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Experimental and exergy evaluation of ethanol catalytic steam reforming in a membrane reactor

机译:膜反应器中乙醇催化蒸汽重整的实验和(火用)评价

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摘要

The application of exergy analysis in the evaluation of the ethanol steam reforming (ESR) process in a catalytic membrane reactor (CMR) was presented. ESR experiments were performed at T =873-923K and P =4-12bar in a CMR containing Pd-Ag membranes sandwiched by Pd-Rh/CeO2 catalyst, aiming to produce fuel cell grade pure hydrogen. The effect of the operating conditions on the pure hydrogen production rate, hydrogen yield and recovery, exergy efficiency, and thermodynamic losses was investigated. Total hydrogen yield of 3.5mol H2 permeated per mol ethanol in feed with maximum hydrogen recuperation of 90% was measured at 923K and 12bar. The highest amount of exergy was destructed via heat losses and the retentate gas stream. Exergy efficiency up to around 50% was reached in the case of the insulated reactor at 12bar and 923K. Exergy efficiency placed between 70-90% in the case of recovery of the retentate gas in an insulated reactor. It was concluded that operating at the highest pressure, the lowest S/C ratio, and 923K gives the best exergy efficiency.
机译:提出了火用分析在催化膜反应器(CMR)中乙醇蒸汽重整(ESR)过程评估中的应用。 ESR实验在T = 873-923K和P = 4-12bar的条件下,在含有Pd-Rh / CeO2催化剂夹在中间的Pd-Ag膜的CMR中进行,目的是生产燃料电池级纯氢。研究了操作条件对纯氢气生产率,氢气产率和回收率,火用效率和热力学损失的影响。在923K和12bar下测得进料中每摩尔乙醇中渗透的3.5摩尔H2的总氢产率,最大氢气回收率为90%。通过热量损失和截留气流破坏了最大的火用。在12bar和923K的绝热反应器中,火用效率可达到约50%。在绝热反应器中回收截留气体的情况下,火用效率在70-90%之间。得出的结论是,在最高压力,最低S / C比和923K下运行可提供最佳的火用效率。

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