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Processing of Arsenopyritic Gold Concent

Alex Hol, Renata D. van der Weijden

2026engold recoverybio-oxidationbioreductionenvironmental technologysulfide minerals

Abstract

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Gold is commonly liberated from sulfide minerals by chemical and biological oxidation. Although these technologies are successful, they are costly and produce acidic waste streams. Removal of mineral-sulfur to overcome the mineralogical barrier could also be done by bioreduction, producing hydrogen sulfide (H2S). To make the sulfur within these minerals available for bioreduction, the use of partial bio-oxidation as a pretreatment to oxidize the sulfides to elemental sulfur was investigated in gas lift loop reactor experiments. Experiments at 35 °C using a refractory concentrate showed that at pH 2 arsenopyrite is preferentially partially oxidized over pyrite and that elemental sulfur can be subsequently converted into H2S at pH 5 via bioreducing using H2 gas. A single partial bio-oxidation/bioreduction treatment increased the gold recovery of the concentrate from 6% to 39%. As elemental sulfur seems to inhibit further oxidation by covering the mineral surface, several treatments may be required to reach a gold recovery >90%. Depending on the number of treatments this method could be an interesting alternative to bio-oxidation.

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Cite This Work

@article{d85e1701-357e-4fdd-baff-c58736b813f3,
  title={Processing of Arsenopyritic Gold Concent},
  author={Alex Hol and Renata D. van der Weijden},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Processing of Arsenopyritic Gold Concent
AU  - Alex Hol
AU  - Renata D. van der Weijden
PY  - 2026
LA  - en
ER  -

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