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Modelling and simulation in conventional fixed-bed and fixed-bed membrane reactors for the steam reforming of methane

机译:常规固定床和固定床膜反应器中甲烷蒸汽重整的建模与仿真

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This paper presents a dynamics mathematical model to simulate the steam reforming of methane that take place in conventional fixed bed reactor (FBR) as well in fixed bed membrane reactor (FBMR) with steam added both with co-current mode. The model covers all aspects of main chemical kinetics, heat and mass phenomena in the membrane reactor with hydrogen permeation in radial direction across a Pd-based membrane. Firstly, a dynamics study was made for describing that temperatures of gaseous and solid phases reach to steady-state as well as molar flow rates. The effect several parameters including the axial position (z) divided by the reactor length L-z, reaction temperature and hydrogen partial pressure (P-H2 = P-pz) in permeation side were investigated. The conversion of methane is significantly enhanced by the partial removal of hydrogen from the reaction zone as a result of diffusion through the Pd-based membrane. Simulation results showed that a conversion from 99.85% could be achieved in a FBMR at reaction temperature of 600 degrees C relative to a conversion from 88.87% to 950 degrees C in a FBR. Besides, results showed that the yield of H-2 reached to level from 1.548 (dynamics-state) and 1.626 (steady-state) in a FBMR at reaction temperature of 550 degrees C while the yield of H2 achieved to level from 1.261 (dynamics-state) and 1.445 (steady-state) in a FBR at reaction temperature of 725 degrees C. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一个动力学数学模型,以模拟在常规固定床反应器(FBR)和固定床膜反应器(FBMR)中以并流方式添加蒸汽的甲烷蒸汽重整。该模型涵盖了膜反应器中主要化学动力学,热和质量现象的方方面面,氢在整个Pd基膜上沿径向渗透。首先,进行动力学研究以描述气相和固相的温度达到稳态以及摩尔流量。研究了几个参数的影响,包括轴向位置(z)除以反应器长度L-z,反应温度和渗透侧的氢分压(P-H2 = P-pz)。甲烷的转化通过扩散通过基于Pd的膜而部分地从反应区除去氢而显着提高。仿真结果表明,在FBMR中,反应温度为600摄氏度时,相对于FBR中从88.87%转变为950摄氏度,在FBMR中可以实现99.85%的转变。此外,结果表明,在550℃的反应温度下,FBMR中H-2的产率从1.548(动力学状态)和1.626(稳态)达到水平,而H2的产率从1.261(动力学状态)达到水平。 FBR在725摄氏度的反应温度下达到1.45℃和1.445(稳态)。(C)2016 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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