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Erschienen in: Journal of Material Cycles and Waste Management 3/2023

16.03.2023 | ORIGINAL ARTICLE

Novel approach for in situ recovery of cobalt oxalate from spent lithium-ion batteries using tartaric acid and hydrogen peroxide

verfasst von: Qian Cheng, Barbara Marchetti, Mingfang Chen, Jun-Tao Li, Jiayi Wu, Xiangyu Liu, Xiao-Dong Zhou

Erschienen in: Journal of Material Cycles and Waste Management | Ausgabe 3/2023

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Abstract

Recycling Co resource from spent lithium-ion batteries (LIBs) is significant for Co deficiency and environmental protection. A novel approach for in situ recovery of cobalt oxalate (Co(II)-oxalate) from spent LiCoO2 cathodes is proposed. 98.9% Co and 99.6% Li were obtained under the optimized conditions of 1.0 mol/L L-tartaric acid with 5 vol.% H2O2, 10 g/L solid-to-liquid ratio, and 10 min leaching time at 80 °C. Meanwhile, the leaching of Co and Li fits well to Avrami equation model with apparent activation energy of 48.86 and 28.03 kJ/mol, respectively. The first and second stability constants of Co (II) and L-tartaric acid are 1.05 (log K1) and 0.26 (log K2), respectively. 91.8% of high-purity Co(II)-oxalate was regenerated using 5 vol.% H2O2 at 80 °C for 6 h. The whole reaction mechanism was investigated by time-dependent UV–Vis spectroscopy. The proposed in situ Co recovery process proceeds according to the following pathway: Co(III)-tartrate → Co(II)-tartrate → Co(II)-oxalate. In the process, L-tartaric acid mainly acts as a chelating agent and acts as a precursor to form oxalate. Meanwhile, H2O2 mainly acts as a reducing agent and an oxidant. The process may provide an effective and environmentally friendly route for the sustainable recovery of Co(II)-oxalate from spent LIBs.

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Literatur
7.
Zurück zum Zitat Banza Lubaba Nkulu C, Casas L, Haufroid V, De Putter T, Saenen ND, Kayembe-Kitenge T, Musa Obadia P, Kyanika Wa Mukoma D, Lunda Ilunga JM, Nawrot TS, Luboya Numbi O, Smolders E, Nemery B (2018) Sustainability of artisanal mining of cobalt in DR Congo. Nat Sustain 1:495–504. https://doi.org/10.1038/s41893-018-0139-4CrossRef Banza Lubaba Nkulu C, Casas L, Haufroid V, De Putter T, Saenen ND, Kayembe-Kitenge T, Musa Obadia P, Kyanika Wa Mukoma D, Lunda Ilunga JM, Nawrot TS, Luboya Numbi O, Smolders E, Nemery B (2018) Sustainability of artisanal mining of cobalt in DR Congo. Nat Sustain 1:495–504. https://​doi.​org/​10.​1038/​s41893-018-0139-4CrossRef
42.
Zurück zum Zitat Demirkiran NaK A (2007) Dissolution kinetics of ulexite in perchloric acid solutions. Int J Miner Process 83:76–80CrossRef Demirkiran NaK A (2007) Dissolution kinetics of ulexite in perchloric acid solutions. Int J Miner Process 83:76–80CrossRef
45.
Zurück zum Zitat Li G, Rao M, Jiang T, Huang Q, Peng Z (2011) Leaching of limonitic laterite ore by acidic thiosulfate solution. Miner Eng 24:859–863CrossRef Li G, Rao M, Jiang T, Huang Q, Peng Z (2011) Leaching of limonitic laterite ore by acidic thiosulfate solution. Miner Eng 24:859–863CrossRef
48.
Zurück zum Zitat Haynes WM (2012) CRC handbook of chemistry and physics, 92nd edn. CRC Press, Boca Raton Haynes WM (2012) CRC handbook of chemistry and physics, 92nd edn. CRC Press, Boca Raton
53.
Zurück zum Zitat Kabir-ud-Din SM, Iqubal S, Khanb Z (2005) Oxidation of DL-tartaric acid by water soluble colloidal MnO2 in the absence and presence of surfactants. Indian J Chem 44A:2455–2461 Kabir-ud-Din SM, Iqubal S, Khanb Z (2005) Oxidation of DL-tartaric acid by water soluble colloidal MnO2 in the absence and presence of surfactants. Indian J Chem 44A:2455–2461
Metadaten
Titel
Novel approach for in situ recovery of cobalt oxalate from spent lithium-ion batteries using tartaric acid and hydrogen peroxide
verfasst von
Qian Cheng
Barbara Marchetti
Mingfang Chen
Jun-Tao Li
Jiayi Wu
Xiangyu Liu
Xiao-Dong Zhou
Publikationsdatum
16.03.2023
Verlag
Springer Japan
Erschienen in
Journal of Material Cycles and Waste Management / Ausgabe 3/2023
Print ISSN: 1438-4957
Elektronische ISSN: 1611-8227
DOI
https://doi.org/10.1007/s10163-023-01637-4

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