The role of catalyst in the passivation of chalcopyrite during leaching

Q4 Earth and Planetary Sciences
S. Salehi, M. Noaparast, S. Z. Shafaie
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Abstract

In this work, we present as investigation of chalcopyrite leaching under different leach conditions for how liquidation and surface of chalcopyrite study using Scanning Electron Microscopy (SEM) to determine the composition of the passivation layer in the surface of chalcopyrite. The study of chalcopyrite dissolution were in H2SO4 solution systems at pH of 1.2, with 5% chalcopyrite concentrate in redox potential of 460 mV at 90°C. The tests were directed to study on the leaching of chalcopyrite in ferric sulfate solution to extract copper with adding pyrite, silver and silver coated pyrite. In these approaches, achieved recoveries were different. The results showed that, in the present of pyrite, the presence of the elemental sulfur layer formed around the chalcopyrite particles which hindered the complete dissolution of copper in chalcopyrite. Also, in the presence of silver, no commercial process has been developed which successfully as a catalyst to recover copper from chalcopyrite. Because, the precipitation of argentojarosite, which forms during the leaching process, limits the availability of silver ion in solution which may act as a catalyst. But syndicate of silver and pyrite to form of silver coated pyrite, causes dissolution increase. However, in the presence of the pyrite coated by silver, leaching was very rapid for the duration of the test, and complete copper extraction was achieved within 10 hours.
催化剂在黄铜矿浸出过程钝化中的作用
本文研究了黄铜矿在不同浸出条件下的浸出过程,研究了黄铜矿的表面和清算情况,利用扫描电子显微镜(SEM)测定了黄铜矿表面钝化层的组成。研究了黄铜矿在pH为1.2、含5%黄铜矿精矿、氧化还原电位为460 mV、温度为90℃的H2SO4溶液体系中溶解的情况。研究了在硫酸铁溶液中加入黄铁矿、银和镀银黄铁矿浸出黄铜矿提铜的试验。在这些方法中,实现的复苏是不同的。结果表明,黄铁矿存在时,黄铜矿颗粒周围存在单质硫层,阻碍了铜在黄铜矿中的完全溶解;此外,在银存在的情况下,还没有开发出成功地作为催化剂从黄铜矿中回收铜的商业工艺。因为,在浸出过程中形成的银黄钾铁矾的沉淀,限制了溶液中银离子的可用性,银离子可能起到催化剂的作用。但银与黄铁矿结合形成银包黄铁矿,导致溶解度增加。然而,在镀银黄铁矿存在的情况下,浸出速度非常快,在10小时内完成了铜的完全浸出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Mining and Geo-Engineering
International Journal of Mining and Geo-Engineering Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
0.80
自引率
0.00%
发文量
0
审稿时长
12 weeks
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