Modelling and process optimisation of antimony removal from
a complex copper concentrate
a complex copper concentrate
(1. Division of Minerals and Metallurgical Engineering, Department of Civil, Environmental and
Natural Resources Engineering, Luleå University of Technology, SE-971 87 Luleå, Sweden;
2. Boliden Mineral AB, SE-936 81 Boliden, Sweden)
Natural Resources Engineering, Luleå University of Technology, SE-971 87 Luleå, Sweden;
2. Boliden Mineral AB, SE-936 81 Boliden, Sweden)
Abstract: The modelling and optimization for the alkaline sulphide leaching of a complex copper concentrate containing 1.69% Sb and 0.14% Sn were studied. Response surface methodology, in combination with central composite face-centred design (RSM-CCF), was used to optimise the operating parameters. The leaching temperature, sulphide ion concentration and solid concentration were chosen as the variables, and the response parameters were antimony and tin recovery, and the time required to achieve 90% Sb dissolution. It was confirmed that the leaching process was strongly dependent on the reaction temperature as well as the sulphide ion concentration without any significant dependence on the solid concentration. Furthermore, a mathematical model was constructed to characterise the leaching behaviour. The results from the model allow identification of the most favourable leaching conditions. The model was validated experimentally, and the results show that the model is reliable and accurate in predicting the leaching process.
Key words: alkaline sulphide hydrometallurgy; antimony; tetrahedrite; leaching optimization; response surface methodology; central composite face-centred design