Horvath Attila K
Department of Physical Chemistry, University of Szeged, Szeged, Hungary.
J Phys Chem A. 2008 May 1;112(17):3935-42. doi: 10.1021/jp7114059. Epub 2008 Mar 26.
A revised four-step model based on the reinvestigation of the kinetics of the subsystems is suggested for the description of the dynamics of the iodate-sulfite-thiosulfate reaction. It is shown that the rate equation of the iodate-sulfite reaction contains an undiscovered term that depends on the square of the concentration of the hydrogen ion as an autocatalyst making the reaction "supercatalytic". In contrast to earlier studies but already supposed by a more recent one, the parallel oxidation of thiosulfate by iodate into tetrathionate and sulfite has also been established experimentally as well as the rate coefficients of the parallel pathways. Combining these kinetic studies yields a new model that does not include the cross-catalytic effect of thiosulfate and the inhibitory effect of sulfite supposed hypothetically by RAbai and Beck to describe the dynamics of the combined system. In fact, the supercatalytic effect of the hydrogen ion on the sulfite-iodate reaction and the H+ dependence of the thiosulfate-iodate reaction along with the parallel formation of sulfite and tetrathionate are sufficient for perfect reflection of all the most important characteristics of the pH-time curves of the composite system. Nevertheless, the revised model significantly decreases the number of the kinetic parameters necessary to simulate the experimental results.
基于对各子系统动力学的重新研究,提出了一种改进的四步模型,用于描述碘酸盐 - 亚硫酸盐 - 硫代硫酸盐反应的动力学。结果表明,碘酸盐 - 亚硫酸盐反应的速率方程包含一个未被发现的项,该项取决于氢离子浓度的平方,作为自催化剂使反应具有“超催化”性。与早期研究不同,但已被最近的一项研究所推测,实验还证实了碘酸盐将硫代硫酸盐平行氧化为连四硫酸盐和亚硫酸盐,以及平行反应途径的速率系数。综合这些动力学研究得出了一个新模型,该模型不包括硫代硫酸盐的交叉催化作用和拉拜(Rabai)与贝克(Beck)假设的亚硫酸盐的抑制作用,用于描述组合系统的动力学。实际上,氢离子对亚硫酸盐 - 碘酸盐反应的超催化作用、硫代硫酸盐 - 碘酸盐反应对H⁺的依赖性以及亚硫酸盐和连四硫酸盐的平行生成,足以完美反映复合系统pH - 时间曲线的所有最重要特征。尽管如此,改进后的模型显著减少了模拟实验结果所需的动力学参数数量。