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Methods and Processes of Coating Zero-PGM Catalysts including with Cu, Mn, Fe for TWC Applications
Methods and Processes of Coating Zero-PGM Catalysts including with Cu, Mn, Fe for TWC Applications
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机译:用于TWC的含Cu,Mn,Fe的零PGM催化剂的涂覆方法和工艺
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摘要
Variations of coating processes of Cu—Mn—Fe ZPGM catalyst materials for TWC applications are disclosed. The disclosed coating processes for Cu—Mn—Fe spinel materials are enabled in the preparation ZPGM catalyst samples according to a plurality of catalyst configurations, which may include an alumina only washcoat layer coated on a suitable ceramic substrate, and an overcoat layer with or without an impregnation layer, including Cu—Mn—Fe spinel and doped Zirconia support oxide, prepared according to variations of disclosed coating processes. Activity measurements are considered under variety of lean condition to rich condition to analyze the influence of disclosed coating processes on TWC performance of ZPGM catalysts for a plurality of TWC applications. Different coating processes may substantially increase thermal stability and TWC activity, providing improved levels of NOx conversion that may lead to cost effective manufacturing solutions for ZPGM-TWC systems.
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机译:公开了用于TWC应用的Cu-Mn-Fe ZPGM催化剂材料的涂覆工艺的变化。根据多种催化剂构造,在制备ZPGM催化剂样品中能够进行所公开的用于Cu-Mn-Fe尖晶石材料的涂覆工艺,所述ZPGM催化剂样品可以包括涂覆在合适的陶瓷基底上的仅氧化铝的修补基面涂层以及具有或不具有的外涂层。根据所公开的涂覆工艺的变化制备的浸渍层,包括Cu-Mn-Fe尖晶石和掺杂的氧化锆载体氧化物。在各种贫油条件到富油条件下都考虑了活性测量,以分析所公开的涂覆工艺对多种TWC应用中ZPGM催化剂的TWC性能的影响。不同的涂层工艺可以大大提高热稳定性和TWC活性,从而提高NO x Sub>转化率,这可能会为ZPGM-TWC系统带来具有成本效益的制造解决方案。
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