Energy Storage Science and Technology ›› 2023, Vol. 12 ›› Issue (5): 1453-1460.doi: 10.19799/j.cnki.2095-4239.2023.0099

• Special Issue on Key Materials and Recycling Technologies for Energy Storage Batteries • Previous Articles     Next Articles

Retired lithium battery recycling and battery-grade lithium carbonate preparation

Hai WANG1,2,3(), Yuhua BIAN1, Jiadong WANG2,3, Zhaoyang LIU1, Jie ZHANG2,3, Jian YAO1, Xuanwen GAO1(), Zhaomeng LIU1, Wenbin LUO1   

  1. 1.School of Metallurgy, Northeastern University, Shenyang 110819, Liaoning, China
    2.YinYi Group Co. Ltd. , Ningbo 315020, Zhejiang, China
    3.Guangxi Yinyi Advanced Material Company Limited, Yulin 537624, Guangxi, China
  • Received:2023-03-01 Revised:2023-03-16 Online:2023-05-05 Published:2023-05-29
  • Contact: Xuanwen GAO E-mail:545679042@qq.com;gaoxuanwen@mail.neu.edu.cn

Abstract:

Recycling valuable metals from used ternary lithium batteries can reduce environmental pollution and alleviate problems such as resource scarcity. Herein, an advanced and simple front-end lithium extraction process provides positive and negative mixing powder from dismantling used lithium-ion batteries using a tube furnace. The tube furnace is maintained at a certain pressure and continuously fed with carbon dioxide to roast at 750 ℃ for 1 h. Then a certain amount of water is added to the roasted powder to make a slurry, continuously passing carbon dioxide gas after solid-liquid separation to obtain a lithium bicarbonate solution. Then the solution is heated and decomposed to obtain 99.5% purity of battery-grade lithium carbonate. The overall lithium leaching rate and the recovery rate can reach 99.05% and 99%, respectively, which is one of the most advanced recovery technologies and can effectively solve the problems of difficult lithium recovery, high recovery cost, and poor economic efficiency.

Key words: retired lithium battery, recycling, battery-grade lithium carbonate

CLC Number: