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2021 | OriginalPaper | Chapter

Application of Eutectic Freeze Crystallization in the Recycling of Li-Ion Batteries

Authors : Yiqian Ma, Michael Svärd, James Gardner, Richard T. Olsson, Kerstin Forsberg

Published in: Rare Metal Technology 2021

Publisher: Springer International Publishing

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Abstract

The widespread and increasing use of Li-ion batteries has led to an impending need for recycling solutions. Consequently, recycling of spent Li-ion batteries with energy-efficient, environmentally sustainable strategies has become a research hotspot. In this work, eutectic freeze crystallization (EFC), which requires less energy input than conventional evaporative crystallization (EC), has been investigated as a method for the recovery of Ni and Co sulfates from synthetic acidic strip solution in the recycling of NMC or NCA Li-ion batteries. Two binary sulfate systems have been studied. Batch EFC experiments have been conducted. It is shown that, with suitable control of supersaturation, ice and salt crystals can be recovered as separate phases below the eutectic temperatures. The work shows that EFC is a promising alternative to EC for the recovery of Ni and Co sulfates from spent Li-ion batteries.

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Literature
1.
go back to reference Huang B, Pan Z, Su X, An L (2018) Recycling of lithium-ion batteries: recent advances and perspectives. J Power Sourc 399:274–286CrossRef Huang B, Pan Z, Su X, An L (2018) Recycling of lithium-ion batteries: recent advances and perspectives. J Power Sourc 399:274–286CrossRef
2.
go back to reference Hu J, Zhang J, Li H, Chen Y, Wang C (2017) A promising approach for the recovery of high value-added metals from spent lithium-ion batteries. J Power Sourc 351:192–199CrossRef Hu J, Zhang J, Li H, Chen Y, Wang C (2017) A promising approach for the recovery of high value-added metals from spent lithium-ion batteries. J Power Sourc 351:192–199CrossRef
3.
go back to reference Peng C, Liu F, Lundström M (2019) Selective extraction of lithium (Li) and preparation of battery grade lithium carbonate (Li2CO3) from spent Li-ion batteries in nitrate system. J Power Sourc 415:179–188CrossRef Peng C, Liu F, Lundström M (2019) Selective extraction of lithium (Li) and preparation of battery grade lithium carbonate (Li2CO3) from spent Li-ion batteries in nitrate system. J Power Sourc 415:179–188CrossRef
4.
go back to reference Wang H, Friedrich B (2015) Development of a highly efficient hydrometallurgical recycling process for automotive Li–Ion batteries. J Sustain Metall 1:168–178CrossRef Wang H, Friedrich B (2015) Development of a highly efficient hydrometallurgical recycling process for automotive Li–Ion batteries. J Sustain Metall 1:168–178CrossRef
5.
go back to reference Chen X, Chen Y, Zhou T, Liu D, Hu H, Fan S (2015) Hydrometallurgical recovery of metal values from sulfuric acid leaching liquor of spent lithium-ion. Waste Manage 38:349–356CrossRef Chen X, Chen Y, Zhou T, Liu D, Hu H, Fan S (2015) Hydrometallurgical recovery of metal values from sulfuric acid leaching liquor of spent lithium-ion. Waste Manage 38:349–356CrossRef
6.
go back to reference Zhang J, Hu J, Zhang W, Chen Y, Wang C (2018) Efficient and economical recovery of lithium, cobalt, nickel, manganese from cathode scrap of spent lithium-ion batteries. J Clean Prod 204:437–446CrossRef Zhang J, Hu J, Zhang W, Chen Y, Wang C (2018) Efficient and economical recovery of lithium, cobalt, nickel, manganese from cathode scrap of spent lithium-ion batteries. J Clean Prod 204:437–446CrossRef
7.
go back to reference Virolainen S, Fini MF, Laitinen A, Sainio T (2017) Solvent extraction fractionation of Li-ion battery leachate containing Li, Ni, and Co. Sep Purif Technol 179:274–282CrossRef Virolainen S, Fini MF, Laitinen A, Sainio T (2017) Solvent extraction fractionation of Li-ion battery leachate containing Li, Ni, and Co. Sep Purif Technol 179:274–282CrossRef
8.
go back to reference Ulrich J, Jones J (2004) Industrial crystallization: developments in research and technology. Chem Eng Res Des 82:1567–1570CrossRef Ulrich J, Jones J (2004) Industrial crystallization: developments in research and technology. Chem Eng Res Des 82:1567–1570CrossRef
9.
go back to reference Lu H, Wang J, Wang T, Wang N, Bao Y, Hao H (2017) Crystallization techniques in wastewater treatment: an overview of applications. Chemosphere 173:474–484CrossRef Lu H, Wang J, Wang T, Wang N, Bao Y, Hao H (2017) Crystallization techniques in wastewater treatment: an overview of applications. Chemosphere 173:474–484CrossRef
10.
go back to reference Lu X (2014) Novel applications of eutectic freeze crystallization. PhD Thesis, Technische Universiteit Delft, ISBN: 9789461863416 Lu X (2014) Novel applications of eutectic freeze crystallization. PhD Thesis, Technische Universiteit Delft, ISBN: 9789461863416
11.
go back to reference OLI systems Inc Stream Analyser (2010) Version 3.1, OLI Systems Inc, Morris Plains, New Jersey OLI systems Inc Stream Analyser (2010) Version 3.1, OLI Systems Inc, Morris Plains, New Jersey
12.
go back to reference Kang J, Senanayake G, Sohn J, Shin S (2010) Recovery of cobalt sulfate from spent lithium ion batteries by reductive leaching and solvent extraction with Cyanex 272. Hydrometallurgy 100:168–171CrossRef Kang J, Senanayake G, Sohn J, Shin S (2010) Recovery of cobalt sulfate from spent lithium ion batteries by reductive leaching and solvent extraction with Cyanex 272. Hydrometallurgy 100:168–171CrossRef
Metadata
Title
Application of Eutectic Freeze Crystallization in the Recycling of Li-Ion Batteries
Authors
Yiqian Ma
Michael Svärd
James Gardner
Richard T. Olsson
Kerstin Forsberg
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-65489-4_1

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