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Activation of solid surface as catalyst
DOI:10.1016/j.cattod.2012.05.007.png)
摘要
En 中文
The original surface of a solid is not always active as a catalyst, but the surface becomes active during reaction. Activation of surfaces may be classified as follows; (i) originally active surfaces, (ii) intermediates produced by reaction with surface atoms, (iii) formation of active sites with functional groups, (iv) formation of active surface compounds, (v) cooperation of multiple catalytic processes. In this review, we discuss two important environmental reactions, one is NO + H-2 -> 1/2 N-2 + H2O catalyzed by single crystal Pt-Rh-ally and Pt/Rh or Rh/Pt bimetals, and the other is the preferential oxidation (PROX) reaction of CO in H-2 by heavily FeO(x) under bar-loaded Pt/TiO2 catalyst and Pt-supported carbon with Ni-MgO. The specific activity of the Pt-Rh catalyst arises from the formation of special ordered bimetallic surface layers composed of (-Rh-O-) on Pt-layer. Formation of an active over-layer compound was confirmed on Pt0.25Rh0.75(100) alloy, Pt/Rh(100), Rh/Pt(100), Pt/Rh(110) and Rh/Pt(110) bimetal surfaces. The PROX reaction of CO in H-2 was attained on two new catalysts, one being FeOx/Pt/TiO2 (ca. 100 wt.% FeOx) and the other Pt supported on carbon with Ni-MgO. The mechanism of the PROX reaction of CO was deduced by in situ DRIFT spectroscopy, which indicates a coupled reaction of CO + OH- -> HCOO- and HCOO + OH -> CO2 + H2O. (C) 2012 Elsevier B. V. All rights reserved.
Keyword:
Reconstructive activation
Working catalyst surface
Active surface compounds
Structure insensitive catalysis
PROX reaction
NO reduction
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期刊
IF:
5.3
论文数:
1.5W
被引数:
3.9W
机构
引用论文
Mechanism of highly selective low temperature PROX reaction of CO in H2: Oxidation of CO via HCOO with OH
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New catalyst for selective oxidation of CO in excess H2 designing of the active catalyst having different optimum temperature在过量H2中选择性氧化CO的新型催化剂具有不同最佳温度的活性催化剂的设计
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