Iron(II) oxidation by SO2/O-2 in acidic media: Part I. Kinetics and mechanism

Citation
Ws. Zhang et al., Iron(II) oxidation by SO2/O-2 in acidic media: Part I. Kinetics and mechanism, HYDROMETALL, 55(3), 2000, pp. 229-245
Citations number
24
Categorie Soggetti
Metallurgy
Journal title
HYDROMETALLURGY
ISSN journal
0304386X → ACNP
Volume
55
Issue
3
Year of publication
2000
Pages
229 - 245
Database
ISI
SICI code
0304-386X(200004)55:3<229:IOBSIA>2.0.ZU;2-M
Abstract
The kinetics of iron(II) oxidation by SO2/O-2 has been studied at 80 degree s C as a means of generating Fe(III) and H2SO4 for subsequent leaching reac tions. It is shown that both Fe(III) and S(IV) species are involved in the initial step of the oxidation. The rate of Fe(II) oxidation can be expresse d by the following equation: r = k(obs)[Fe(III)][S(IV)]/f(obs)([H+]) for 0- 0.02 M Fe(III) at the optimum SO2/O-2 ratio, where f(obs)([H+]) is a functi on of pH. At 80 degrees C, the optimum gas composition of SO2 is around 2% SO2 and both Fe(II) and SO2 were oxidised with the Fe(III)/H2SO4 ratio of a bout 2. At a SO2/O-2 ratio above 9% SO2 and pH 1, dithionate was detected, and the proportion of dithionate to sulphate increased with higher SO2/O-2 ratio. A radical chain reaction mechanism is proposed, involving a slow rat e of formation of the ferric sulphite complex FeSO3+ and decomposition to p roduce the sulphite radical SO3.-. This is followed by a fast reaction with O-2 to form the peroxo-monosulphate radical SO5.-, which is responsible fo r the autoxidation of Fe(II). The form of the derived rate expression and t he predicted ratio of Fe(III)/H2SO4 from the proposed mechanism essentially agree with the experimental results. (C) 2000 Elsevier Science B.V. All ri ghts reserved.