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Investigation of the characteristics of a compact steam reformer integrated with a water-gas shift reactor

机译:带有水煤气变换反应器的紧凑型蒸汽重整炉的特性研究

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摘要

The objective of this study is to investigate numerically a compact steam methane reforming (SMR) system integrated with a water-gas shift (WGS) reactor. Separate numerical models are established for the combustion part, SMR and WGS reaction bed. The concentration of species at the exits of the SMR and WGS bed, and the temperatures in the WGS bed are in good agreement with the measured data. Heat transfer to the catalyst beds and the catalytic reactions in the SMR and WGS catalyst bed are investigated as a function of the operation parameters. The conversion of methane at the exit of the SMR catalyst bed is calculated to be 87 percent, and the carbon monoxide concentration at the outlet of the WGS bed is estimated to be 0.45 percent. The effects of the cooling heat flux at the outside wall of the system and steam-to-carbon (S/C) ratio are also examined. As the cooling heat flux increases, both the methane conversion and carbon monoxide content are reduced in the SMR bed, and the carbon monoxide conversion is improved in the WGS bed. Both methane conversion and carbon dioxide reduction increase with increasing steam-to-carbon ratio.
机译:这项研究的目的是在数值上研究与水煤气变换(WGS)反应器集成的紧凑型蒸汽甲烷重整(SMR)系统。建立了燃烧部分,SMR和WGS反应床的单独数值模型。 SMR和WGS床出口处的物质浓度以及WGS床中的温度与测得的数据高度吻合。根据操作参数,研究了传热到催化剂床以及SMR和WGS催化剂床中的催化反应。经计算,在SMR催化剂床出口处的甲烷转化率为87%,在WGS床出口处的一氧化碳浓度估计为0.45%。还检查了系统外壁的冷却热通量和蒸汽碳比(S / C)的影响。随着冷却热通量的增加,SMR床中的甲烷转化率和一氧化碳含量均降低,而WGS床中的一氧化碳转化率提高。甲烷转化率和二氧化碳还原率均随蒸汽/碳比的增加而增加。

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