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Designing Low Toxic Deep Eutectic Solvents for the Green Recycle of Lithium‐Ion Batteries Cathodes

Yilin Li, Mingjie Sun, Yanbo Cao, Yanbo Cao, Keying Yu, Zixuan Fan, Yuanyuan Cao, Yuanyuan Cao

2024ChemSusChem32 citationsDOI

Abstract

The Lithium-ion battery (LIB) is one of the main energy storage equipment. Its cathode material contains Li, Co, and other valuable metals. Therefore, recycling spent LIBs can reduce environmental pollution and resource waste, which is significant for sustainable development. However, traditional metallurgical methods are not environmentally friendly, with high cost and environmental toxicity. Recently, the concept of green chemistry gives rise to environmental and efficient recycling technology, which promotes the transition of recycling solvents from organic solvents to green solvents represented by deep eutectic solvents (DESs). DESs are considered as ideal alternative solvents in extraction processes, attracting great attention due to their low cost, low toxicity, good biodegradability, and high extraction capacity. It is very important to develop the DESs system for LIBs recycling for sustainable development of energy and green economic development of recycling technology. In this work, the applications and research progress of DESs in LIBs recovery are reviewed, and the physicochemical properties such as viscosity, toxicity and regulatory properties are summarized and discussed. In particular, the toxicity data of DESs are collected and analyzed. Finally, the guidance and prospects for future research are put forward, aiming to explore more suitable DESs for recycling valuable metals in batteries.

Topics & Concepts

Eutectic systemEnvironmentally friendlyGreen chemistryEnvironmental pollutionLithium (medication)Waste managementBattery (electricity)Hazardous wasteMaterials scienceEnvironmental scienceNanotechnologyChemistryIonic liquidOrganic chemistryEngineeringAlloyMetallurgyEnvironmental protectionCatalysisPhysicsBiologyEndocrinologyMedicineQuantum mechanicsPower (physics)EcologyExtraction and Separation ProcessesIonic liquids properties and applicationsChemical and Physical Properties in Aqueous Solutions
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