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Effect of temperature and pressure on hydrogen production from steam reforming of biogas with Pd-Ag membrane reactor

机译:温度和压力对Pd-Ag膜反应器中沼气蒸汽重整制氢的影响

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The steam reforming reaction of a biogas mixture was conducted with a hydrogen permeable palladium silver membrane reactor at lower temperatures from 623 to 723 K and from 0.1 to 0.4 MPa of reaction side pressure. The biogas composition was in reference to that of the biogas obtained from the rice husk pyrolysis. In the experiment, the reaction with permeation achieved a higher hydrogen production than the reaction without permeation at the same conditions of temperature and pressure on reaction side, obtaining a maximum hydrogen yield of 80% at 723 K and 0.4 MPa on reaction side. Further, the hydrogen recovery increased with increasing temperature and pressure on reaction side in the case of the reaction with permeation. The mathematical model for the system in this study was proposed and calculated the profile of product and temperature in the reactor. The simulated profiles and the dimensionless groups derived from the mathematical model achieved the analysis of the kinetics in the reactor including that hydrogen and carbon dioxide production from methane and water was the main reaction. Copyright (C) 2014, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:用氢气可渗透的钯银膜反应器在623至723 K的较低温度和0.1至0.4 MPa的反应侧压力下进行沼气混合物的蒸汽重整反应。沼气组成是指从稻壳热解获得的沼气。在该实验中,在相同的温度和压力条件下,具有渗透的反应比没有渗透的反应获得更高的产氢量,在723 K和0.4 MPa的条件下,最大氢产率为80%。此外,在渗透反应的情况下,氢气回收率随着反应侧温度和压力的增加而增加。提出了本研究中系统的数学模型,并计算了反应器中产物和温度的分布。从数学模型得到的模拟轮廓和无量纲基团实现了对反应器动力学的分析,其中包括由甲烷和水产生的氢气和二氧化碳是主要反应。 Hydrogen Energy Publications,LLC版权所有(C)2014。由Elsevier Ltd.出版。保留所有权利。

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