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A comparative study on energetic and exergetic assessment of hydrogen production from bioethanol via steam reforming, partial oxidation and auto-thermal reforming processes

机译:通过蒸汽重整,部分氧化和自热重整过程对生物乙醇制氢进行高能和高能评估的比较研究

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摘要

Three known types of ethanol reforming processes, ethanol steam reforming (ESR), partial oxidation (POX) and auto-thermal reforming (ATR), are investigated. Favorable operating conditions are identified for each reaction system to maximize the production of hydrogen from bioethanol. Each process consists of three sections: the main reactor (ESR, POX or ATR), the CO clean-up section comprised of the water gas shift reactor and preferential CO oxidation reactor and finally, the purification section. The performances of these processes are evaluated through mass, energy and exergy analyses. The material balances show that the total amount of ethanol required to generate 1 mol of hydrogen is 0.23 mol for the ATR, 0.24 mol for the POX and 0.25 mol for the ESR. The ATR reforming process is shown to have the highest energetic efficiency, i.e., the lowest amount of energy is consumed to produce the same amount of hydrogen from ethanol. Moreover, the ATR process has the best exergetic performance, as it presents the highest ratio of exergy recovered in the hydrogen stream to the total exergy supplied to the system. For all three of the systems, the exergy destruction occurs mainly in the reformer due to the high irreversibility of the reaction.
机译:研究了三种已知类型的乙醇重整工艺,即乙醇蒸汽重整(ESR),部分氧化(POX)和自热重整(ATR)。确定每个反应系统的有利操作条件,以最大程度地利用生物乙醇生产氢。每个过程包括三个部分:主反应器(ESR,POX或ATR),由水煤气变换反应器和优先CO氧化反应器组成的CO净化部分,最后是纯化部分。这些过程的性能通过质量,能量和火用分析进行评估。物料平衡表明,生成1摩尔氢气所需的乙醇总量对于ATR为0.23摩尔,对于POX为0.24摩尔,对于ESR为0.25摩尔。 ATR重整过程显示出最高的能量效率,即从乙醇生产相同量的氢所消耗的能量最少。此外,ATR工艺具有最佳的能效表现,因为它代表了从氢气流中回收的总能值与提供给系统的总能值的最高比率。对于这三个系统,由于反应的高度不可逆性,主要在重整器中发生了本能破坏。

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