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2026 Keutmann Acid dosage limits for pyrolyzed NMC black mass

Monika Keutmann, Kirill Saushkin

2026enlithium-ion batteriesblack massrecyclingleachingacidshydrometallurgy

Abstract

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This study investigated how acid concentration affects leaching from pyrolyzed LIBs’ (lithium-ion batteries’) black mass (BM) by stepwise acidification with eight acids at 70 °C under identical starting conditions. A citric-acid control without BM matched the calculated pH, whereas BM buffered solutions to ∼pH 9.5 and increased the measured pH. Stabilized pH provided a consistent reference within each experiment, but similar pH values across acids produced very different leaching efficiencies. At pH ≈ 3, lithium leaching was ∼pH 85% for formic acid and ∼pH 60% for citric acid. The maximum lithium leaching ranged from 49% (ascorbic acid) to 92% (sulfuric acid), while organic acids often showed limited cobalt and nickel dissolution. For formic acid, speciation and metal-formate solubility calculations showed that higher acid concentration does not necessarily increase transition-metal leaching and may suppress cobalt and nickel. Thus, pH is stable within each acid system but not transferable across acids, and high solid loading (250 g L −1) further requires acid-specific evaluation. The results indicate that acid-dependent speciation and complexation, rather than proton concentration alone, control extraction and can decouple acid dosage from leaching performance.

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Cite This Work

@article{e1d9775a-3eb1-42bd-8e27-a523c568bff5,
  title={2026   Keutmann   Acid dosage limits for pyrolyzed NMC black mass},
  author={Monika Keutmann and Kirill Saushkin},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - 2026   Keutmann   Acid dosage limits for pyrolyzed NMC black mass
AU  - Monika Keutmann
AU  - Kirill Saushkin
PY  - 2026
LA  - en
ER  -

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