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Complex treatment of mining and metallurgical wastes for recovery of base metals
Affiliation:1. Guangdong Research Institute of Rare Metals, Guang zhou 510650, China;2. State Key Laboratory of Separation and Comprehensive Utilization of Rare Metals, Guang zhou 510650, China;3. Guangdong Province Key Laboratory of Rare Earth Development and Application, Guang zhou 510650, China;1. Department of Integrated Sciences, Research Centre on Natural Resources, Health and the Environment (RENSMA), University of Huelva, 21007 Huelva, Spain;2. Atlantic Copper S.L.U., 21001 Huelva, Spain
Abstract:A complex process for the recovery of copper and zinc from mining and metallurgical wastes has been investigated and proposed. It includes sulfuric acid leaching of old pyrite flotation tailings to produce ferric containing leach solution; followed by ferric leaching of copper converter slag flotation tailings with the leach solution. A sample of old pyrite flotation tailings from the concentrator containing 0.36% of copper and 0.23% of zinc was leached with 10% sulfuric acid in the column. Recovery of copper and zinc reached 47.1% and 47.2%, respectively. The pregnant leach solutions contained 15.9 g/L of ferric iron. The subsequent ferric leaching of copper converter slag flotation tailings containing 0.53% copper and 2.77% zinc with the pregnant leach solution was conducted. The effects of various process parameters on the leaching dynamics of metals under batch conditions were investigated. Under the best conditions (temperature 70 °C, pulp density 30%, ferric iron concentration 15.9 g/L, initial pH of the pulp 0) the recovery of copper and zinc reached 79.6% and 43.7%, respectively. It was concluded that acid leaching of base metals from old pyrite flotation tailings with pregnant leach solution for the ferric leaching of copper converter slag flotation tailings is a prospective and promising technique for the complex treatment of mining and metallurgical wastes.
Keywords:Converter slag  Pyrite flotation tailings  Ferric leaching  Metallurgical wastes  Metals recovery
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