Study of Factors Affecting the Copper Ore Leaching Process

Author:

Koizhanova Aigul1,Kenzhaliyev Bagdaulet1,Magomedov David1ORCID,Kamalov Emil1,Yerdenova Mariya1,Bakrayeva Akbota1,Abdyldayev Nurgali1

Affiliation:

1. JSC Institute of Metallurgy and Ore Beneficiation, Satbayev University, Shevchenko 29/133, Almaty 050010, Kazakhstan

Abstract

This paper provides an overview of hydrometallurgical copper extraction studies in which liquid extraction technology has been used with four copper deposits of different compositions. The sulfuric acid consumption rate and copper extraction efficiency, which are dependent on the initial content and forms of calcium compounds and other impurities in ore samples, were calculated, and the results are presented herein. It was established that during the leaching process, silicate compounds of alkaline earth metals, in addition to calcium and magnesium carbonate compounds, would affect the levels of sulfuric acid consumption, thereby actively lowering the acidity of the environment. Moreover, these compounds could partially sorb copper ions from sulfuric acid leaching solutions. Thus, the analysis of waste ore samples showed that residual copper is mainly contained in the form of complex silicate complexes. The presence of divalent iron compounds in the composition from one of the deposits also allowed us to perform a biochemical leaching experiment with preliminary oxidation using an Acidithiobacillus ferrooxidans bacterial culture adapted to the ore composition. The use of this biochemical method in the copper leaching process resulted in a significant reduction in sulfuric acid consumption, by 40%, and a copper recovery rate of 87.2%.

Funder

Science Committee of the Ministry of Education and Science of Republic of Kazakhstan

Publisher

MDPI AG

Subject

General Energy,General Engineering,General Chemical Engineering

Reference32 articles.

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2. Khalezov, B.D. (2013). Heap Leaching of Copper and Copper-Zinc Ores: (Russian Experiece), Publ. UrD RAS.

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4. Solvent extraction in hydrometallurgy: The role of organophosphorus extractants;Flett;J. Organomet. Chem.,2005

5. Meadows, N.E., and Pollard, D.M. (1987). Oxidative lead chalcopyrite in a chloridesulphate lixivant. Res. Dev. Met., 109–114.

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