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Strong dispersion effect of cobalt spinel active phase spread over ceria for catalytic N2O decomposition: The role of the interface periphery

机译:钴尖晶石活性相分散在二氧化铈上对N2O催化分解的强分散作用:界面外围的作用

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摘要

A series of Co3O4/CeO2 catalysts with increasing cobalt spinel loading in the range of 1–20 wt.% was prepared by incipient wetness impregnation of CeO2. The obtained catalysts were thoroughly examined by XRD, XPS, XRF, RS, TEM/EDX/EELS, TPR and BET techniques. The catalytic tests in deN2O reaction revealed that the 10 wt.% of cobalt spinel in supported system is able to reproduce the activity of bare Co3O4 catalyst. However, it was found that the catalyst with the lowest content of Co3O4 equal to 1 wt.% exhibits the highest apparent reaction rate per mass of the spinel active phase. The observed activity was explained basing on the transmission electron microscopy analysis in terms of the dispersion of spinel phase over ceria support. A simple model that accounts for the observed strong dispersion effect is proposed. It consists in a two-step mechanism, where N2O is dissociated on the spinel nanograins and the resultant oxygen species are preferentially recombined at the Co3O4/CeO2 interface periphery.
机译:通过初期润湿浸渍CeO2,制备了一系列钴尖晶石负载量增加1-20%(重量)的Co3O4 / CeO2催化剂。通过XRD,XPS,XRF,RS,TEM / EDX / EELS,TPR和BET技术对所获得的催化剂进行了彻底的检查。在deN2O反应中的催化测试表明,负载型体系中10%(重量)的钴尖晶石能够复制裸露的Co3O4催化剂的活性。然而,发现具有最低Co 3 O 4含量等于1重量%的催化剂表现出最高的表观反应速率/单位质量的尖晶石活性相。基于尖晶石相在二氧化铈载体上的分散,基于透射电子显微镜分析解释了观察到的活性。提出了一个简单的模型,该模型解释了观察到的强色散效应。它由两步机理组成,其中N2O在尖晶石纳米颗粒上解离,生成的氧物种优先在Co3O4 / CeO2界面外围重新结合。

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