Experimentation, Modeling, and Optimum Conditions of Pyro-Hydrometallurgical-Precipitation Reaction Technology for Recovery of Copper as Oxide of Nanoparticles from a Copper Dust

Author:

Adeleke A. A.,Popoola A. P. I.,Popoola O. M.,Okanigbe D. O.

Publisher

Springer International Publishing

Reference13 articles.

1. Ha TK, Kwon BH, Park KS, Mohapatra D (2015) Selective leaching and recovery of bismuth as Bi2O3 from copper smelter converter dust. Sep Purif Technol 142:116–122

2. Balladares E, Kelm U, Helle S, Parra R, Araneda E (2014) Chemical-mineralogical characterization of copper smelting flue dust. Dyna 81(186):11–18

3. SANS (2005) South African National Standard: ambient air quality—limits for common pollutants

4. Gorai B, Jana RK, Khan ZH (2002) Electrorefining electrolyte from copper plant dust. Mater Trans 43(3):532–536

5. Gao J, Huang Z, Wang Z, Guo Z (2019) Recovery of crown zinc and metallic copper from copper smelter dust by evaporation, condensation and super-gravity separation. Sep Purif Technol 115925

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