Recovery of Lead from Zinc Plant Residue by Alkaline Leaching …
263
time. An important feature of the development is that it enriched silver the final
leach residue turning the material into an economically promising resource for Ag
recovery.
Acknowledgements The paper is based on the Basic Research Project (19-3212) of the Korea
Institute of Geoscience and Mineral Resources (KIGAM) funded by the Ministry of Science and
ICT, Republic of Korea.
References
1. Bahram B, Javad M (2011) Chloride leaching of lead and silver from refractory zinc plant
residue. Res J Chem Environ 15(2):1–8
2. Li M, Peng B, Chai L, Peng N, Yan H, Hou D (2012) Recovery of iron from zinc leaching
residue by selective reduction roasting with carbon. J Hazard Mater 237–238:323–330
3. Turan MD, Altundogan HS, Tumen F (2004) Recovery of zinc and lead from zinc plant residue.
Hydrometallurgy 75(1–4):169–176
263
time. An important feature of the development is that it enriched silver the final
leach residue turning the material into an economically promising resource for Ag
recovery.
Acknowledgements The paper is based on the Basic Research Project (19-3212) of the Korea
Institute of Geoscience and Mineral Resources (KIGAM) funded by the Ministry of Science and
ICT, Republic of Korea.
References
1. Bahram B, Javad M (2011) Chloride leaching of lead and silver from refractory zinc plant
residue. Res J Chem Environ 15(2):1–8
2. Li M, Peng B, Chai L, Peng N, Yan H, Hou D (2012) Recovery of iron from zinc leaching
residue by selective reduction roasting with carbon. J Hazard Mater 237–238:323–330
3. Turan MD, Altundogan HS, Tumen F (2004) Recovery of zinc and lead from zinc plant residue.
Hydrometallurgy 75(1–4):169–176
