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2025 Badre Eddine Citric acid leaching and electrodialysis of NMC

Soukayna Badre-Eddine, Laurence Muhr

2026enlithium recoveryelectrodialysiscitric acidhydrometallurgybattery recyclingNMC cathode

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With the growing demand for metals driven by technological advancements and population growth, recycling lithium-ion batteries has become vital for protecting the environment and recovering valuable materials. Developing sustainable recycling technologies is now more essential than ever. This paper focuses on using electrodialysis to process a leach solution of LiNi0.33Mn0.33Co0.33O2 (NMC 111) cathode materials leached with citric acid. This study demonstrates that the complexing properties of citrate anions contribute to the efficient separation of Li from Ni, Co, and Mn by electrodialysis. This is achieved by promoting the formation of anionic species for Ni, Co, and Mn while maintaining Li in its cationic form. The leach solution was produced under the following optimal experimental conditions to reach a final pH of 5 and high leaching efficiency: a citric acid concentration of 1 mol L−1, a leaching temperature of 45 ◦C, a leaching time of 5 h, a liquid/solid ratio of 100 g/L, and 8 vol.% H2O2. These conditions resulted in leaching efficiencies of 89.3% for Ni, 95.1% for Co, 77.1% for Mn, and 92.9% for Li. This solution led to the formation of a lithium-rich supernatant and a precipitate. The supernatant was then used as the feed solution for electrodialysis. Pure lithium was successfully separated with a faradic efficiency of 71.4% with a commercial cation-exchange membrane.

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Cite This Work

@article{318a818f-294e-49b5-9dcd-3ebc54c509b8,
  title={2025   Badre Eddine   Citric acid leaching and electrodialysis of NMC},
  author={Soukayna Badre-Eddine and Laurence Muhr},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - 2025   Badre Eddine   Citric acid leaching and electrodialysis of NMC
AU  - Soukayna Badre-Eddine
AU  - Laurence Muhr
PY  - 2026
LA  - en
ER  -

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