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Carbon-Supported Silver Catalysts for CO Selective Oxidation in Excess Hydrogen

机译:碳负载的过量氢气中CO选择性氧化的银催化剂

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Carbon materials were used as supports for Ag catalysts that are prepared using the conventional wet impregnation method, and their catalytic properties for CO selective oxidation in excess hydrogen at temperatures below 483 K were tested. A variety of techniques, e.g. N_2 adsorption, XPS, TPD, UV-Vis DRS, TEM and SEM, were used to determine the influence of physical and chemical properties of the carbon on the properties of Ag catalyst. It was found that defects on the carbon surface served as nucleation sites for silver ions, while functional groups on carbon surface induced their reduction to the metallic form. The formation of silver particles on carbon was governed by homogeneous and/or heterogeneous nucleation during the impregnation and subsequent activation processes. The best catalytic performance was obtained with a Ag/carbon black catalyst with a uniform size distribution of silver nanoparticles (about 12 nm), moderate BET surface area (with a mesoporous structure), and a limited amount of carbon-oxygen groups. The research indicates that carbon materials are potentially good supports for silver catalysts for preferential oxidation of CO in excess hydrogen.
机译:将碳材料用作使用常规湿法浸渍法制备的Ag催化剂的载体,并测试了它们在483 K以下温度下在过量氢气中对CO选择性氧化的催化性能。多种技术,例如用N_2吸附,XPS,TPD,UV-Vis DRS,TEM和SEM确定了碳的物理和化学性质对Ag催化剂性能的影响。发现碳表面上的缺陷充当银离子的成核位点,而碳表面上的官能团诱导其还原成金属形式。在浸渍和随后的活化过程中,碳上银颗粒的形成受均相和/或异相成核的支配。用具有均匀尺寸分布的银纳米颗粒(约12 nm),中等BET表面积(具有中孔结构)和有限数量的碳氧基团的Ag /炭黑催化剂可获得最佳的催化性能。研究表明,碳材料可能是银催化剂的良好载体,可以使过量氢气中的CO优先氧化。

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