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NO reduction utilizing complex oxide catalysts

机译:使用复合氧化物催化剂没有减少

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摘要

Precious metal doped BaCeO _(3) compounds were synthesized by a solid state method. Physical characterization indicates the low surface area material shares the same perovskite base structure with precious metal species existing as non-metallic, stable cations embedded in the oxide matrix. Catalytic performance of these Pd, Ir, and Rh-doped compounds show that the stabilized precious metal cations have an intrinsic activity ten times higher than typical metallic precious metal sites for the reduction of nitric oxide to dinitrogen under model automotive exhaust gas conditions, likely related to a higher selectivity for the reduction of NO by CO instead of hydrocarbons. Furthermore, the valency of the precious metal dopant can be tuned to extend the activity of the catalyst in excess oxygen conditions.
机译:贵金属掺杂的Baceo _(3)化合物通过固态方法合成。物理表征表明低表面积材料与嵌入在氧化物基质中的非金属,稳定阳离子存在的贵金属物种相同的钙钛矿基结构。这些Pd,IR和Rh掺杂的化合物的催化性能表明,稳定的贵金属阳离子具有比典型的金属贵金属位点高10倍,用于在模型汽车废气条件下减少一氧化氮,可能有关对于减少CO而不是碳氢化合物的较高选择性。此外,可以调节贵金属掺杂剂的化合值以延长催化剂在过量氧气条件下的活性。

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