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MnOx/Pt/Al2O3 catalysts for CO oxidation in H-2-rich streams

机译:MnOx / Pt / Al2O3催化剂,用于富H-2物流中的CO氧化

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摘要

The catalytic activity of Pt on alumina catalysts, with and without MnOx incorporated to the catalyst formulation, for CO oxidation in H-2-free as well as in H-2-rich stream (PROX) has been studied in the temperature range of 25-250 degrees C. The effect of catalyst preparation (by successive impregnation or by co-impregnation of Mn and Pt) and Mn content in the catalyst performance has been studied. A low Mn content (2 wt.%) has been found not to improve the catalyst activity compared to the base catalyst. However, catalysts prepared by successive impregnation with 8 and 15 wt.% Mn have shown a lower operation temperature for maximum CO conversion than the base catalyst with an enhanced catalyst activity at low temperatures with respect to Pt/Al2O3. A maximum CO conversion of 89.8%, with selectivity of 44.9% and CO yield of 40.3% could be reached over a catalyst with 15 wt.% Mn operating at 139 degrees C and lambda = 2. The effect of the presence of 5 vol.% CO2 and 5 vol.% H2O in the feedstream on catalysts performance has also been studied and discussed. The presence Of CO2 in the feedstream enhances the catalytic performance of all the studied catalysts at high temperature, whereas the presence of steam inhibits catalysts with higher MnOx content. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究了在25°C的温度范围内,在有和没有加入MnOx的情况下,Pt在氧化铝催化剂上的催化活性对无H-2和富H-2物流(PROX)中的CO氧化的影响。 -250℃。研究了催化剂制备(通过连续浸渍或通过共浸渍Mn和Pt)和Mn含量对催化剂性能的影响。与基础催化剂相比,发现低的Mn含量(2重量%)不会改善催化剂活性。然而,通过连续浸渍8和15重量%的Mn而制备的催化剂显示出比用于碱催化的Pt / Al 2 O 3在低温下具有增强的催化剂活性的更低的操作温度以实现最大的CO转化率。在139℃,λ= 2的条件下,使用15%(重量)的Mn催化剂,可以达到89.8%的最大CO转化率,44.9%的选择性和40.3%的CO收率。还已经研究和讨论了进料流中CO 2 / CO 2和5体积%H 2 O对催化剂性能的影响。进料流中CO 2的存在增强了所有研究的催化剂在高温下的催化性能,而蒸汽的存在则抑制了具有较高MnOx含量的催化剂。 (c)2006 Elsevier B.V.保留所有权利。

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