首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Structure and morphology of Pd/Al2O3 and Pd/CeO2/Al2O3 combustion catalysts in Pd-PdO transformation hysteresis
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Structure and morphology of Pd/Al2O3 and Pd/CeO2/Al2O3 combustion catalysts in Pd-PdO transformation hysteresis

机译:Pd-PdO转变迟滞中Pd / Al2O3和Pd / CeO2 / Al2O3燃烧催化剂的结构和形态

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摘要

Catalytic combustion of methane has been studied for many years due to its applications in power generation and emissions clean-up. Among different catalysts, Pd-based materials are the most active for the catalytic combustion of methane. In this work we have investigated the Pd-PdO transformation process on Pd-alumina and Pd-ceria-alumina combustion catalysts by combining different analytical techniques. Both decomposition of PdO and reoxidation of Pd take place via the formation of an intermediate, which has been identified as a surface or interfacial PdO_x on the basis of X-ray Photoelectron Spectroscopy analysis. The results obtained by coupling temperature programmed oxidation with high resolution transmission electron microscopy and X-ray photoelectron spectroscopy indicate that PdO decomposition is a thermodynamically driven process, in which the support affects only the amount of PdO species involved in each decomposition step. On the contrary, Pd reoxidation is a kinetically limited process, which is strongly affected by the environment. In particular, the presence of promoters such as CeO2 or residual PdO significantly speeds up Pd oxidation, thus reducing the characteristic Pd-PdO hysteresis.
机译:甲烷的催化燃烧由于在发电和排放净化中的应用而被研究了很多年。在不同的催化剂中,基于Pd的材料对于甲烷的催化燃烧最为活跃。在这项工作中,我们结合了不同的分析技术,研究了Pd-氧化铝和Pd-氧化铈-氧化铝燃烧催化剂上的Pd-PdO转化过程。 PdO的分解和Pd的再氧化都通过形成中间体而发生,该中间体在X射线光电子能谱分析的基础上被确定为表面或界面PdO_x。通过将程序升温氧化与高分辨率透射电子显微镜和X射线光电子能谱相结合所获得的结果表明,PdO分解是热力学驱动的过程,其中载体仅影响每个分解步骤中涉及的PdO种类。相反,Pd再氧化是一个动力学受限的过程,受环境的影响很大。特别是,促进剂(例如CeO2或残留的PdO)的存在会显着加速Pd氧化,从而降低特征性Pd-PdO磁滞。

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