Selective precipitation of metals from synthetic spent refinery catalyst leach liquor with biogenic H2S produced in a lactate-fed anaerobic baffled reactor

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Elsevier

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info:eu-repo/semantics/closedAccess

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This work evaluated the feasibility of using biogenic H2S and NaOH to selectively precipitate molybdenum (Mo), nickel (Ni), cobalt (Co) and vanadium (V) from synthetic spent refinery catalyst leach liquor. A lactate-fed sulfate-reducing anaerobic baffled reactor (ABR) was operated at room temperature to generate the required H2S. The average sulfate reduction rate in the ABR was 130 mg L-1 d(-1) and the average dissolved sulfide concentration was 190 mg L-1. Biogenic H2S facilitated the selective precipitation of Mo at pH 2 with recoveries of 36-72%. Vanadium precipitation of 64-70% was achieved with NaOH at pH 6. The purity indices of Mo and V precipitates were 0.97 and 0.90 at pH 2 and pH 6, respectively. Percent Ni and Co precipitations were only up to 23 and 16%, respectively at pH 3.5, and the purity indices of these metals were low due to their simultaneous precipitation. After the optimization of the Ni and Co precipitations, the mixed Ni-Co sulfide solids could be sold to smelters or hydrometallurgical processing to recover the metals. Moreover, using biogenic H2S to selectively precipitate Moat pH 2 as sulfide and NaOH to precipitate V at pH 6 as hydroxide/oxide could be a viable option for recovering these metals from spent catalysts leachate. (C) 2013 Elsevier B.V. All rights reserved.

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Anahtar Kelimeler

Anaerobic baffled reactor, Metal recovery, Spent refinery catalysts, Sulfide precipitation, Sulfate reducing bacteria

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Hydrometallurgy

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139

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Onay

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