Minerals, Volume (14), No (11), Year (2024-11) , Pages (1120-1143)

Title : ( Selective Leaching of Lithium and Beyond: Sustainable Eggshell-Mediated Recovery from Spent Li-Ion Batteries )

Authors: Hossein Shalchian , Maryam Khalili , Ali Reza Kiani Rashid , Behzad Nateq , Francesco Veglio ,

Citation: BibTeX | EndNote

Abstract

Abstract: This study introduces an innovative strategy for the selective leaching of lithium from spent Li-ion batteries. Based on thermodynamic assessments and exploiting waste eggshells as a source of calcium carbonate, an impressive 38% of lithium was dissolved selectively through mechanical milling and water leaching, outperforming conventional thermochemical methods. Afterwards, a hydrogen peroxide-assisted sulfuric acid leaching was also implemented to solubilize targeted elements (Mn, Co, Ni, and Li), with an exceptional 99% efficiency in Mn removal from the leachate using potassium permanganate and a pH range of 1.5 to 3.5. Selective separations of Co and Ni were then facilitated utilizing CYANEX 272 and n-heptane. This comprehensive study presents a promising and sustainable avenue for the effective recovery of Li and associated co-elements from spent lithium batteries.

Keywords

, lithium carbonate; eggshell; Li, ion batteries; mechanochemical process; water leaching; solvent extraction
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@article{paperid:1100633,
author = {Shalchian, Hossein and Khalili, Maryam and Kiani Rashid, Ali Reza and Nateq, Behzad and فرانسیسکو ویگلیو},
title = {Selective Leaching of Lithium and Beyond: Sustainable Eggshell-Mediated Recovery from Spent Li-Ion Batteries},
journal = {Minerals},
year = {2024},
volume = {14},
number = {11},
month = {November},
issn = {2075-163X},
pages = {1120--1143},
numpages = {23},
keywords = {lithium carbonate; eggshell; Li-ion batteries; mechanochemical process; water leaching; solvent extraction},
}

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%0 Journal Article
%T Selective Leaching of Lithium and Beyond: Sustainable Eggshell-Mediated Recovery from Spent Li-Ion Batteries
%A Shalchian, Hossein
%A Khalili, Maryam
%A Kiani Rashid, Ali Reza
%A Nateq, Behzad
%A فرانسیسکو ویگلیو
%J Minerals
%@ 2075-163X
%D 2024

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