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Selective oxidation of 1- and 2-propanol with molecular oxygen by noble metal catalysis in 'supercritical' carbon dioxide

机译:在“超临界”二氧化碳中通过贵金属催化用分子氧选择性氧化1-丙醇和2-丙醇

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摘要

The selective oxidation of 1- and 2-propanol by molecular oxygen over supported platinum catalysts was investigated in "supercritical" carbon dioxide as an environmentally benign and safe reaction medium. The reaction occurs exclusively to acetone or propionic aldehyde and propionic acid in single-phase region at 100-190 bar and at a mild temperature (40 deg C). Compared to conversions in aqueous solution, catalyst stability is significantly enhanced in "supercritical" carbon dioxide and depends on the oxygen concentration in the reaction medium. Thus, at least a fourfold higher substrate/catalyst ratio than with water as a solvent can be used. Platinum catalysts with nanoporous silica (MCM-41, silicalite-1) as a support are also active for the oxidation of 2-propanol in "supercritical" carbon dioxide.
机译:在“超临界”二氧化碳(一种对环境无害且安全的反应介质)中,研究了负载型铂催化剂上分子氧对1-和2-丙醇的选择性氧化。该反应仅在100-190 bar的温和温度(40℃)下在单相区域发生,仅与丙酮或丙醛和丙酸反应。与水溶液中的转化相比,在“超临界”二氧化碳中催化剂的稳定性显着提高,并且取决于反应介质中的氧浓度。因此,可以使用比以水为溶剂至少高四倍的底物/催化剂比。以纳米孔二氧化硅(MCM-41,silicalite-1)为载体的铂催化剂还具有在“超临界”二氧化碳中氧化2-丙醇的活性。

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