A Single-Step Hydrolysis-Reduction of Potato Starch to Sorbite in the Presence of Bifunctional Catalyst Ru/Сs3HSiW12O40

N. Gromov, T. Medvedeva, V. N. Panchenko, O. Taran, M. Timofeeva, V. Parmon
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Abstract

It was shown that sorbite can be obtained from potato starch by its single-step hydrolysis-reduction in the presence of bifunctional catalysts 0.3–3 wt.%Ru/Cs3HSiW12O40 (Ru/Cs-HPA). Most efficient was the catalyst containing 1 wt.%Ru; this is related to the optimal concentration ratio of Broensted and Lewis acid sites on the support surface and a high specific surface area. The reaction kinetics in the presence of 1%Ru/Сs-HPA was studied and the apparent activation energy of the starch hydrolysis-reduction to sorbite (80±8 kJ/mol) was determined. The experimental and literature data were used to propose a kinetic model of the process, which describes quite adequately the hydrolysisreduction of starch. In the presence of the catalyst with the optimal composition (1%Ru/Cs-HPA) at the optimal temperature (150 °С), the yield of sorbite achieved 88 mol.% (99 wt.%) for 3 hours of the reaction.
双功能催化剂Ru/Сs3HSiW12O40下马铃薯淀粉一步水解还原制索氏体
结果表明,在0.3-3 wt.%Ru/Cs3HSiW12O40 (Ru/Cs-HPA)双功能催化剂的作用下,马铃薯淀粉可经一步水解还原制得索氏体。Ru含量为1 wt.%的催化剂效率最高;这与载体表面的最佳浓度比和较高的比表面积有关。研究了1%Ru/Сs-HPA存在下的反应动力学,测定了淀粉水解还原成索氏体的表观活化能(80±8 kJ/mol)。利用实验数据和文献资料,提出了淀粉水解还原过程的动力学模型,该模型较好地描述了淀粉水解还原过程。在最佳温度(150°С)下,在最佳组成(1%Ru/Cs-HPA)的催化剂存在下,反应3小时,索氏体的产率达到88 mol.% (99 wt.%)。
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