A NOVEL CLOSED LOOP PROCESS FOR RECYCLING SPENT Li-ION BATTERY CATHODE MATERIALS

被引:14
作者
Jung, Joey Chung-Yen [1 ]
Chow, Norman [2 ]
Nacu, Anca [3 ]
Melashvili, Mariam [3 ]
Cao, Alex [3 ]
Khorbaladze, Luka [3 ]
Meseldzija, Zarko [4 ]
Sui, Jay Pang-Chieh [5 ]
Zhang, Jiujun [1 ]
机构
[1] Shanghai Univ, Inst Sustainable Energy, Coll Sci, Shanghai, Peoples R China
[2] Univ British Columbia, Dept Mat Engn, Vancouver, BC, Canada
[3] Kemetco Res Inc, Richmond, BC, Canada
[4] Amer Manganese Inc, Toronto, ON, Canada
[5] Tsinghua Univ, Sichuan Energy Internet Res Inst, Chengdu, Peoples R China
关键词
Li-ion battery; cathode recycling; metals precipitation; three-compartment membrane electrodialysis; closed-loop process; HYDROMETALLURGICAL PROCESS; METAL VALUES; LITHIUM RECOVERY; COBALT; ACID; MANGANESE; NICKEL; LICOO2; WASTE;
D O I
10.1080/15435075.2021.1914631
中图分类号
O414.1 [热力学];
学科分类号
摘要
Hydrometallurgical recycling of spent lithium cathode material commonly uses sodium hydroxide (NaOH) and sodium carbonate (Na2CO3) as reagents for impurity removal, metal extraction, and lithium recovery, which results a final processing solution containing high concentration of Na+ that needs to be treated before discharge or reuse. The present study reports the development of a novel closed-loop hydrometallurgical recycling of spent lithium cathode material process by adapting lithium hydroxide (LiOH) or lithium carbonate (Li2CO3) to replace in impurity removal and metal extraction, as well as using a threecompartment electrodialysis cell to regenerate LiOH and sulfuric acid (H2SO4) in recovering lithium. The regenerated LiOH and H2SO4 can be reused in the hydrometallurgical recycling process, making this a closed-loop process. Three different scales are studied to understand the reaction kinetics: 1-l batch, 40-l batch, and 73-l continuous batch. With LiOH as a reagent, impurities, such as Al and Fe, can be removed at pH 4.0-5.5. Metal extraction of Ni, Co, and Mn as carbonate or hydroxide can be achieved at pH 8-10. Up to 0.9 M of LiOH can be generated with a three-compartment electrodialysis cell with a 78% current efficiency. The proposed closed-loop hydrometallurgical process reduces costs through reagent regeneration, offering economic attractiveness, and provides an environmentally friendlier approach to recycling spent lithium-ion battery cathode material.
引用
收藏
页码:1597 / 1612
页数:16
相关论文
共 47 条
  • [1] A Review on Environmental, Economic and Hydrometallurgical Processes of Recycling Spent Lithium-ion Batteries
    Asadi Dalini, E.
    Karimi, Gh.
    Zandevakili, S.
    Goodarzi, M.
    [J]. MINERAL PROCESSING AND EXTRACTIVE METALLURGY REVIEW, 2021, 42 (07): : 451 - 472
  • [2] Advances in the recovering of spent lithium battery compounds
    Castillo, S
    Ansart, F
    Laberty-Robert, C
    Portal, J
    [J]. JOURNAL OF POWER SOURCES, 2002, 112 (01) : 247 - 254
  • [3] Process for the recovery of cobalt oxalate from spent lithium-ion batteries
    Chen, Liang
    Tang, Xincun
    Zhang, Yang
    Li, Lianxing
    Zeng, Zhiwen
    Zhang, Yi
    [J]. HYDROMETALLURGY, 2011, 108 (1-2) : 80 - 86
  • [4] Recovery of Valuable Metals from Lithium-Ion Batteries NMC Cathode Waste Materials by Hydrometallurgical Methods
    Chen, Wei-Sheng
    Ho, Hsing-Jung
    [J]. METALS, 2018, 8 (05):
  • [5] A laboratory-scale lithium-ion battery recycling process
    Contestabile, M
    Panero, S
    Scrosati, B
    [J]. JOURNAL OF POWER SOURCES, 2001, 92 (1-2) : 65 - 69
  • [6] Nucleation kinetics in the reactions of nickel basic carbonates with hydrogen sulfide: The carbonate precipitation reactions of divalent nickel
    Davidson, J. Michael
    Glass, Donald H.
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2007, 46 (14) : 4772 - 4777
  • [7] Automotive Li-Ion Batteries: Current Status and Future Perspectives
    Ding, Yuanli
    Cano, Zachary P.
    Yu, Aiping
    Lu, Jun
    Chen, Zhongwei
    [J]. ELECTROCHEMICAL ENERGY REVIEWS, 2019, 2 (01) : 1 - 28
  • [8] A study of the separation of cobalt from spent Li-ion battery residues
    Dorella, Germano
    Mansur, Marcelo Borges
    [J]. JOURNAL OF POWER SOURCES, 2007, 170 (01) : 210 - 215
  • [9] Reductive acid leaching of manganese dioxide with glucose: Identification of oxidation derivatives of glucose
    Furlani, G
    Pagnanelli, F
    Toro, L
    [J]. HYDROMETALLURGY, 2006, 81 (3-4) : 234 - 240
  • [10] Lithium Carbonate Recovery from Cathode Scrap of Spent Lithium-Ion Battery: A Closed-Loop Process
    Gao, Wenfang
    Zhang, Xihua
    Zheng, Xiaohong
    Lin, Xiao
    Cao, Hongbin
    Zhi, Yi
    Sun, Zhi
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2017, 51 (03) : 1662 - 1669