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首页> 外文期刊>Energy Conversion & Management >Conceptual feasibility studies for cost-efficient and bi-functional methylcyclohexane dehydrogenation in a membrane reactor for H_2 storage and production
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Conceptual feasibility studies for cost-efficient and bi-functional methylcyclohexane dehydrogenation in a membrane reactor for H_2 storage and production

机译:用于H_2储存和生产的膜反应器中成本效率和双官能甲基环己烷脱氢的概念可行性研究

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摘要

As the global trend towards transition to a "hydrogen society" continues to gain momentum, a lot of studies on alternative hydrogen (H-2) production methods are on the rise. Among them, methylcyclohexane (MCH) dehydrogenation in a membrane reactor (MR) is reported here as one possible candidate, affording its enhanced H-2 yield and a compact design. In this study, techno-economic analysis and carbon footprint analysis (CFA) of MCH dehydrogenation in an MR are carried out to investigate economic and environmental feasibility providing techno-economic and environmental guidelines for realizing it as mature technology. The economic parameters are determined through process simulation using Aspen Plus (R), and the unit H-2 production costs are obtained for a packed-bed reactor (PBR) and an MR in H-2 production capacities of 30, 100, 300, and 700 m(3) h(-1). The effects of each economic parameter on the unit H-2 production cost are identified through sensitivity analysis (SA) and scenario analysis is performed under various conditions to investigate the effects of technical parameters of the membrane, such as the H-2 production capacity, temperature, and H-2 permeance on the unit H-2 production costs. CFA is also performed to investigate the environmental feasibility of MCH dehydrogenation in an MR by considering CO2 emissions at each part.
机译:随着向“氢社会”过渡的全球趋势继续增加动力,对替代氢气(H-2)生产方法进行了大量研究。其中,膜反应​​器(MR)中的甲基环己烷(MCH)脱氢作为一种可能的候选,得到其增强的H-2产量和紧凑的设计。在本研究中,对MR中​​MCH脱氢的技术经济分析和碳足迹分析(CFA)进行了调查经济和环境可行性,提供技术经济和环境指南,以实现其成熟技术。通过使用Aspen Plus(R)的过程模拟来确定经济参数,并且为填充床反应器(PBR)和H-2生产能力MR为30,100,300,和700米(3)小时(-1)。通过灵敏度分析(SA)鉴定每个经济参数对单位H-2生产成本的影响,并且在各种条件下进行情景分析,以研究膜技术参数的影响,如H-2生产能力,温度和H-2渗透到单位H-2生产成本。还进行CFA以通过考虑每个部分的二氧化碳排放来研究MR中MCH脱氢的环境可行性。

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