Direct Sulfation Of Nickel Laterite Ores Using Sulfur Dioxide Rich Gases

The Minerals, Metals and Materials Society
D. Papazoglou
Organization:
The Minerals, Metals and Materials Society
Pages:
15
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658 KB
Publication Date:
Jan 1, 2003

Abstract

This work was undertaken to investigate the thermodynamic and kinetic feasibility of using hot sulfur dioxide bearing gases from smelting processes to selectively sulfate the nickel in nickel laterite ores for subsequent extraction in water. The environmental benefits ofthis approach, as opposed to releasing the gas to the atmosphere, and the economic benefit of directly utilizing the S02 rather than converting it to sulfuric acid are strong drivers for such a process. A thermodynamic analysis indicated that selective sulfation of the nickel could be feasible under appropriate conditions and these were explored through a series of laboratory scale experiments. Laterite samples were reacted at temperatures between 500 and 800°C with an equilibrated mixture of sulfur dioxide, oxygen and nitrogen in a fixed bed reactor. Tests were conducted on saprolitic ore from Bulong, Western Australia, limonitic ore from New Caledonia and garnieritic ore from Indonesia. Nickel extractions were highest from the limonite and relatively low from the other ores. The maximum selective extraction of nickel from the limonite in a single stage sulfation was 73%. Sulfation of other elements present in the laterites was also examined. A two-stage process was also identified which involved sulfation using a strong sulfation potential followed by weaker sulfation potential to attempt to convert ferric sulfate formed in the first stage to ferric oxide. This increased the extraction for the limonite ore to around 84% Ni, 95% Co and 2% Fe. Direct sulfation of laterite could be feasible in locations where sulfide smelting or roasting operations are relatively close to laterite deposits.
Citation

APA: D. Papazoglou  (2003)  Direct Sulfation Of Nickel Laterite Ores Using Sulfur Dioxide Rich Gases

MLA: D. Papazoglou Direct Sulfation Of Nickel Laterite Ores Using Sulfur Dioxide Rich Gases. The Minerals, Metals and Materials Society, 2003.

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