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The limiting process in steam methane reforming with gas diffusion into a porous catalytic wall in a flow reactor

机译:气体扩散进入流动反应器中多孔催化壁的蒸汽甲烷重整的极限过程

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摘要

For a reaction in a channel with a catalytic wall, transport phenomena are important not only in the gas phase but also within the catalyst layer. This research provided a direct method for obtaining the reaction rate of steam methane reforming by taking into account the internal diffusion of the porous catalyst on the channel wall. In the experiment with different thicknesses of nickel-based catalyst, the limiting modes were observed by means of the concentrations at the interface between the gas flow and the catalyst layer. According to interpretation of the experimental results using one-dimensional diffusion equation perpendicular to the flow direction, a power-law-type reaction rate with an upper limit was found to be appropriate for explaining the region where the reaction was saturated. Finally, a versatile criterion for the rate-limiting condition was proposed through an analytical discussion based on dimensionless numbers. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:对于具有催化壁的通道中的反应而言,传输现象不仅在气相中而且在催化剂层内都很重要。该研究通过考虑多孔催化剂在通道壁上的内部扩散,提供了一种直接获得蒸汽甲烷重整反应速率的方法。在具有不同厚度的镍基催化剂的实验中,借助于在气流和催化剂层之间的界面处的浓度观察到限制模式。根据使用垂直于流动方向的一维扩散方程对实验结果的解释,发现具有上限的幂律型反应速率适于解释反应饱和的区域。最后,通过基于无量纲数的分析讨论,提出了一种限速条件的通用判据。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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