A novel pulsated pneumatic separation with variable-diameter structure and its application in the recycling spent lithium-ion batteries

被引:40
作者
Zhu, Xueshuai [1 ]
Zhang, Chenyu [1 ]
Feng, Ping [1 ]
Yang, Xizu [1 ]
Yang, Xiaojuan [1 ]
机构
[1] China Univ Min & Technol Beijing, Sch Chem & Environm Engn, Beijing 100083, Peoples R China
基金
中国国家自然科学基金;
关键词
Pneumatic separation; Flotation; Electrode materials; Spent Lithium-ion Batteries; Recycling; FLOTATION TECHNOLOGY; CATHODE MATERIALS; VALUABLE METALS; RECOVERY; PYROLYSIS; GRAPHITE; SYSTEM; LICOO2; REGENERATION; SCRAP;
D O I
10.1016/j.wasman.2021.05.027
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In recycling of the spent lithium iron phosphorus (LiFePO4) batteries, the mechanical pretreatment is critical for relieving the pressure of the subsequent recycling process and reducing the cost of whole recycling process. In order to achieve the separation and concentration of the cathode materials, anode materials, copper and aluminum foils from spent LiFePO4 batteries, a novel pneumatic separation combined with froth flotation is designed in this research. A pulsated pneumatic separation with variable diameter structure separator is used, through which 92.08% of copper and 96.68% of aluminum were recovered. In the pneumatic separation the movement of the copper and aluminum flakes can be described by an improved equivalent diameter method, based on the force analysis of the flaky particles. The froth flotation is utilized to recover the cathode materials and anode materials with the recovery of 92.86% and 83.21%, respectively. A mass balance and a technological route of the recycling process are provided finally. The present work provides a green and high-efficiency recycling process in which copper, aluminum, anode and cathode materials in lithium-ion batteries can be recovered respectively only by physical methods. (C) 2021 Elsevier Ltd. All rights reserved.
引用
收藏
页码:20 / 30
页数:11
相关论文
共 44 条
[1]   Application of spouted bed elutriation in the recycling of lithium ion batteries [J].
Bertuol, Daniel A. ;
Toniasso, Camila ;
Jimenez, Bernardo M. ;
Meili, Lucas ;
Dotto, Guilherme L. ;
Tanabe, Eduardo H. ;
Aguiar, Monica L. .
JOURNAL OF POWER SOURCES, 2015, 275 :627-632
[2]   Pneumatic separation and recycling of anode and cathode materials from spent lithium iron phosphate batteries [J].
Bi, Haijun ;
Zhu, Huabing ;
Zu, Lei ;
He, Shuanghua ;
Gao, Yong ;
Gao, Song .
WASTE MANAGEMENT & RESEARCH, 2019, 37 (04) :374-385
[3]   Environmentally friendly recycling and effective repairing of cathode powders from spent LiFePO4 batteries [J].
Chen, Jiangping ;
Li, Qingwen ;
Song, Jishun ;
Song, Dawei ;
Zhang, Lianqi ;
Shi, Xianxing .
GREEN CHEMISTRY, 2016, 18 (08) :2500-2506
[4]   Gradient and facile extraction of valuable metals from spent lithium ion batteries for new cathode materials re-fabrication [J].
Chen, Xiangping ;
Kang, Duozhi ;
Li, Jiazhu ;
Zhou, Tao ;
Ma, Hongrui .
JOURNAL OF HAZARDOUS MATERIALS, 2020, 389
[5]   A novel closed-loop process for the simultaneous recovery of valuable metals and iron from a mixed type of spent lithium-ion batteries [J].
Chen, Xiangping ;
Li, Jiazhu ;
Kang, Duozhi ;
Zhou, Tao ;
Ma, Hongrui .
GREEN CHEMISTRY, 2019, 21 (23) :6342-6352
[6]   SETTLING VELOCITY OF IRREGULARLY SHAPED PARTICLES [J].
CHIEN, SF .
SPE DRILLING & COMPLETION, 1994, 9 (04) :281-289
[7]   Examining different recycling processes for lithium-ion batteries [J].
Ciez, Rebecca E. ;
Whitacre, J. F. .
NATURE SUSTAINABILITY, 2019, 2 (02) :148-156
[8]   Ecological Recycling of Lithium-Ion Batteries from Electric Vehicles with Focus on Mechanical Processes [J].
Diekmann, Jan ;
Hanisch, Christian ;
Froboese, Linus ;
Schaelicke, Gerrit ;
Loellhoeffel, Thomas ;
Foelster, Anne-Sophie ;
Kwade, Arno .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2017, 164 (01) :A6184-A6191
[9]   Lithium-ion battery recycling processes: Research towards a sustainable course [J].
Gaines, Linda .
SUSTAINABLE MATERIALS AND TECHNOLOGIES, 2018, 17
[10]  
GIBBS RJ, 1971, J SEDIMENT PETROL, V41, P7