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CO and Soot Oxidation over Ce-Zr-Pr Oxide Catalysts

机译:Ce-Zr-Pr氧化物催化剂上的CO和碳烟氧化

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摘要

A set of ceria, ceria-zirconia (Ce 80 at.%, Zr 20 at.%), ceria-praseodymia (Ce 80 at.%, Pr 20 at.%) and ceria-zirconia-praseodymia (Ce 80 at.%, Zr 10 at.% and Pr 10 at.%) catalysts has been prepared by the solution combustion synthesis (SCS). The effects of Zr and Pr as dopants on ceria have been studied in CO and soot oxidation reactions. All the prepared catalysts have been characterized by complementary techniques, including XRD, FESEM, N2 physisorption at −196 °C, H2-temperature-programmed reduction, and X-ray photoelectron spectroscopy to investigate the relationships between the structure and composition of materials and their catalytic performance. Better results for CO oxidation have been obtained with mixed oxides (performance scale, Ce80Zr10Pr10 > Ce80Zr20 > Ce80Pr20) rather than pure ceria, thus confirming the beneficial role of multicomponent catalysts for this prototypical reaction. Since CO oxidation occurs via a Mars-van Krevelen (MvK)-type mechanism over ceria-based catalysts, it appears that the presence of both Zr and Pr species into the ceria framework improves the oxidation activity, via collective properties, such as electrical conductivity and surface or bulk oxygen anion mobility. On the other hand, this positive effect becomes less prominent in soot oxidation, since the effect of catalyst morphology prevails.
机译:一组二氧化铈,二氧化铈-氧化锆(Ce 80at。%,Zr 20at。%),二氧化铈-ase痛(Ce 80at。%,Pr 20at。%)和二氧化铈-氧化锆-痛(Ce 80at。% ,Zr 10 at。%和Pr 10 at。%)催化剂是通过溶液燃烧合成(SCS)制备的。 Zr和Pr作为掺杂剂对二氧化铈的影响已在CO和烟灰氧化反应中进行了研究。所有制备的催化剂均已通过互补技术进行了表征,包括XRD,FESEM,在-196°C下的N2物理吸附,H2程序升温还原和X射线光电子能谱,以研究材料的结构与组成及其之间的关系。催化性能。使用混合氧化物而不是纯二氧化铈可获得更好的CO氧化结果(性能指标,Ce80Zr10Pr10> Ce80Zr20> Ce80Pr20),从而证实了多组分催化剂对该原型反应的有益作用。由于CO氧化是通过Mars-van Krevelen(MvK)型机理在二氧化铈基催化剂上发生的,因此似乎Zr和Pr物种同时存在于二氧化铈骨架中会通过诸如电导率之类的集体特性提高氧化活性。和表面或整体氧阴离子迁移率。另一方面,由于催化剂形态的影响占优势,因此这种积极作用在烟灰氧化中变得不太明显。

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