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Effect of Hydrothermal Aging on Physical and Chemical Properties of a Commercial NO_x-Storage Catalyst

机译:水热老化对市售NO_x储存催化剂的理化性质的影响

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Fuel consumption for NO_x trap regeneration depends on the regeneration frequency, which is a function of NO_x trap performance parameters. Hence, the impact of thermal aging must be considered in the operation strategy. For this purpose, the effect of thermal aging on the physical and chemical properties of a commercial NO_x storage/ reduction catalyst containing Pt/Pd/Rh has been investigated. After thermal treatment under various conditions, the samples were characterized using CO chemisorption measurements, X-ray diffraction (XRD), N2 physisorption, and electron microscopy. It is shown that the major impact of lean hydrothermal treatment on the catalyst activity is the continuous decrease of the specific surface area with aging temperature due to collapse of smaller pores. The noble metal nanoparticles remained highly dispersed, even after lean aging at 800 °C. In contrast, noble metal sintering represents the main aging effect of lean/rich cycling at elevated temperatures. Furthermore, XRD and selected area electron diffraction revealed a significant loss of crystallinity for the barium component in consequence of lean/rich aging treatment. However, independent from the aging treatment, no formation of mixed oxides could be observed.
机译:NO_x捕集阱再生的燃料消耗取决于再生频率,再生频率是NO_x捕集阱性能参数的函数。因此,在操作策略中必须考虑热老化的影响。为此,已经研究了热老化对包含Pt / Pd / Rh的市售NO_x存储/还原催化剂的物理和化学性质的影响。在各种条件下进行热处理后,使用CO化学吸附测量,X射线衍射(XRD),N2物理吸附和电子显微镜对样品进行表征。结果表明,贫水热处理对催化剂活性的主要影响是由于小孔的坍塌,比表面积随老化温度的持续降低。贵金属纳米颗粒即使在800°C时效后仍保持高度分散。相比之下,贵金属烧结是贫/富循环在高温下的主要时效作用。此外,XRD和选定区域的电子衍射表明,由于贫/富时效处理,钡成分的结晶度明显降低。但是,与时效处理无关,未观察到混合氧化物的形成。

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