logo
ResearchBunny Logo
Universal and efficient extraction of lithium for lithium-ion battery recycling using mechanochemistry

Chemistry

Universal and efficient extraction of lithium for lithium-ion battery recycling using mechanochemistry

O. Dolotko, N. Gehrke, et al.

This paper presents a groundbreaking, acid-free mechanochemical process for recycling lithium from diverse cathode materials, achieving up to 70% recovery of pure Li₂CO₃. Conducted by a team from the Karlsruhe Institute of Technology, this method highlights its potential as a sustainable solution for lithium-ion battery recycling.

00:00
00:00
~3 min • Beginner • English
Abstract
The increasing lithium-ion battery production calls for profitable and ecologically benign technologies for their recycling. Unfortunately, all used recycling technologies are always associated with large energy consumption and utilization of corrosive reagents, which creates a risk to the environment. Herein we report a highly efficient mechanochemically induced acid-free process for recycling Li from cathode materials of different chemistries such as LiCoO2, LiMn2O4, Li(CoNiMn)O2, and LiFePO4. The introduced technology uses Al as a reducing agent in the mechanochemical reaction. Two different processes have been developed to regenerate lithium and transform it into pure Li2CO3. The mechanisms of mechanochemical transformation, aqueous leaching, and lithium purification were investigated. The presented technology achieves a recovery rate for Li of up to 70% without applying any corrosive leachates or utilizing high temperatures. The key innovation is that the regeneration of lithium was successfully performed for all relevant cathode chemistries, including their mixture.
Publisher
Communications Chemistry
Published On
Mar 28, 2023
Authors
Oleksandr Dolotko, Niclas Gehrke, Triantafillia Malliaridou, Raphael Sieweck, Laura Herrmann, Bettina Hunzinger, Michael Knapp, Helmut Ehrenberg
Tags
lithium recycling
mechanochemical process
acid-free
battery recycling
Li₂CO₃ recovery
sustainable technology
cathode materials
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny