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首页> 外文期刊>Chemical Engineering Science >THE FLUIDIZED-BED MEMBRANE REACTOR FOR STEAM METHANE REFORMING - MODEL VERIFICATION AND PARAMETRIC STUDY
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THE FLUIDIZED-BED MEMBRANE REACTOR FOR STEAM METHANE REFORMING - MODEL VERIFICATION AND PARAMETRIC STUDY

机译:蒸汽甲烷重整用流化床膜反应器-模型验证与参数研究

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摘要

A new approach is presented for the modelling of a fluidized-bed membrane reactor (FBMR). The model considers the two-phase nature of the fluidized-bed reactor system and the parallel reactions taking place in stream methane reforming, as well as selective permeation through the walls of membrane tubes immersed in the bed. The model is based on the two-phase bubbling bed model with allowance for some gas flow in the dense phase. Plug flow is assumed for the combined sweep gas and permeating hydrogen flowing through the membrane tubes. Freeboard non-isothermal effects and reactions are also taken into account. The coupled differential equations for the fluidized bed and membrane tubes are solved numerically. The model is in very good agreement with experimental data, both with and without permeation, obtained in a pilot-scale reactor system. Parametric investigations demonstrate the effect of key operating variables and design parameters over a wide range. The model is also tested for its sensitivity to changes in hydrodynamic parameters. Increasing the permeation of hydrogen through the membrane tubes is of key importance in achieving high methane conversions and in minimizing adverse reactions in the freeboard region. Hydrodynamic and kinetic properties have limited influence for the conditions studied. (C) 1997 Elsevier Science Ltd. [References: 26]
机译:提出了一种用于流化床膜反应器(FBMR)建模的新方法。该模型考虑了流化床反应器系统的两相性质以及在物流甲烷重整中发生的平行反应,以及通过浸入该床的膜管壁的选择性渗透。该模型基于两相鼓泡床模型,并考虑了密相中的某些气流。对于流经膜管的混合吹扫气体和渗透氢,假定为活塞流。干舷的非等温效应和反应也要考虑在内。数值求解了流化床和膜管的耦合微分方程。该模型与在中试规模的反应器系统中获得的有或没有渗透的实验数据非常吻合。参数研究证明了关键操作变量和设计参数的影响范围很广。还测试了模型对流体动力学参数变化的敏感性。增加氢气通过膜管的渗透对于实现高甲烷转化率并使干舷区域的不良反应降至最低至关重要。流体力学和动力学特性对所研究条件的影响有限。 (C)1997 Elsevier Science Ltd. [参考:26]

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