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A Novel Dual-Membranes WGS Reactor with Palladium Alloy and Polyvinyl Alcohol Membranes for Enhanced Hydrogen Recovery

机译:具有钯合金和聚乙烯醇膜的新型双膜WGS反应器,可提高氢气回收率

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Abstract A novel membrane reactor concept including palladium alloy membrane (selective to H2) and polyvinyl alcohol membrane (selective to CO2) is proposed for water gas shift reaction. The mathematical model of the reactor is developed for two reactor schemes, namely plug dual-membrane reactor (PDMR) and CSTR dual-membrane reactor (CDMR) with uni-dimensional and non-isothermal conditions. A comparison between PDMR and palladium alloy membrane reactor (PAMR) showed that PDMR volume becomes 30 % less than PAMR with 20 bar increase in feed pressure. Then the effect of Damkholer number, feed composition, and feed pressure on hydrogen recovery and CO conversion for PDMR and CDMR has been studied. Under the same operating conditions, CO conversion in PDMR is 10 % more than CDMR while its temperature decreases. The new proposed reactor configuration could pave the way for simultaneous production of hydrogen, increased CO conversion, and CO2 separation on an industrial scale.
机译:摘要提出了一种新颖的膜反应器概念,包括钯合金膜(对H2选择性)和聚乙烯醇膜(对CO2选择性)用于水煤气变换反应。针对两种反应器方案开发了反应器的数学模型,即具有一维和非等温条件的塞式双膜反应器(PDMR)和CSTR双膜反应器(CDMR)。 PDMR和钯合金膜反应器(PAMR)之间的比较表明,随着进料压力增加20 bar,PDMR的体积将比PAMR减小30%。然后研究了Damkholer数,进料组成和进料压力对PDMR和CDMR的氢气回收率和CO转化率的影响。在相同的运行条件下,温度降低时,PDMR中的CO转化率比CDMR高10%。新提出的反应器配置可为同时生产氢气,提高CO转化率和工业规模的CO2分离铺平道路。

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