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Carbon-supported palladium catalysts for the direct synthesis of hydrogen peroxide from hydrogen and oxygen

机译:碳载钯催化剂,用于由氢和氧直接合成过氧化氢

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摘要

Twelve kinds of carbon materials were studied as supports of palladium catalysts for the direct synthesis of hydrogen peroxide. The correlation between the catalytic performance and the structure and physicochemical properties of carbon materials suggested the important roles of the graphitic structure and the surface function groups in the selective formation of H_2O_2. The carbon material with a higher degree of graphitic structure and a lower density of surface COOH groups provided higher H_2O_2 selectivity and productivity. The chemical state and the mean size of Pd particles also affected the catalytic behavior. Metallic Pd was more efficient than PdO, and the catalyst with a smaller mean size of Pd nanoparticles exhibited higher activity and H_2O_2 selectivity. The presence of a mineral acid rather than a halide promoter and an organic solvent contributed to the selective formation of H_2O_2.
机译:研究了十二种碳材料作为直接合成过氧化氢的钯催化剂的载体。碳材料的催化性能与结构和理化性质之间的相关性表明,石墨结构和表面官能团在H_2O_2选择性形成中的重要作用。具有较高石墨结构度和较低表面COOH基团密度的碳材料可提供较高的H_2O_2选择性和生产率。 Pd颗粒的化学状态和平均尺寸也影响了催化行为。金属Pd比PdO更有效,Pd纳米粒子平均尺寸较小的催化剂表现出较高的活性和H_2O_2选择性。无机酸而不是卤化物助催化剂和有机溶剂的存在有助于H_2O_2的选择性形成。

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