Processing of copper converter slag for metal reclamation. Part I: extraction and recovery of copper and cobalt

Author:

Tong Deng 1,Yunhan Ling 2

Affiliation:

1. Institute of Process Engineering, Chinese Academy of Sciences, Beijing, PR China,

2. Institute of Process Engineering, Chinese Academy of Sciences, Beijing, PR China

Abstract

Clean processing of copper converter slag to reclaim cobalt and copper could be a challenge. An innovative and environmentally sound approach for recovering valuable metals from such a slag has been developed in the present study. Curing the slag with strong sulphuric acid, without re-smelting or roasting as practiced currently in the industry, render it accessible to leaching, and more than 95% of cobalt and up to 90% of copper was extracted together with iron by water leaching, leaving silica behind in a residue. The copper in the leach liquor was recovered by cementation with iron and the dissolved iron crystallized as ferrous sulphate monohydrate. The cobalt in the mother-liquor rich in iron was recovered by either cementation or sulphide precipitation. Operation variables in the new process were also investigated and optimized.

Publisher

SAGE Publications

Subject

Pollution,Environmental Engineering

Reference14 articles.

1. Agatzini, S., Kontopoulos, A., Maraboutis, P. & Xenidis, A.( 1987) Removal of iron from iron-nickel-cobalt solutions by precipitation and solvent extraction techniques. In: Dutrizac, J.E. & Monhemius, A.J. (eds.), Iron Control in Hydrometallurgy, pp. 53—373. Ellis Horwood Ltd., Chichester.

2. Pressure leaching of copper converter slag using dilute sulphuric acid for the extraction of cobalt, nickel and copper values

3. Biswas, A.K. & Davenport, W.G. (1994) Extractive Metallurgy of Copper, 3rd edition, pp. 210—214. Pergamon Press, Oxford.

4. Coussement, M., DeSchepper, A. & Standaert, R. (1982) Separation of cobalt and nickel in acid solutions . In: Osseo-Asare, K. & Miller, J.D. (eds.), Hydrometallurgy: Research, Development and Plant Practice, pp. 569—585. TMS/ AIME, Warrendale.

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