All Issue

2023 Vol.32, Issue 6 Preview Page

Research Paper

31 December 2023. pp. 25-33
Abstract
References
1
Grand View Research, 2021 : Lithium-ion Battery Market Size, Share & Trends Analysis Report by Product, By Application, By Region, And Segment Forecasts, 2022-2030.
2
SNE research, 2023 : Recycling/Reuse Technology trends and market outlook (~2040).
3
Z. J.Baum, R. E.Bird, X. Yu, et al., 2022 : Lithium-ion battery recycling - Overview of Techniques and Trends, ACS Energy Lett., 7, pp.712-719 10.1021/acsenergylett.1c02602
4
M. Contestabile, S. Panero, B. Scrosati, 1999: A laboratory-scale ilthium battery recycling process, Journal of Power Sources, 83, pp.75-78. 10.1016/S0378-7753(99)00261-X
5
P. Zhang, T. Yokoyama, O. Itabashi, et al., 1999 : Recovery of metal values from spent nickel-metal hydride rechargeable batteries, Journal of Power Sources, 77, pp.116-122. 10.1016/S0378-7753(98)00182-7
6
G. Mishra, R. Jha, A. Meshram, et al., 2022 : A review on recycling of lithium-ion batteries to recover critial metals, Journal of Environmental Chemical Engineering, 10(6), 108534. 10.1016/j.jece.2022.108534
7
H. Ali, H. A. Khan, M. Pecht, 2022 : Preprocessing of spent lithium-ion batteries for recycling : Need, methods, and trends, Renewable and Sustainable Energy Reviews, 168, 112809. 10.1016/j.rser.2022.112809
8
B. Niu, J. Xiao, Z. Xu, 2022 : Advances and challenges in anode graphite recycling from spent lithium-ion batteries, Journal of Hazardous Materials, 439(5), 129678. 10.1016/j.jhazmat.2022.12967836104906
9
R. Zhan, Z.Oldenburg, L. Pan, 2018 : Recovery of active cathode materials from lithium-ion batteries using froth flotation, Sustainable Materials and Technolgies, 17, e00062. 10.1016/j.susmat.2018.e00062
10
T. O. Folayan, A. L. Lipson, J. L. Durham, et al., 2021 : Direct Recycling of Blended Cathode Materials by Froth Flotation, Energy Technology, 9, 2100468. 10.1002/ente.202100468
11
A. Vanderbruggen, A. Salces, A. Ferreira, et al., 2022 : Improving Sepration Efficiency in End-of-Life Lithium-Ion Batteries Flotation Using Attrition Pre-Treatment, 2022, 12, 72. 10.3390/min12010072
12
A. M. Salces, I. Bremerstein, M. Rudolph, et al., 2022 : Joint recovery of graphite and lithium metal oxides from spent lithium-ion batteries using froth flotation and investigation on process water re-use, Minerals Engineering, 184, 107670. 10.1016/j.mineng.2022.107670
13
ASTM D 7582-15, 2015 : Standard Test Methods for Proximate Analysis of Coal and Coke by Marco Thermogravimetric Analysis.
14
C. J. Greet, R. St. C. Smart, 1997 : The effect of size separation by cyclosizing and sedimentation/decantation on mineral surfaces, Minerals Engineering, 10(9), pp.995-1011. 10.1016/S0892-6875(97)00079-4
15
S. Babanejad, H. Ahmed, C. Andersson, et al., 2022 : High-Temperature Behavior of Spent Li-ion Battery Black Mass in Inert Atmosphere, Journal of Sustainable Metallurgy, 8, pp.556-581. 10.1007/s40831-022-00514-y
16
O. S. Kwon, I. Shon, 2020 : Fundamental thermokinetic study of a sustainable lithium-ion battery pyrometallurgical recyling process, Resources, Conservation & Recycling, 158, 104809. 10.1016/j.resconrec.2020.104809
17
M. A. Trunov, M. Schoenitz, E. L. Dreizin, 2006 : Effect of polymorphic phase transformations in alumina layer on ignition of aluminium particles, Combusition Theory and Modelling, 10(4), pp.603-623. 10.1080/13647830600578506
Information
  • Publisher :The Korean Institute of Resources Recycling
  • Publisher(Ko) :한국자원리싸이클링학회
  • Journal Title :Resources Recycling
  • Journal Title(Ko) :자원리싸이클링
  • Volume : 32
  • No :6
  • Pages :25-33
  • Received Date : 2023-11-30
  • Revised Date : 2023-12-10
  • Accepted Date : 2023-12-11