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Hydrogen selectivity and permeance effect on the water gas shift reaction (WGSR) in a membrane reactor

机译:氢选择性和渗透率对膜反应器中水煤气变换反应(WGSR)的影响

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摘要

Simulated results are presented using a reaction rate equation and a one-dimensional reactor model for a water gas shift reaction (WGSR) in a membrane reactor (MR) with a feed stream obtained from coal gasifiers. CO conversion in a MR at 423-573 K was higher than equilibrium conversion at the same temperature. The effect of two important parameters of a membrane, hydrogen selectivity and hydrogen permeance, on MR performance was studied and hydrogen selectivity was favorable for enhanced CO conversion, reduced CO concentration, and enhanced fuel-cell grade hydrogen. Hydrogen permeance was also favorable for CO conversion enhancement in a MR due to an increased driving force between the shell side (retentate) and the tube side (permeate) of a membrane. The criteria of a hydrogen permeance of higher than 8x10(-8) mol m(-2)s(-1)Pa(-1) and a hydrogen selectivity of 100 were suggested to produce a fuel-cell grade hydrogen (CO concentration less than 50 ppm) in the permeate and a concentrated CO2 (more than 90%) in the retentate simultaneously in a MR.
机译:使用反应速率方程和一维反应器模型,通过从煤气化炉获得的进料流,对膜式反应器(MR)中的水煤气变换反应(WGSR)给出了模拟结果。在相同温度下,MR在423-573 K下的CO转化率高于平衡转化率。研究了膜的两个重要参数氢气选择性和氢气渗透率对MR性能的影响,氢气选择性有利于提高CO转化率,降低CO浓度和提高燃料电池级氢气。由于膜的壳侧(截留物)和管侧(透过物)之间的驱动力增加,氢渗透也有利于MR中的CO转化。建议使用氢渗透率高于8x10(-8)mol m(-2)s(-1)Pa(-1)和氢选择性为100的标准来生产燃料电池级氢(CO浓度小于在MR中,渗透液中的CO2浓度低于50 ppm),截留液中的CO2浓度(大于90%)同时(MR)。

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