Characterization of palladium-copper bimetallic catalysts supported on silica and niobia

Fabio B. Noronha, Martin Schmal *, Michel Primet, Roger Frety
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引用次数: 71

Abstract

Silica and niobia Pd-Cu supported bimetallic catalysts were characterized by temperature-programmed reduction (TPR), hydrogen chemisorption and infrared spectroscopy of adsorbed carbon monoxide. On catalysts reduced at 573 K, the metal-metal interaction was confirmed from the analysis of TPR profiles and the decreased capacity of hydrogen chemisorption with increasing copper content. After reduction at 773 K, the palladium/niobia catalyst displays a SMSI effect; however, the increase in copper content in the bimetallic catalyst led to a suppression of the SMSI.

二氧化硅和铌负载钯铜双金属催化剂的表征
采用程序升温还原(TPR)、氢化学吸附和吸附一氧化碳的红外光谱对二氧化硅和铌钯铜负载双金属催化剂进行了表征。在573 K还原的催化剂上,通过TPR谱分析和氢化学吸附能力随铜含量的增加而降低,证实了金属-金属相互作用。在773 K还原后,钯/铌催化剂表现出SMSI效应;然而,双金属催化剂中铜含量的增加导致SMSI的抑制。
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