Green Recycling Methods to Treat Lithium-Ion Batteries E-Waste: A Circular Approach to Sustainability
Creators
- 1. Energy Research Institute -at- NTU - ERI-at-N SCARCE Laboratory Nanyang Technological University Singapore 637459, (Singapore)
- 2. School of Materials Science and EngineeringNanyang Technological University (NTU)50 Nanyang Avenue, Singapore 639798, (Singapore)
- 3. Universite de Montpellier, CEA/CNRS/ENSCM, UMR 5257 (ICSM) BP 17171, Bagnols-sur-Ceze, 30207 (France)
- 4. Nanyang Technol Univ NTU, Sch Mat Sci and Engn, 50 Nanyang Ave, Singapore 639798, (Singapore)
- 5. Nanyang Technol Univ, SCARCE Lab, Energy Res Inst NTU ERI N, Singapore 637459, (Singapore)
Description
E-waste generated from end-of-life spent lithium-ion batteries (LIBs) is increasing at a rapid rate owing to the increasing consumption of these batteries in portable electronics, electric vehicles, and renewable energy storage worldwide. On the one hand, landfilling and incinerating LIBs e-waste poses environmental and safety concerns owing to their constituent materials. On the other hand, scarcity of metal resources used in manufacturing LIBs and potential value creation through the recovery of these metal resources from spent LIBs has triggered increased interest in recycling spent LIBs from e-waste. State of the art recycling of spent LIBs involving pyrometallurgy and hydrometallurgy processes generates considerable unwanted environmental concerns. Hence, alternative innovative approaches toward the green recycling process of spent LIBs are essential to tackle large volumes of spent LIBs in an environmentally friendly way. Such evolving techniques for spent LIBs recycling based on green approaches, including bioleaching, waste for waste approach, and electrodeposition, are discussed here. Furthermore, the ways to regenerate strategic metals post leaching, efficiently reprocess extracted high-value materials, and reuse them in applications including electrode materials for new LIBs. The concept of 'circular economy' is highlighted through closed-loop recycling of spent LIBs achieved through green-sustainable approaches. (authors)
Availability note (English)
Available from doi: http://dx.doi.org/10.1002/adma.202103346Additional details
Identifiers
Publishing Information
- Journal Title
- Advanced Materials (Weinheim)
- Journal Volume
- 34
- Journal Issue
- no.25
- Journal Page Range
- p. 2103346.1-2103346.27
- ISSN
- 0935-9648
INIS
- Country of Publication
- Germany
- Country of Input or Organization
- France
- INIS RN
- 56004816
- Subject category
- S11: NUCLEAR FUEL CYCLE AND FUEL MATERIALS; S37: INORGANIC, ORGANIC, PHYSICAL AND ANALYTICAL CHEMISTRY; S54: ENVIRONMENTAL SCIENCES;
- Descriptors DEI
- ELECTRODEPOSITION; HYDROMETALLURGY; LEACHING; LITHIUM; LITHIUM IONS; MATERIALS RECOVERY; MUNICIPAL WASTES; PYROMETALLURGY; RECYCLING; RENEWABLE ENERGY SOURCES; RESOURCE CONSERVATION; SAFETY; SUSTAINABLE DEVELOPMENT
- Descriptors DEC
- ALKALI METALS; CHARGED PARTICLES; DEPOSITION; DISSOLUTION; ELECTROLYSIS; ELEMENTS; ENERGY SOURCES; EXTRACTIVE METALLURGY; IONS; LYSIS; MANAGEMENT; METALLURGY; METALS; PROCESSING; RESOURCE DEVELOPMENT; SEPARATION PROCESSES; SURFACE COATING; WASTE MANAGEMENT; WASTE PROCESSING; WASTES
Optional Information
- Notes
- 206 refs.