Comprehensive recovery of lead, zinc, and iron from hazardous jarosite residues using direct reduction followed by magnetic separation
Author:
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Metals and Alloys,Geochemistry and Petrology,Mechanical Engineering,Mechanics of Materials
Link
http://link.springer.com/article/10.1007/s12613-018-1555-1/fulltext.html
Reference27 articles.
1. D.C. Choque, F.N. Alonso, and J.C. Fuentes-Aceituno, Acid decomposition and thiourea leaching of silver from hazardous jarosite residues: Effect of some cations on the stability of the thiourea system, J. Hazard. Mater., 317(2016), No. 5, p. 440.
2. L. Montanaro, N. Bianchini, J.M. Rincon, and M. Romero, Sintering behaviour of pressed red mud wastes from zinc hydrometallurgy, Ceram. Int., 27(2001), No. 1, p. 29.
3. P. Asokan, M. Saxena, and S.R. Asolekar, Jarosite characteristics and its utilisation potentials, Sci. Total Environ., 359(2006), No. 1-3, p. 232.
4. P. Asokan, M. Saxena, and S.R. Asolekar, Recycling hazardous jarosite waste using coal combustion residues, Mater. Charact., 61(2010), No. 12, p. 1342.
5. S.H. Ju, Y.F. Zhang, Y. Zhang, P.Y. Xue, and Y.H. Wang, Clean hydrometallurgical route to recover zinc, silver, lead, copper, cadmium and iron from hazardous jarosite residues produced during zinc hydrometallurgy, J. Hazard. Mater., 192(2011), No. 2, p. 554.
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