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Nickel recovery from Raney nickel by leaching and precipitation: Towards resource valorisation

Muhammad Hairul Haizan Azizan, Norhaslinda Nasuha

2026ennickel recoveryleachingprecipitationsustainabilitycatalysts

Abstract

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Spent catalysts are often rich in valuable metals and are typically discarded, leading to both resource loss and environmental issues. Recovering nickel from spent catalysts is thus crucial for improving resource efficiency and sustainable resource use. In the present study, nickel was recovered from a Raney Nickel catalyst via acid leaching with sulphuric acid and precipitation with sodium hydroxide. The effects of acid concentration on the leaching process and the effect of pH on the precipitation process were investigated. The leaching process was carried out using sulphuric acid at concentrations of 3, 4, 4.5 and 5.5 M, and the solid residue from the leachate solution was separated by filtration. Later, the pH of the leach solution was adjusted to 5 M NaOH to precipitate nickel. Nickel recovery was investigated as a function of sulphuric acid concentrations in the leaching process and the solution pH in the precipitation process. It was found that 4.5 M H₂SO₄ yielded the highest nickel recovery of 68.13%. Using 4.5 M H₂SO₄ for leaching and pH 14 of NaOH precipitation, the presence of nickel and nickel oxide was confirmed using XRD in the precipitate. The leaching rate was further increased by using 4.5 M H₂SO₄.

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Cite This Work

@article{ce921bf8-9428-4651-a435-7cef8aa0d6e6,
  title={Nickel recovery from Raney nickel by leaching and precipitation: Towards resource valorisation},
  author={Muhammad Hairul Haizan Azizan and Norhaslinda Nasuha},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Nickel recovery from Raney nickel by leaching and precipitation: Towards resource valorisation
AU  - Muhammad Hairul Haizan Azizan
AU  - Norhaslinda Nasuha
PY  - 2026
LA  - en
ER  -

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