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Chalcopyrite Leaching in Ferric Sulphate: The Effect of Fe3O4-CuFeS2 Galvanic Couple on the Cu Dissolution

dc.contributor.authorNyembwe, Kolela J
dc.contributor.authorFosso-Kankeu, Elvis
dc.contributor.authorWaanders, Frans
dc.contributor.authorMamba, Bhekie B
dc.contributor.authorMkandawire, Martin
dc.date.accessioned2025-11-28T08:58:39Z
dc.date.issued2024
dc.descriptionJournal Article, Water Pollution Monitoring and Remediation Initiatives Research Group, School of Chemical and Minerals Engineering, Faculty of Engineering, North-West University, Potchefstroom
dc.description.abstractGalvanic interactions present alternative strategies to achieve a more efficient Cu dissolution from CuFeS2. The present work studied the interaction between chalcopyrite-magnetite (CuFeS2- Fe3O4) in acidified ferric sulphate Fe2(SO4)3-H2SO4 at a solution pH of 1.8 and a temperature of 25 or 50 ◦C. The addition of Fe3O4 to CuFeS2 forms a galvanic couple, which positively impacts the dissolution of Cu. The results showed that the presence of Fe3O4 led to high and fast Cu dissolution rates and decreased significantly the activation energy, from 83 to 57 kJ/mol. In addition to that, the solid residues revealed that CuFeS2 dissolution produced intermediate Cu-S-rich phases: CuS, Cu2S and Cu5FeS4, which appeared to envelop CuFeS2, had no observable intermediate phase while in the presence of Fe3O4. The results showed that 94% of Cu could be recovered after 5 h of leaching at 50 ◦C at a Fe3O4/CuFeS2 ratio of 4:1 and a 460 mV Ag/AgCl solution potential. The findings of this study present an option for efficient Cu dissolution from CuFeS2 in ferric sulphate at atmospheric pressure.
dc.description.sponsorshipThe authors are thankful to the North-West University (IREA 2020) and the University of South Africa (MIN/21) for the financial support and promotion of this research.
dc.identifier.citationNyembwe, K.J. et al. 2024. Chalcopyrite Leaching in Ferric Sulphate: The Effect of Fe3O4-CuFeS2 Galvanic Couple on the Cu Dissolution. Minerals 2024, 14, 162. https://doi.org/10.3390/min14020162
dc.identifier.urihttp://hdl.handle.net/10394/44451
dc.language.isoen
dc.publisherMultidisciplinary Digital Publishing Institute (MDPI)
dc.subjectchalcopyrite
dc.subjectpassivation
dc.subjectmagnetite
dc.subjectredox potential
dc.subjectferric sulphate
dc.titleChalcopyrite Leaching in Ferric Sulphate: The Effect of Fe3O4-CuFeS2 Galvanic Couple on the Cu Dissolution
dc.typeArticle

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