Effect of Carbon Black on Copper Ore Leaching in Sulfuric Acid Media at 50°C

H. Nakazawa, Hidekazu Yamamoto
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Abstract

In this study, we examined the effect of carbon black on the sulfuric acid leaching of a copper ore containing 1.1% Cu occurring as CuFeS2 (chalcopyrite). Leaching experiments were performed in Erlenmeyer flasks containing 200 mL of the sulfuric acid medium while agitated with a magnetic stirrer at 50°C. The addition of carbon black enhanced the kinetics of chalcopyrite leaching at an initial pH of 1.2. The extraction yield of Cu was 97% in 98 h in the presence of 0.2 g of carbon black, compared with 18% in the absence of carbon black. The acceleration of chalcopyrite dissolution did not occur without direct contact between the ore and the carbon black, suggesting that a galvanic interaction between the two materials plays a role in the improvement of the leaching rate. In the presence of carbon black, the redox potential fell below 600 mV vs. SHE with a decrease in the ratio of Fe(III) to Fe(II), and the leaching rate of chalcopyrite increased markedly. The enhanced kinetics of chalcopyrite leaching in the copper ore could be attributed to dissolution reactions at a low redox potential and to the galvanic interaction between the chalcopyrite and the carbon black.
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炭黑对50℃硫酸介质中铜矿浸出的影响
在这项研究中,我们研究了炭黑对含铜1.1%的铜矿石以CuFeS2(黄铜矿)形式出现的硫酸浸出的影响。浸出实验在含有200 mL硫酸介质的Erlenmeyer烧瓶中进行,并用磁力搅拌器在50°C下搅拌。在初始pH为1.2时,炭黑的加入增强了黄铜矿浸出动力学。添加0.2 g炭黑时,98 h铜的提取率为97%,不添加炭黑时,铜的提取率为18%。如果矿石与炭黑没有直接接触,则黄铜矿的溶解不会加速,这表明两种物质之间的电相互作用在提高浸出率中起作用。在炭黑存在的情况下,氧化还原电位比SHE降至600 mV以下,Fe(III)与Fe(II)的比值降低,黄铜矿的浸出率明显提高。铜矿石中黄铜矿浸出动力学的增强可归因于低氧化还原电位下的溶解反应和黄铜矿与炭黑之间的电相互作用。
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