 。

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