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Comparison of precious metal doped and impregnated perovskite oxides for TWC application

机译:用于TWC的贵金属掺杂和浸渍钙钛矿氧化物的比较

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摘要

Four high-surface-area (50-60 m(2)/g) perovskite-based powder catalysts, Pd-doped LaFeO3, Pdimpregnated LaFeO3, Rh-doped CaTiO3, and Rh-impregnated CaTiO3, were characterized by scanning transmission electron microscopy and CO oxidation measurements in fresh and redox-aged (14h at 800 degrees C) states. Both intrinsic catalytic activity and stability were significantly higher in Pd-doped LaFeO3 than in Rh-doped CaTiO3 under lean to stoichiometric reaction conditions. Activities of doped were initially lower than impregnated versions, though aging led to convergence in the catalytic performance for both systems. A mixture of metallic and cationic forms of Pd appear to contribute to activity in the Pd catalysts, whereas metallic Rh particles, which can easily segregate onto the surface of CaTiO3 in Rh-doped CaTiO3 upon aging, are the likely source of catalytic activity in the Rh catalysts. (C) 2014 Elsevier B.V. All rights reserved.
机译:四种高表面积(50-60 m(2)/ g)钙钛矿基粉末催化剂,Pd掺杂LaFeO3,Pd浸渍LaFeO3,Rh掺杂CaTiO3和Rh浸渍CaTiO3的特征在于扫描透射电子显微镜和在新鲜和氧化还原状态(在800摄氏度下14h)下进行CO氧化测量。在稀到化学计量的反应条件下,Pd掺杂的LaFeO3的固有催化活性和稳定性均显着高于Rh掺杂的CaTiO3。掺杂的活性最初低于浸渍的活性,尽管老化导致两个系统的催化性能趋于一致。金属和阳离子形式的Pd的混合物似乎有助于Pd催化剂中的活性,而金属Rh颗粒可能会随老化而容易地偏析在掺Rh的CaTiO3中的CaTiO3表面上,这可能是Pd催化剂中催化活性的来源。 Rh催化剂。 (C)2014 Elsevier B.V.保留所有权利。

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