Enhanced Nickel Extraction from Ultrabasic Silicate Ores Using Mineral Carbonation Pre-Treatment

Canadian Institute of Mining, Metallurgy and Petroleum
R. M. Santos A. Van Audenaerde Y. W. Chiang R. I. Iacobescu P. Knops T. Van Gerven
Organization:
Canadian Institute of Mining, Metallurgy and Petroleum
Pages:
13
File Size:
2771 KB
Publication Date:
Jan 1, 2014

Abstract

In this work, we explore a novel mineral processing approach using carbon dioxide to promote mineral alterations that lead to improved extractability of nickel from olivine ((Mg,Fe)2SiO4). The precept is that by altering the morphology and the mineralogy of the ore via mineral carbonation, the comminution requirements and the acid consumption during hydrometallurgical processing can be reduced. Furthermore, carbonation pre-treatment can lead to mineral liberation and concentration of metals in physically separable phases. In a first processing step, olivine is fully carbonated at high CO2 partial pressures (35 bar) and optimal temperature (200 °C) with the addition of pH buffering agents. This leads to a powdery product containing high carbonate content. The main products of the carbonation reaction include amorphous colloidal silica, chromium-rich metallic particles, and iron-substituted magnesite ((Mg1- x,Fex)CO3). Carbonated olivine was subsequently leached using an array of inorganic and organic acids to test their leaching efficiency. Compared to leaching from untreated olivine, the percentage of nickel extracted from carbonated olivine by acid leaching was significantly increased. It is anticipated that the mineral carbonation pre-treatment approach may also be applicable to other ultrabasic and lateritic ores.
Citation

APA: R. M. Santos A. Van Audenaerde Y. W. Chiang R. I. Iacobescu P. Knops T. Van Gerven  (2014)  Enhanced Nickel Extraction from Ultrabasic Silicate Ores Using Mineral Carbonation Pre-Treatment

MLA: R. M. Santos A. Van Audenaerde Y. W. Chiang R. I. Iacobescu P. Knops T. Van Gerven Enhanced Nickel Extraction from Ultrabasic Silicate Ores Using Mineral Carbonation Pre-Treatment. Canadian Institute of Mining, Metallurgy and Petroleum, 2014.

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