D. Barrie Johnson, Agnieszka Dybowska
Experiments were carried out to test the amenabilities of mineral deposits that contained cobalt deported in arseno-sulfide (cobaltite) and arsenide (skutterudite) minerals, to oxidative bioleaching at mesophilic temperatures and low pH. An ore sample from the Iron Mask deposit (Canada) and a mineral concentrate from a working mine (Bou Azzer, Morocco) were thoroughly characterised, both prior to and following bio-processing. A “top down” approach, using microbial consortia including (initially) 13 species of mineral-degrading acidophiles was used to bioleach the ore and concentrate in shakeflasks and bioreactors. Cobalt was successfully liberated from both materials tested (up to 93% from the ore, and 49% from the concentrate), though the chemistries of the leach liquors were very different, with redox potentials being > 200 mV lower, and concentrations of soluble arsenic about 7-fold greater, with the concentrate. Addition of pyrite to the arsenide concentrate was found to promote the biomineralisation of scorodite (ferric arsenate), which was detected by both XRD and SEM-EDX, but was not found in bioleached residues of the arseno-sulfide ore. This work provided proof of concept that cobalt arseno-sulfide and arsenide ores and concentrates are amenable to bio-processing, and also that it is possible to induce concurrent solubilisation of arsenic from primary minerals and immobilisation of cobalt.
@article{ad5a8f18-3eed-483d-bfbf-01d0a1c2596e,
title={Bioleaching of arsenic rich cobalt mineral resources and eviden 2020 Hydrom},
author={D. Barrie Johnson and Agnieszka Dybowska},
year={2026},
language={en}
}TY - JOUR TI - Bioleaching of arsenic rich cobalt mineral resources and eviden 2020 Hydrom AU - D. Barrie Johnson AU - Agnieszka Dybowska PY - 2026 LA - en ER -
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