首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Direct synthesis of H_2O_2 from H_2 and O_2 and decomposition/hydrogenation of H_2O_2 in an aqueous acidic medium over halide-modified Pd/Al_2O_3 catalysts
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Direct synthesis of H_2O_2 from H_2 and O_2 and decomposition/hydrogenation of H_2O_2 in an aqueous acidic medium over halide-modified Pd/Al_2O_3 catalysts

机译:由H_2和O_2直接合成H_2O_2以及在酸性介质中卤化物改性的Pd / Al_2O_3催化剂上H_2O_2的分解/氢化

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Direct synthesis of H2O2 from its elements was carried out in an acidic aqueous reaction medium over halide-modified oxidized and reduced Pd/Al2O3 catalysts under very mild conditions (at 27 °C and atmospheric pressure). The halide ions were introduced into the catalyst by incorporating halide ions into supported Pd/γ-Al2O3 catalyst or via depositing halide ions on the support (γ-Al2O3) prior to Pd deposition. The H2O2 decomposition and hydrogenation over the corresponding catalysts were also carried out under the reaction conditions similar to those employed for the H2O2 synthesis in order to elucidate the factors strongly affecting the H2O2 yield/selectivity in the direct H2O2 process. The performance of halide-modified Pd/Al2O3 catalysts in the direct H2O2 synthesis revealed that halide insertion in the catalyst system prior to or after Pd deposition on the support had comparable qualitative effect on the H2O2 formation. Both the Pd oxidation state and the nature of the halide ions had strong influences on the H2 conversion (in direct H2O2 synthesis process) and H2O2 decomposition and/or hydrogenation reaction. While the effect of Pd oxidation state on the H2O2 formation was significant for the catalytic system containing F? and Cl? ions, the influence of the Pd oxidation state was found less important for the catalyst system containing Br? ions; the H2O2 formation selectivity increased significantly due to the presence of Br? ions, irrespective of the Pd oxidation state. The nature of the H2O2 destruction pathway (i.e. hydrogenation and/or decomposition) in the presence of hydrogen over halide-modified Pd/Al2O3 catalysts was found to be strongly dependent upon the nature of the halide ions incorporated in the catalyst during halide-modification of the catalyst.
机译:在酸性水溶液反应介质中,在非常温和的条件下(在27°C和大气压下),在卤化物改性的氧化的和还原的Pd / Al2O3催化剂上,由酸性元素直接合成H2O2。通过将卤离子掺入负载的Pd /γ-Al2O3催化剂中或在Pd沉积之前将卤离子沉积在载体(γ-Al2O3)上,将卤离子引入到催化剂中。为了阐明直接影响H 2 O 2工艺中强烈影响H 2 O 2产率/选择性的因素,还在与H 2 O 2合成所使用的那些相似的反应条件下,在相应的催化剂上进行了H 2 O 2的分解和氢化。卤化物改性的Pd / Al2O3催化剂在直接H2O2合成中的性能表明,在Pd沉积在载体上之前或之后,卤化物在催化剂体系中的插入对H2O2的形成具有类似的定性作用。 Pd的氧化态和卤离子的性质都对H2的转化(在直接的H2O2合成过程中)和H2O2的分解和/或氢化反应有很大的影响。 Pd氧化态对H2O2形成的影响对于含F2的催化体系很重要。和Cl?对于含Br 2的催化剂体系,发现Pd氧化态的影响不太重要。离子由于Br 2的存在,H 2 O 2形成选择性大大提高。离子,与Pd的氧化态无关。发现在卤化物改性的Pd / Al2O3催化剂上存在氢的情况下,H2O2破坏途径(即氢化和/或分解)的性质强烈依赖于卤代甲烷改性过程中掺入催化剂中的卤离子的性质。催化剂。

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