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A comparative study of nanosized IB/ceria catalysts for low-temperature water-gas shift reaction

机译:纳米IB /二氧化铈低温水煤气变换反应的比较研究

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The water-gas shift (WGS) activity of different M/ceria catalysts, where M is a metal from 113 group (i.e. Art, Ag, Cu) has been studied. Two different techniques were used for the preparation of the catalysts-deposition-precipitation and a modified version of deposition-precipitation. HRTEM combined with EDS, X-ray diffraction, FT-IR of the molecules involved in the WGS reaction at 90 and 300 K as well as of forward and reverse WGS reaction up to 573 K, XPS and H-2-TPR were employed to obtain information about the effect of different synthesis procedures on the surface and on the bulk structure of the catalysts and to explain the differences observed in the catalytic activity. The influence of each 113 metal on the WGS activity has been investigated, too. The experimental results revealed that deposition-precipitation is the preferred method for preparation of active ceria-based catalysts because it allowed most part of 113 metal promoters to be exposed at the catalyst surface. WGS reaction proceeds at the boundary between nanosized metallic particles and ceria, where CO adsorption on IB metals and H2O dissociation on oxygen-vacancy defects of ceria take place. The role of formate species as intermediates in the WGS reaction is confirmed by FT-IR spectroscopy. The correlation between the stability of formates and the WGS activity suggests that the decomposition of formates is a rate-limiting step. (c) 2005 Elsevier B.V. All rights reserved.
机译:已经研究了不同的M / ceria催化剂的水煤气变换(WGS)活性,其中M是113类金属(即Art,Ag,Cu)。两种不同的技术被用于制备催化剂:沉积沉淀和改进的沉积沉淀。 HRTEM结合EDS,X射线衍射,在90和300 K下参与WGS反应的分子的FT-IR以及高达573 K的正向和反向WGS反应的分子,采用XPS和H-2-TPR获得有关不同合成程序对催化剂表面和本体结构影响的信息,并解释在催化活性方面观察到的差异。还研究了每种113种金属对WGS活性的影响。实验结果表明,沉积沉淀法是制备活性二氧化铈基催化剂的首选方法,因为它可以使113种金属助催化剂的大部分暴露在催化剂表面。 WGS反应在纳米级金属颗粒和二氧化铈之间的边界处进行,CO在IB金属上的吸附以及H2O在二氧化铈的氧空位缺陷处发生离解。 FT-IR光谱证实了甲酸盐类作为中间体在WGS反应中的作用。 format的稳定性与WGS活性之间的相关性表明,es的分解是一个限速步骤。 (c)2005 Elsevier B.V.保留所有权利。

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