Solvent Extraction of Co(II) and Cu(II) from Hydrochloric Acid Solution of Spent Lithium-ion Batteries Containing Li(I), Mn(II), and Ni(II)
Author:
Affiliation:
1. Department of Advanced Materials Science & Engineering, Institute of Rare Metal, Mokpo National University
Publisher
The Korean Institute of Resources Recycling
Subject
General Earth and Planetary Sciences,General Engineering,General Environmental Science
Link
http://j-kirr.or.kr/articles/pdf/doi/10.7844/kirr.2020.29.5.73.pdf
Reference27 articles.
1. Kamat, P. V., 2019 : Lithium-ion batteries and beyond: Celebrating the 2019 Nobel prize in chemistry - a virtual issue, ACS Energy Lett., 4(11), pp.2757-2759.
2. Wang, Y., Liu, B., Li, Q., et al., 2015 : Lithium and lithium ion batteries for applications in microelectronic devices: A review, J. Power Sources, 286, pp.330-345.
3. Dutkiewicz, J., Kalita, D., Maziarz, W., et al., 2020 : Effect of KOBO extrusion and following cyclic forging on grain refinement of Mg-9Li-2Al-0.5Sc alloy, Met. Mater. Int., 26, pp.1004-1014.
4. Nouri, S., Sahmani, S., Hadavi, M., et al., 2020 : Mechanical properties improvement of al-li 8090 alloy by using the new proposed method of directional quenching, Met. Mater. Int., 26, pp.1134-1143.
5. Zheng, X., Gao, W., Zhang, X., et al., 2017 : Spent lithium- ion battery recycling - reductive ammonia leaching of metals from cathode scrap by sodium sulphite, Waste Manag., 60, pp.680-688.
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