PDF

Hydrometallurgical separation of rare earth elements coba 2010 Journal of P

Luiz Eduardo Oliveira Carmo Rodrigues, Marcelo Borges Mansur

2026enNiMH batteriesrare earthshydrometallurgysolvent extractionmetal recyclingcobalt nickel separation

Abstract

Language:

The separation of rare earth elements, cobalt and nickel from NiMH battery residues is evaluated in this paper. Analysis of the internal content of the NiMH batteries shows that nickel is the main metal present in the residue (around 50% in weight), as well as potassium (2.2–10.9%), cobalt (5.1–5.5%), rare earth elements (15.3–29.0%) and cadmium (2.8%). The presence of cadmium reveals that some Ni–Cd batteries are possibly labeled as NiMH ones. The leaching of nickel and cobalt from the NiMH battery powder with sulfuric acid is efficient; operating variables temperature and concentration of H2O2 has no significant effect for the conditions studied. A mixture of rare earth elements is separated by precipitation with NaOH. Finally, solvent extraction with D2EHPA (di-2-ethylhexyl phosphoric acid) followed by Cyanex 272 (bis-2,4,4-trimethylpentyl phosphinic acid) can separate cadmium, cobalt and nickel from the leach liquor. The effect of the main operating variables of both leaching and solvent extraction steps are discussed aiming to maximize metal separation for recycling purposes.

Download

Cite This Work

@article{49452868-7756-4a6c-a007-3c878684bec8,
  title={Hydrometallurgical separation of rare earth elements  coba 2010 Journal of P},
  author={Luiz Eduardo Oliveira Carmo Rodrigues and Marcelo Borges Mansur},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Hydrometallurgical separation of rare earth elements  coba 2010 Journal of P
AU  - Luiz Eduardo Oliveira Carmo Rodrigues
AU  - Marcelo Borges Mansur
PY  - 2026
LA  - en
ER  -

Similar Items

729490895 TFC Jordi kayombo

Copper solvent extraction units at large hydrometallurgical plants face constraints in metal recovery, phase disengagement, and reagent consumption, d

2026enPDF

842063941 SX configuration

2026enPDF

Extraction of copper and the co-leaching behaviour of other metals from waste printed circuit boards using alkaline glycine solutions

Huan Li, Elsayed Oraby, Jacques Eksteen

Waste printed circuit boards (WPCBs) are a complicated and valuable fraction of electric and electronic waste. The recycling of them is critical to av

2025enPDF

Design for Recovery of Precious and Base

2026enPDF

Treatment of manufacturing scrap TV boar

The leachability tests for manufacturing scrap TV boards (STVB) have indicated the release of metals beyond the limit levels with potential problems f

2026enPDF

Leaching of Gold from Mobile Phone

2026enPDF