A comprehensive review and classification of unit operations with assessment of outputs quality in lithium-ion battery recycling

被引:83
作者
Latini, Dario [1 ]
Vaccari, Marco [1 ]
Lagnoni, Marco [1 ]
Orefice, Martina [2 ]
Mathieux, Fabrice [2 ]
Huisman, Jaco [2 ]
Tognotti, Leonardo [1 ]
Bertei, Antonio [1 ]
机构
[1] Univ Pisa, Dept Civil & Ind Engn, Largo Lazzarino 2, I-56122 Pisa, Italy
[2] European Commiss Joint Res Ctr, Via E Fermi 2749, I-21027 Ispra, Italy
关键词
Lithium-ion battery recycling; Unit operation; Material recovery; Hydrometallurgy; Pyrometallurgy; End-of-Waste; LINI0.5CO0.2MN0.3O2 CATHODE MATERIALS; SUPERCRITICAL CARBON-DIOXIDE; IRON PHOSPHATE BATTERIES; EDDY-CURRENT SEPARATION; LI-ION; VALUABLE METALS; MANAGEMENT-SYSTEM; ELECTRODE MATERIALS; SPENT; RECOVERY;
D O I
10.1016/j.jpowsour.2022.231979
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Lithium-ion batteries (LIBs) are the core component of the electrification transition, being used in portable electronics, electric vehicles, and stationary energy storage. The exponential growth of LIB use generates a large flow of spent batteries which must be recycled. This paper provides a comprehensive review of industrial realities of LIB recycling companies in Europe, North America, and Asia. An in-depth description of representative pyrometallurgy-based and hydrometallurgy-based processes is reported, providing classification of unit operations, their industrial readiness, and quality of output materials. The analysis shows that the pyrometallurgical route can treat different LIB chemistries without pre-sorting, but Li is not recovered unless the slag is refined. Hydrometallurgy-based processes are more chemistry-specific and in, although being affected by losses of electrode active materials during the mechanical pre-treatments for black mass separation. Efforts are required to promote in Europe the industrial capacity and readiness of hydrometallurgical processes by facilitating sorting and mechanical separations. There is also the need for harmonization of criteria for outputs definitions and rules for calculating recycling efficiency indicators. This represents an opportunity for modeling to support quantitative techno-economic and environmental assessments of the entire LIB recycling chain.
引用
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页数:23
相关论文
共 248 条
[1]  
A.M. Inc, 2021, AM MANGANESE INC PRE
[2]   Adaptation of minerals processing operations for lithium-ion (LiBs) and nickel metal hydride (NiMH) batteries recycling: Critical review [J].
Al-Thyabat, S. ;
Nakamura, T. ;
Shibata, E. ;
Iizuka, A. .
MINERALS ENGINEERING, 2013, 45 :4-17
[3]   Challenges for sustainable lithium supply: A critical review [J].
Alessia, Amato ;
Alessandro, Becci ;
Maria, Villen-Guzman ;
Carlos, Vereda-Alonso ;
Francesca, Beolchini .
JOURNAL OF CLEANER PRODUCTION, 2021, 300
[4]   Separation and recovery of cobalt and nickel from end of life products via solvent extraction technique: A review [J].
Alvial-Hein, Guillermo ;
Mahandra, Harshit ;
Ghahreman, Ahmad .
JOURNAL OF CLEANER PRODUCTION, 2021, 297
[5]  
An L., 2019, Recycling of Spent Lithium-Ion Batteries: Processing Methods and Environmental Impacts, DOI [10.1007/978-3-030-31834-5, DOI 10.1007/978-3-030-31834-5]
[6]  
[Anonymous], RESOURCE MANAGEMENT
[7]  
[Anonymous], CLEANER WORLD
[8]  
[Anonymous], NORTHVOLT FUTURE ENE
[9]   A Comprehensive Review of the Advancement in Recycling the Anode and Electrolyte from Spent Lithium Ion Batteries [J].
Arshad, Faiza ;
Li, Li ;
Amin, Kamran ;
Fan, Ersha ;
Manurkar, Nagesh ;
Ahmad, Ali ;
Yang, Jingbo ;
Wu, Feng ;
Chen, Renjie .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2020, 8 (36) :13527-13554
[10]   A Review on Environmental, Economic and Hydrometallurgical Processes of Recycling Spent Lithium-ion Batteries [J].
Asadi Dalini, E. ;
Karimi, Gh. ;
Zandevakili, S. ;
Goodarzi, M. .
MINERAL PROCESSING AND EXTRACTIVE METALLURGY REVIEW, 2021, 42 (07) :451-472