Influence of Iron on the Complexation and Oxidation of Quebracho: An Investigation on the Stability of Sulfur Dispersing Agent

Canadian Institute of Mining, Metallurgy and Petroleum
L. Tong
Organization:
Canadian Institute of Mining, Metallurgy and Petroleum
Pages:
15
File Size:
877 KB
Publication Date:
Jan 1, 2012

Abstract

"The oxidation of Quebracho was evaluated by acid-butanol assay, which indicates depolymerization of Quebracho. Anthocyanidin, an oxidation product of Quebracho, is stable at 95?C for up to 2 h. The ionization, complexation, and oxidation properties of Quebracho were discussed. Complexation of metal-Quebracho occurs at ambient temperature. The formation of complex precipitates is influenced by the acidity of the solution. Temperature is another important parameter that influences the oxidation and the complexation of Quebracho. Quebracho-ferric complex precipitate forms at 90?C, 0.1 mol/L H2SO4. The formation of Quebracho-metal complex in the leach solution is a possible reason for the consumption of Quebracho. Quebracho molecules adsorption on the mineral surface is reduced by consumption of Quebracho, resulting in poor sulfur dispersing effect in the leaching process. INTRODUCTIONQuebracho is used as a sulfur dispersing agent (SDA) in the pressure leaching of zinc concentrate as stated in U.S. Patent No. 3,867,268 (1975). It prevents the zinc sulfide particles from being coated with molten sulfur, thus preventing the inhibition of the zinc leaching reaction. Recently, the sulfur dispersing effect of Quebracho was investigated in the oxygen pressure leaching of nickel concentrate. The oxygen pressure leaching of pentlandite can be represented by reactions 1-3."
Citation

APA: L. Tong  (2012)  Influence of Iron on the Complexation and Oxidation of Quebracho: An Investigation on the Stability of Sulfur Dispersing Agent

MLA: L. Tong Influence of Iron on the Complexation and Oxidation of Quebracho: An Investigation on the Stability of Sulfur Dispersing Agent. Canadian Institute of Mining, Metallurgy and Petroleum, 2012.

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