Recovery of Pure Ni(II) Compound by Precipitation from Hydrochloric Acid Solution Containing Si(IV)
Author:
Affiliation:
1. Department of Advanced Materials Science & Engineering, Institute of Rare Metal, Mokpo National University, Chonnam 58554, Republic of Korea
Publisher
The Korean Institute of Resources Recycling
Link
http://j-kirr.or.kr/articles/pdf/doi/10.7844/kirr.2021.30.6.36.pdf
Reference18 articles.
1. Zhao, Y., Pohl, O., Bhatt, A. I., et al., 2021 : A Review on Battery Market Trends, Second-Life Reuse, Sustainable Chemistry, 2, pp.167-205.
2. Li, J., Wang, G., Xu, Z., 2016 : Environmentally-friendly oxygen-free roasting/wet magnetic separation technology for in situ recycling cobalt, lithium carbonate and graphite from spent LiCoO
3. Kang, D. H. P., Chen, M., Ogunseitan, O. A., 2013 : Potential environmental and human health impacts of rechargeable lithium batteries in electronic waste, Environmental Science & Technology, 47, pp.5495-5503.
4. Natarajan, S., Aravindan, V., 2018 : Burgeoning prospects of spent lithium-ion batteries in multifarious applications, Advanced Energy Materials, 8(33), pp.1-16.
5. Boland, M. A., 2012 : Nickel-Makes Stainless Steel Strong, USGS Mineral Resources Program, 3024.
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