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首页> 外文期刊>Journal of Catalysis >CO induced surface segregation as a means of improving surface composition and enhancing performance of CuPd bimetallic catalysts
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CO induced surface segregation as a means of improving surface composition and enhancing performance of CuPd bimetallic catalysts

机译:CO诱导的表面偏析作为改善表面成分和增强CuPd双金属催化剂性能的手段

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摘要

A series of copper rich CuPd/Al2O3 catalysts were prepared and characterised by FTIR spectroscopy using CO as a probe molecule. After reduction, the surface composition was largely composed of Cu with evidence of a small concentration of isolated Pd atoms. It was found that CO induced surface segregation could be used to increase the surface Pd concentration and depending on the Cu:Pd ratio, the formation of Pd-Pd dimers was possible. Changes in surface composition were quantified and correlated with catalyst activity and selectivity for selective acetylene hydrogenation. For the catalyst with optimum Cu:Pd ratio (50:1), it was possible to use CO induced segregation to increase activity considerably (20 K temperature reduction to achieve 100% conversion) whilst only marginally affecting ethylene selectivity (approximate to 15% decrease in ethylene selectivity). An estimate of the detection limit by FTIR of the minimum surface coverage of isolated Pd and Pd-Pd dimers is given. (C) 2015 Elsevier Inc. All rights reserved.
机译:制备了一系列富铜的CuPd / Al2O3催化剂,并以CO为探针分子通过FTIR光谱进行了表征。还原后,表面成分主要由Cu组成,并显示出少量的分离的Pd原子。已经发现,CO诱导的表面偏析可以用来增加表面Pd的浓度,并且取决于Cu∶Pd的比例,可以形成Pd-Pd二聚体。量化表面组成的变化,并将其与催化剂活性和选择性乙炔加氢的选择性相关。对于具有最佳Cu:Pd比(50:1)的催化剂,可以使用CO诱导的偏析来显着提高活性(降低20 K的温度以实现100%的转化率),而仅略微影响乙烯的选择性(降低15%)乙烯选择性)。给出了通过FTIR对孤立的Pd和Pd-Pd二聚体的最小表面覆盖率的检测限的估计。 (C)2015 Elsevier Inc.保留所有权利。

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