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Direct formation of H2O2 from H2 and O2 and decomposition/hydrogenation of H2O2 in aqueous acidic reaction medium over halide-containing Pd/SiO2 catalytic system

机译:在含卤化物的Pd / SiO2催化体系上,由H2和O2直接形成H2O2,并在酸性反应介质中将H2O2分解/氢化

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Formation of H2O2 from H2 and O2 and decomposition/hydrogenation of H2O2 have been studied in aqueous acidic medium over Pd/SiO2 catalyst in presence of different halide ions (viz.F~-,C1~-and Br~-).The halide ions were introduced in the catalytic system via incorporating them in the catalyst or by adding into the reaction medium.The nature of the halide ions present in the catalytic system showed profound influence on the H2O2 formation selectivity in the H2 to H2O2 oxidation over the catalyst.The H2O2 destruction via catalytic decomposition and by hydrogenation (in presence of hydrogen) was also found to be strongly dependent upon the nature of the halide ions present in the catalytic system.Among the different halides,Br~-was found to selectivity promote the conversion of H2 to H2O2 by significantly reducing the H2O2 decomposition and hydrogenation over the catalyst.The other halides,on the other hand,showed a negative influence on the H2O2 formation by promoting the H2 combustion to water and/or by increasing the rate of decomposition/hydrogenation of H2O2 over the catalyst.An optimum concentration of Br ions in the reaction medium or in the catalyst was found to be crucial for obtaining the higher H2O2 yield in the direct synthesis.
机译:研究了在酸性介质中,在Pd / SiO2催化剂上,在不同卤离子(F〜-,C1〜-和Br〜-)存在下,由H2和O2形成H2O2以及H2O2的分解/氢化反应。通过将它们引入催化剂或通过添加到反应介质中而将其引入到催化体系中。催化体系中存在的卤离子的性质对催化剂上H2对H2O2氧化中H2O2形成选择性的影响很大。还发现通过催化分解和加氢(存在氢)破坏H2O2很大程度上取决于催化体系中存在的卤离子的性质。在不同的卤化物中,发现Br〜-选择性促进了H2O2的转化。通过显着减少催化剂上的H2O2分解和氢化反应,将H2转化为H2O2。另一方面,另一种卤化物通过促进H2燃烧,从而对H2O2的形成产生负面影响。水和/或通过增加催化剂上H2O2的分解/氢化速率来提高反应速率或反应介质中的Br离子浓度。对于直接合成中获得更高的H2O2产率至关重要。

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