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Kinetics and mechanism of permanganate oxidation of iota- and lambda-carrageenan polysaccharides as sulfated carbohydrates in acid perchlorate solutions
Authors:Hassan Refat M  Fawzy Ahmed  Ahmed Gamal A  Zaafarany Ishaq A  Asghar Basim H  Takagi Hideo D  Ikeda Yasuhisa
Affiliation:aChemistry Department, Faculty of Science, Assiut University, Assiut 71516, Egypt;bChemistry Department, Faculty of Applied Sciences, Umm Al-Qura University, Makkah Al-Mukarramah 13401, Saudi Arabia;cChemistry Department, Research Center for Materials Science, Nagoya University, Nagoya 464-01, Japan;dResearch Laboratory for Nuclear Reactors, Tokyo Institute of Technology, Tokyo 152-8550, Japan
Abstract:The kinetics of oxidation of iota- and lambda-carrageenan as sulfated carbohydrates by permanganate ion in aqueous perchlorate solutions at a constant ionic strength of 2.0 mol dm−3 have been investigated spectrophotometrically. The pseudo-first-order plots were found to be of inverted S-shape throughout the entire courses of reactions. The initial rates were found to be relatively slow in the early stages, followed by an increase in the oxidation rates over longer time periods. The experimental observations showed first-order dependences in permanganate and fractional first-order kinetics with respect to both carrageenans concentration for both the induction and autoacceleration periods. The results obtained at various hydrogen ion concentrations showed that the oxidation processes in these redox systems are acid-catalyzed throughout the two stages of oxidation reactions. The added salts lead to the prediction that MnIII is the reactive species throughout the autoacceleration periods. Kinetic evidence for the formation of 1:1 intermediate complexes was revealed. The kinetic parameters have been evaluated and tentative reaction mechanisms in good agreement with the kinetic results are discussed.
Keywords:Carbohydrates   Carrageenans   Polysaccharides   Permanganate   Oxidation   Kinetics
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