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Reactor Configuration and Concentration Polarization in Methane Steam Reforming by a Membrane Reactor with a Highly Hydrogen-Permeable Membrane

浓差极化 膜反应器 甲烷 蒸汽重整 极化(电化学) 制氢 化学 渗透 化学工程 推流式反应器模型 塞流 材料科学 连续搅拌釜式反应器 热力学 有机化学 物理化学 工程类 物理 生物化学
作者
Nobuhiko Mori,Toshiyuki Nakamura,Kenichi Noda,Osamu Sakai,Akira Takahashi,Naoyuki Ogawa,Hitoshi Sakai,Yuji Iwamoto,Tadashi Hattori
出处
期刊:Industrial & Engineering Chemistry Research [American Chemical Society]
卷期号:46 (7): 1952-1958 被引量:76
标识
DOI:10.1021/ie060989j
摘要

To examine the effect of so-called "concentration polarization" on the performance of a membrane reactor with a highly hydrogen-permeable membrane, methane steam reforming was conducted, using a Pd/Ag membrane with a thickness of a few micrometers. First, the relation between the methane conversion and the hydrogen recovery was experimentally examined, and the relation was compared with that predicted by a rather simple simulation that assumes the instant achievement of equilibrium. When the hydrogen recovery was smallest, the experimental results agreed well with the simulation results. With increasing reaction pressure, the experimental methane conversion became lower than the simulated conversion. These results suggest that the reaction is limited by reduced hydrogen removal, because of the concentration polarization. The influence of concentration polarization was confirmed by the comparison of the experimental results of hydrogen permeation from a mixture of H2 and N2 with the simulation results based on the plug-flow model. It then was experimentally attempted to reduce the concentration polarization by changing the configuration of the reactor. The methane conversion was successfully improved using reactors that had narrower inner diameters and baffle plates, probably because of the reduction in concentration polarization. It was concluded that the reactor configuration was quite essential to make the best use of a membrane reactor with a highly permeable membrane.
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