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Journal ArticleDOI

Hydrometallurgical process for recovery of cobalt from waste cathodic active material generated during manufacturing of lithium ion batteries

TLDR
In this article, a new leaching-solvent extraction hydrometallurgical process for the recovery of a pure and marketable form of cobalt sulfate solution from waste cathodic active material generated during manufacturing of lithium ion batteries (LIBs).
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This article is published in Journal of Power Sources.The article was published on 2007-05-15. It has received 236 citations till now. The article focuses on the topics: Cobalt extraction techniques & Cobalt.

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Citations
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Recovery and recycling of lithium: A review

TL;DR: In this paper, the demand for lithium as LIB for the plug-in hybrid electric (PHEV), electric (EV) and hybrid electric vehicle in the recent future is huge and estimated to reach $221 billion by 2024.
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A Critical Review and Analysis on the Recycling of Spent Lithium-Ion Batteries

TL;DR: In this paper, the current status of spent lithium-ion battery recycling is summarized in light of the whole recycling process, especially focusing on the hydrometallurgy, which is used to extract metals or separate impurities from a specific waste stream so that the recycled materials or compounds can be further prepared by incorporating principles of materials engineering.
Journal ArticleDOI

Extraction of lithium from primary and secondary sources by pre-treatment, leaching and separation: A comprehensive review

TL;DR: In this paper, a comprehensive review of the resources of lithium and status of different processes/technologies in vogue or being developed for extracting lithium and associated metals from both primary and secondary resources are summarized.
Journal ArticleDOI

Toward sustainable and systematic recycling of spent rechargeable batteries

TL;DR: This work presents state-of-the-art fundamental research and industrial technologies related to battery recycling, with a special focus on lithium-ion battery recycling.
Journal ArticleDOI

Recycling of lithium-ion batteries: Recent advances and perspectives

TL;DR: A review of recent advances in recycling technologies of spent lithium-ion batteries, including the development of recycling processes, the products obtained from recycling, and the effects of recycling on environmental burdens are also highlighted.
References
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Book

Atlas of Electrochemical Equilibria in Aqueous Solutions

TL;DR: The Atlas of Electrochemical Equilibria in Aqueous solutions as discussed by the authors is the most complete and complete work on aqueous solvents, which includes a detailed description of the properties of the solvers.
Journal ArticleDOI

Hydrometallurgical process for recovery of metal values from spent lithium-ion secondary batteries

TL;DR: In this article, a flow-sheet of the hydrometallurgical process for the recovery of cobalt and lithium from the spent lithium-ion secondary batteries has been established based on the experimental results.
Journal ArticleDOI

Recovery of metal values from spent lithium-ion batteries with chemical deposition and solvent extraction

TL;DR: In this article, a new recycling process of metal values from spent lithium-ion batteries was described, where after the dismantling of the spent batteries steel crusts, the leaching of battery internal substances with alkaline solution and the dissolving of the residues with H 2 SO 4 solution were carried out.
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A laboratory-scale lithium-ion battery recycling process

TL;DR: In this article, the authors describe some preliminary activity in progress in their laboratory mainly directed to the development and evaluation of a multi-step recycling process, which gives promises of obtaining a good recovery of the battery components by rather efficient and easily achievable operations.
Journal ArticleDOI

Preparation of LiCoO2 from spent lithium-ion batteries

TL;DR: In this paper, a recycling process involving mechanical, thermal, hydrometallurgical and sol-gel steps has been applied to recover cobalt and lithium from spent lithium-ion batteries and to synthesize LiCoO2 from leach liquor as cathodic active materials.
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