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Structured catalysts with high thermoconductive properties for the intensification of Water Gas Shift process

机译:具有高导热性的结构化催化剂,可用于强化水煤气变换工艺

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The influence of the thermal properties of structured carriers on the performance of a highly active catalytic formulation, was investigated in the Water Gas Shift (WGS) process. Some aluminum foam structured catalysts were prepared by charging the carriers with a platinumiceria/alumina-washcoat formulation; the catalytic performance were evaluated by providing a gaseous mixture, whose composition was chosen on the basis of a typical steam/carbon monoxide ratio at the outlet of a reformer. The activity of the structured catalysts and the thermal profile of the catalytic bed, were compared to those of a powder catalyst with the same composition of the washcoat formulation, in "quasi-adiabatic" condition, under equal conditions in terms of inlet temperature and weight hourly space velocity (WHSV). The experimental results showed much better performances for the structured catalysts, both in terms of CO conversion and temperature difference between the inlet and the outlet of the catalytic bed. This results were explained in terms of backdiffusion of the reaction heat throughout the structured catalysts bed, with a consequent flattening of the temperature profile, induced by the presence of the highly conductive aluminum foam carrier.
机译:在水煤气变换(WGS)工艺中研究了结构化载体的热性能对高活性催化配方性能的影响。一些泡沫铝结构的催化剂是通过将铂族/氧化铝基涂料配方加入到载体中而制得的。通过提供气体混合物来评估催化性能,该气体混合物的组成是基于重整器出口处的典型蒸汽/一氧化碳比来选择的。在入口温度和重量相等的条件下,在“准绝热”条件下,将结构催化剂的活性和催化床的热性能与粉基涂料配方相同的粉末催化剂的性能进行了比较。时空速度(WHSV)。实验结果表明,就CO转化率和催化床入口与出口之间的温差而言,结构化催化剂的性能要好得多。根据反应热在整个结构化催化剂床中的反扩散,以及由此导致的温度分布的平坦化(由高导电性铝泡沫载体的存在引起)进行了解释。

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