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OXYGEN STORAGE CAPACITY AND THERMAL STABILITY OF SYNERGIZED PGM CATALYST SYSTEMS

机译:增效PGM催化剂体系的储氧能力和热稳定性

摘要

Synergized PGM (SPGM) catalyst systems including ZPGM material compositions and formulations are disclosed. Variations of catalyst systems are tested to determine the synergistic effect of adding ZPGM material to PGM catalysts. The synergistic effect is determined under isothermal oscillating condition from which enhanced OSC property indicates enhanced catalytic behavior of disclosed SPGM catalyst systems as compared with commercial PGM catalysts with OSM for TWC applications. Disclosed SPGM catalyst systems is free of rare earth metals and especially Ce and may have an optimal OSC property and optimal thermal stability that increases with the temperature, showing acceptable level of O2 storage even at low temperatures.
机译:公开了包括ZPGM材料组成和配方的增效PGM(SPGM)催化剂体系。测试了催化剂体系的变化,以确定将ZPGM材料添加到PGM催化剂中的协同作用。协同效应是在等温振荡条件下确定的,从该条件下,与用于TWC应用的具有OSM的商用PGM催化剂相比,增强的OSC性能表明所公开的SPGM催化剂体系的催化行为增强。公开的SPGM催化剂体系不含稀土金属,特别是Ce,并且具有最佳的OSC性能和最佳的热稳定性,其随温度升高而增加,即使在低温下也显示出可接受的O 2储存水平。

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