Literature DB >> 34875455

Recycling chains for lithium-ion batteries: A critical examination of current challenges, opportunities and process dependencies.

Stefan Windisch-Kern1, Eva Gerold2, Thomas Nigl3, Aleksander Jandric4, Michael Altendorfer3, Bettina Rutrecht3, Silvia Scherhaufer4, Harald Raupenstrauch1, Roland Pomberger3, Helmut Antrekowitsch5, Florian Part4.   

Abstract

Lithium-ion batteries (LIBs) show high energy densities and are therefore used in a wide range of applications: from portable electronics to stationary energy storage systems and traction batteries used for e-mobility. Considering the projected increase in global demand for this energy storage technology, driven primarily by growth in e-vehicles, and looking at the criticality of some raw materials used in LIBs, the need for an efficient recycling strategy emerges. In this study, current state-of-the-art technologies for LIB recycling are reviewed and future opportunities and challenges, in particular to recover critical raw materials such as lithium or cobalt, are derived. Special attention is paid to the interrelationships between mechanical or thermal pre-treatment and hydro- or pyrometallurgical post-treatment processes. Thus, the unique approach of the article is to link processes beyond individual stages within the recycling chain. It was shown that influencing the physicochemical properties of intermediate products can lead to reduced recycling rates or even the exclusion of certain process options at the end of the recycling chain. More efforts are needed to improve information and data sharing on the exact composition of feedstock for recycling as well as on the processing history of intermediates to enable closed loop LIB recycling. The technical understanding of the interrelationships between different process combinations, such as pyrolytic or mechanical pre-treatment for LIB deactivation and metal separation, respectively, followed by hydrometallurgical treatment, is of crucial importance to increase recovery rates of cathodic metals such as cobalt, nickel, and lithium, but also of other battery components.
Copyright © 2021 The Authors. Published by Elsevier Ltd.. All rights reserved.

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Keywords:  Battery recycling; Hydrometallurgy; Lithium-ion batteries; Pyrometallurgy; Recovery or critical raw materials

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Year:  2021        PMID: 34875455     DOI: 10.1016/j.wasman.2021.11.038

Source DB:  PubMed          Journal:  Waste Manag        ISSN: 0956-053X            Impact factor:   7.145


  1 in total

1.  Investigation on the thermo-electric-electrochemical characteristics of retired LFP batteries for echelon applications.

Authors:  Youfu Lv; Weiming Luo; Ya Mo; Guoqing Zhang
Journal:  RSC Adv       Date:  2022-05-11       Impact factor: 4.036

  1 in total

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