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Modeling process intensified catalytic plate reactor for synthesis gas production

机译:用于合成气生产的建模过程增强型催化板反应器

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This paper presents numerical study of co- and counter-flow arrangements for catalytic plate reactors (CPR). CH4 steam reforming coupled with CH4 oxidation is simulated using detailed surface reaction mechanisms. Effect of inlet velocities to the reforming channel, oxidation channel, and material properties of the plate on the resulting plate temperature and CH4 conversions is studied. The simulation results agree very well with an industrial scale reformer unit and calculations are further carried out to evaluate the number of CPRs and stacks required to replace and industrial unit.
机译:本文介绍了催化板式反应器(CPR)的并流和逆流装置的数值研究。使用详细的表面反应机理模拟了CH4蒸汽重整以及CH4氧化。研究了入口速度对重整通道,氧化通道和板材料性能的影响,从而影响了板温度和CH4转化率。模拟结果与工业规模的重整装置非常吻合,并进一步进行计算以评估更换和工业装置所需的CPR和烟囱数。

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