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Direct synthesis of hydrogen peroxide using Au-Pd-exchanged and supported heteropolyacid catalysts at ambient temperature using water as solvent

机译:在环境温度下以水为溶剂,使用Au-Pd交换并负载的杂多酸催化剂直接合成过氧化氢

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摘要

The direct synthesis of hydrogen peroxide from molecular H2 and O2 represents a green and economic alternative to the current anthraquinone process used for the industrial production of H2O2. In order for the direct process to compete with the anthraquinone process, there is a need for enhanced H2O2 yields and H2 selectivity in the process. We show that Au-Pd-exchanged and supported Cs-containing heteropolyacid catalysts with the Keggin structure are considerably more effective in achieving high H2O2 yields in the absence of acid or halide additives than previously reported catalysts. The Au-Pd-exchanged Cs-heteropolyacid catalysts also show superior H2O2 synthesis activity under challenging conditions (ambient temperature, water-only solvent and CO2-free reaction gas). Au plays a crucial role in achieving the improved performance of these heteropolyacid-based catalysts. The heteropolyacid limits the subsequential hydrogenation/decomposition of H2O2.
机译:由分子H2和O2直接合成过氧化氢代表了目前用于工业生产H2O2的蒽醌工艺的绿色经济替代方案。为了使直接方法与蒽醌方法竞争,需要提高该方法中的H 2 O 2产率和H 2选择性。我们表明,具有Keggin结构的Au-Pd交换和负载的含Cs杂多酸催化剂比以前报道的催化剂在不存在酸或卤化物添加剂的情况下,在实现高H2O2收率方面更为有效。在挑战性条件下(环境温度,纯水溶剂和无CO2的反应气体),Au-Pd交换的Cs-杂多酸催化剂也显示出优异的H2O2合成活性。金在实现这些杂多酸基催化剂的改进性能中起关键作用。杂多酸限制了H 2 O 2的随后氢化/分解。

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