The paper refers to disproportionation of HIO and NaIO in aqueous media, in static and dynamic systems. The results of calculations, realized according to GATES/GEB principles, with use of an iterative computer program, are presented graphically. An example of the computer program with all physicochemical knowledge involved in the related algorithm is attached herewith.
KeywordsDisproportionationGeneralized Approach to Electrolytic SystemsGeneralized Electron BalanceHIONaIO
Michalowska-Kaczmarczyk, A.M. and Michalowski, T. (2014) Compact Formulation of Redox Systems According to GATES/GEB Principles. Journal of Analytical Sciences, Methods and Instrumentation, 4, 39-45.
Michalowski, T., Toporek, M., Michalowska-Kaczmarczyk, A.M. and Asuero, A.G. (2013) New Trends in Studies on Electrolytic Redox Systems. Electrochimica Acta, 109, 519-531. http://dx.doi.org/10.1016/j.electacta.2013.07.125
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Michalowska-Kaczmarczyk, A.M., Asuero, A.G., Michalowski, T. and Toporek, M. “Why Not Stoichiometry” versus “Stoichiometry—Why Not?” Part I. General Context. Critical Reviews in Analytical Chemistry. (In Print)
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Michalowska-Kaczmarczyk, A.M. and Michalowski, T. (2014) Generalized Electron Balance for Dynamic Redox Systems in Mixed-Solvent Media. Journal of Analytical Sciences, Methods and Instrumentation. (In Print)
Michalowski, T., Kupiec, K. and Rymanowski, M. (2008) Numerical Analysis of the Gran Methods: A Comparative Study. Analytica Chimica Acta, 606, 172-183. http://dx.doi.org/10.1016/j.aca.2007.11.020
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