Elemental zinc and copper-zinc alloys capped with a mixed-oxide layer of cuprite and zincite were exposed to SO2 vapour in a humid oxygen-free atmosphere. Elemental sulphur, zinc sulphite and some zinc hydroxide are the only products which are obtained in the anoxic sulphitation of metal zinc. The pseudo-binary system Cu2SO3Cu(1-x)ZnxSO3dot operator2H2O is the result of the experiments on both thermally oxidised and naturally weathered α-brasses. The outcome of competition between the high-copper and the high-zinc species strongly depends on the mass action law: the greater the ZnO to Cu2O phases ratio, the higher the substitution rate of Cu(II) for Zn(II). © 2014 Elsevier Ltd.
An investigation into the surface layers formed on elemental zinc and oxidised α-copper-zinc alloys exposed to SO2 in humid air under hypoxic conditions / Giovannelli, G.; Natali, S.; Zortea, L.; Volpe, V.. - In: CORROSION SCIENCE. - ISSN 0010-938X. - 88:(2014), pp. 466-472. [10.1016/j.corsci.2014.08.003]
An investigation into the surface layers formed on elemental zinc and oxidised α-copper-zinc alloys exposed to SO2 in humid air under hypoxic conditions
Natali, S.;Zortea, L.;
2014
Abstract
Elemental zinc and copper-zinc alloys capped with a mixed-oxide layer of cuprite and zincite were exposed to SO2 vapour in a humid oxygen-free atmosphere. Elemental sulphur, zinc sulphite and some zinc hydroxide are the only products which are obtained in the anoxic sulphitation of metal zinc. The pseudo-binary system Cu2SO3Cu(1-x)ZnxSO3dot operator2H2O is the result of the experiments on both thermally oxidised and naturally weathered α-brasses. The outcome of competition between the high-copper and the high-zinc species strongly depends on the mass action law: the greater the ZnO to Cu2O phases ratio, the higher the substitution rate of Cu(II) for Zn(II). © 2014 Elsevier Ltd.File | Dimensione | Formato | |
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