Kinetic investigation into the copper(II)-catalysed peroxosulfate oxidation of Calmagite dye in alkaline media

被引:20
作者
Oakes, J
Welch, G
Gratton, P
机构
[1] Unilever Research Port Sunlight Laboratory, Wirral, Merseyside
来源
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS | 1997年 / 20期
关键词
D O I
10.1039/a700481h
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Addition of Cu-II catalysed the peroxosulfate (KHSO5) oxidation of Calmagite dye (D) in alkaline media and it was observed that the dye decomposition profiles exhibit extremely complex kinetic behaviour, with typical induction periods associated with rapid autocatalysis. A comprehensive kinetic model has been derived which not only can predict changes in speciation of reactants with time, but can also satisfactorily explain all the kinetic profiles Much higher catalyst concentrations are required for copper(II) catalysis than for manganese(II) catalysis ([KHSO5] much greater than [Cu-II] > [D] as opposed to [KHSO5] much greater than [D] much greater than [Mn-II]), i.e. there needs to be excess Cu-II over D. This arises for two main reasons; first, binding of Cu-II to the dye inhibits its reaction with peroxosulfate, protecting the dye against oxidation, and seccondly the active catalyst is a heterogeneous copper hydroxide species which arises when there is an excess of Cu-II in alkaline media. The unusual decomposition profiles are attributed to release of Cu-II into alkaline media via direct oxidation of the [CuD] complex by peroxosulfate. This oxidation is relatively slow, but when sufficient Cu-II is released 'true' autocatalysis is exhibited. The best simulated fits were obtained when. the catalytic step was assumed to be first order in [SO52-] (i.e. peracid primarily acting as a nucleophile) and zero the colloidal hydroxide.
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页码:3811 / 3817
页数:7
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