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Evaluation of on-site hydrogen generation via steam reforming of biodiesel: Process optimization and heat integration

机译:通过生物柴油的蒸汽重整评估现场制氢:工艺优化和热集成

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The present simulation study investigates on-site hydrogen generation (50 Nm(3)/h) via steam reforming of biodiesel. The system comprises a steam reformer, a water gas shift stage, a pressure swing adsorption unit and a dual fuel burner. Sensitivity analysis with Aspen Plus shows a positive effect on overall system efficiency for high pressure and low steam-to-carbon ratio. A theoretical maximum efficiency (based on lower heating value) of 78.2% can be obtained requiring a complex and costly heat exchanger network. Consequently, a system simplification is proposed resulting in a novel fuel processor concept for steam reforming of biodiesel based on a fully heat integrated system. A thermal system efficiency of 75.6% is obtained at S/C = 2.53, p = 13 bara and T = 825 degrees C. The technoeconomic evaluation reveals hydrogen production costs ranging from 5.77 (sic)/kg to 11.15 (sic)/kg (depending on the biodiesel market price). Copyright (C) 2016, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:本模拟研究调查了通过生物柴油的蒸汽重整现场产生的氢气(50 Nm(3)/ h)。该系统包括蒸汽重整器,水煤气变换级,变压吸附单元和双燃料燃烧器。 Aspen Plus的灵敏度分析显示,对于高压和低蒸汽/碳比的系统整体效率产生了积极影响。需要复杂而昂贵的换热网络,可获得78.2%的理论最大效率(基于较低的热值)。因此,提出了系统简化的建议,从而产生了一种基于完全热集成系统的新型燃料处理器概念,用于生物柴油的蒸汽重整。在S / C = 2.53,p = 13 bara和T = 825摄氏度时,热系统效率为75.6%。技术经济评估显示制氢成本为5.77(sic)/ kg至11.15(sic)/ kg(取决于生物柴油的市场价格)。 Hydrogen Energy Publications,LLC(C)2016版权所有。由Elsevier Ltd.出版。保留所有权利。

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