A mild and efficient closed-loop recycling strategy for spent lithium-ion battery

被引:12
|
作者
Zhong, Yuanyuan [1 ]
Li, Zongrun [1 ]
Zou, Jingtian [1 ]
Pan, Ting [3 ]
Li, Pengfei [1 ]
Yu, Guihui [1 ]
Wang, Xiaowei [1 ]
Wang, Shubin [2 ]
Zhang, Jiafeng [1 ]
机构
[1] Cent South Univ, Sch Met & Environm, Natl Engn Lab High Efficiency Recovery Refractory, Changsha 410083, Peoples R China
[2] Minist Ecol & Environm MEE, South China Inst Environm Sci, State Environm Protect Key Lab Urban Ecol Environm, Guangzhou 510655, Peoples R China
[3] Zhejiang HeHui Ecol Environm Technol Co Ltd, Jiaxing 314201, Peoples R China
基金
中国国家自然科学基金;
关键词
Spent lithium-ion batteries; Sulfur-assisted roasting; Selective lithium extraction; Closed-loop recovery; SULFATION;
D O I
10.1016/j.jhazmat.2024.134794
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
As lithium metal resource supply and demand stabilize and prices decrease, the efficient recovery of valuable metals other than lithium from spent lithium-ion batteries is receiving increasing attention. Currently, challenges remain in the selective lithium recovery efficiency and the high cost of regenerating valuable metal slag after lithium extraction, particularly for spent ternary cathode materials. To address these challenges, this study introduces a closed-loop recovery process for spent ternary cathode materials, employing sulfur-assisted roasting to achieve efficient lithium extraction and high-value direct regeneration of ternary leaching residues. At moderate temperatures (500 degree celsius), LiNixCoyMn1-x-yO2 (NCM) materials undergo a directional transformation of lithium to Li2SO4 in synergy with sulfur and oxygen, achieving a lithium leaching extraction rate of 98.91 %. Additionally, the relatively mild reaction conditions preserve the secondary spherical morphology and uniform distribution of NiCoMn-based oxide residue without introducing adverse impurities, ensuring the successful regeneration of high-value NCM cathode materials (R-NCM). The R-NCM material exhibits good discharge capacity (144.3 mA.h/g at 1 C) and relatively stable cycling performance, with a capacity retention rate of 80 % after 150 cycles. This work provides a viable pathway for the efficient and environmental-friendly pyrometallurgical closed-loop recovery of spent lithium-ion batteries.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] A Green and Efficient Recycling Strategy for Spent Lithium-Ion Batteries in Neutral Solution Environment
    Xu, Zhilong
    Ye, Long
    Yu, Yun
    Gong, Haiqiang
    Xiao, Zhiming
    Ming, Lei
    Zhang, Bao
    Yao, Zhen
    Wang, Jiexi
    Ou, Xing
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2025,
  • [22] Closed-loop cobalt recycling from spent lithium-ion batteries based on a deep eutectic solvent (DES) with easy solvent recovery
    Li, Taibai
    Xiong, Yige
    Yan, Xiaohui
    Hu, Tao
    Jing, Siqi
    Wang, Zhongjie
    Ge, Xiang
    JOURNAL OF ENERGY CHEMISTRY, 2022, 72 : 532 - 538
  • [23] Closed-loop cobalt recycling from spent lithium-ion batteries based on a deep eutectic solvent(DES) with easy solvent recovery
    Taibai Li
    Yige Xiong
    Xiaohui Yan
    Tao Hu
    Siqi Jing
    Zhongjie Wang
    Xiang Ge
    Journal of Energy Chemistry , 2022, (09) : 532 - 538
  • [24] Closed-Loop Recycling of Lithium, Cobalt, Nickel, and Manganese from Waste Lithium-Ion Batteries of Electric Vehicles
    Chan, Ka Ho
    Anawati, John
    Malik, Monu
    Azimi, Gisele
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2021, 9 (12) : 4398 - 4410
  • [25] Closed-loop fast charging strategy of lithium-ion batteries based on temperature limitation and lithium precipitation
    Shen, Kai
    Dai, Jin
    Zheng, Yuejiu
    Xu, Chengshan
    Zhang, Rongbiao
    Wang, Huaibin
    Jin, Changyong
    Han, Xuebing
    Lai, Xin
    Qian, Xinzhe
    Feng, Xuning
    THERMAL SCIENCE AND ENGINEERING PROGRESS, 2023, 46
  • [26] Experimental Study on Recycling of Spent Lithium-Ion Battery Cathode Materials
    Jung, Joey Chung-Yen
    Chow, Norman
    Warkentin, Douglas Dale
    Chen, Ke
    Melashvili, Mariam
    Meseldzija, Zarko
    Sui, Pang-Chieh
    Zhang, Jiujun
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2020, 167 (16)
  • [27] A comparative study of discharging and leaching of spent lithium-ion battery recycling
    Segura-Bailon, Brenda
    Lapidus, Gretchen T.
    Ramos-Sanchez, Guadalupe
    MINERALS ENGINEERING, 2024, 218
  • [28] Recycling of spent lithium-ion battery cathode materials by ammoniacal leaching
    Ku, Heesuk
    Jung, Yeojin
    Jo, Minsang
    Park, Sanghyuk
    Kim, Sookyung
    Yang, Donghyo
    Rhee, Kangin
    An, Eung-Mo
    Sohn, Jeongsoo
    Kwon, Kyungjung
    JOURNAL OF HAZARDOUS MATERIALS, 2016, 313 : 138 - 146
  • [29] A closed-loop control on temperature difference of a lithium-ion battery by pulse heating in cold climates
    Du, Xuzhi
    Zhao, Lei
    Yang, Zhigang
    Jin, Zheyan
    JOURNAL OF ENERGY STORAGE, 2023, 57
  • [30] Carbon Footprint of Spent Ternary Lithium-Ion Battery Waste Recycling
    Song X.-C.
    Du S.
    Xie M.-H.
    Deng C.-N.
    Guo J.
    Shen P.
    Zhao C.
    Chen C.
    Huanjing Kexue/Environmental Science, 2024, 45 (06): : 3459 - 3467