Kinetics and Mechanism of Oxidation of Bromate by Diperiodatonickelate(IV) in Aqueous Alkaline Medium--A Simple Method for Formation of Perbromate

D. Bilehal, Raviraj M. Kulkarni, S. Nandibewoor
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引用次数: 11

Abstract

The kinetics of oxidation of bromate by diperiodatonickelate(IV) (DPN) in alkaline medium at a constant ionic strength has been studied spectrophotometrically. The reaction between DPN and bromate in alkaline medium exhibits 1:1 stoichiometry (DPN:bromate). The reaction shows first order dependence on [DPN] and zero order dependence in [bromate] and less than unit order dependence in alkali concentrations. Periodate has a retarding effect on the rate of reaction. Reaction rate increases with increase in ionic strength and decrease in solvent polarity of the medium. Initial addition of reaction products did not affect the rate significantly. A mechanism involving the monoperiodatonickelate(IV) (MPN) as the reactive species of the oxidant has been proposed. The reaction constants involved in the mechanism are evaluated. The activation parameters were computed with respect to the slow step of the mechanism.
高溴酸盐在碱性水介质中氧化溴酸盐的动力学及机理——一种生成高溴酸盐的简便方法
采用分光光度法研究了恒定离子强度下双碘酸盐在碱性介质中氧化溴酸盐的动力学。DPN与溴酸盐在碱性介质中的反应呈1:1的化学计量(DPN:溴酸盐)。该反应对[DPN]有一级依赖性,对[溴酸盐]有零级依赖性,对碱浓度的依赖性小于单位级。高碘酸盐对反应速率有延缓作用。反应速率随离子强度的增大和介质溶剂极性的减小而增大。初始加入的反应产物对反应速率没有显著影响。提出了一种以单碘酸盐(IV) (MPN)为氧化剂的反应机制。计算了反应机理中涉及的反应常数。根据机构的慢步,计算了活化参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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