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Modelling and sequential simulation of multi-tubular metallic membrane and techno-economics of a hydrogen production process employing thin-layer membrane reactor

机译:多管金属膜的建模和顺序模拟以及采用薄层膜反应器的制氢工艺的技术经济性

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A theoretical model for multi-tubular palladium-based membrane is proposed in this paper and validated against experimental data for two different sized membrane modules that operate at high temperatures. The model is used in a sequential simulation format to describe and analyse pure hydrogen and hydrogen binary mixture separations, and then extended to simulate an industrial scale membrane unit. This model is used as a subroutine within an ASPEN Plus model to simulate a membrane reactor in a steam reforming hydrogen production plant. A techno-economic analysis is then conducted using the validated model for a plant producing 300 TPD of hydrogen. The plant utilises a thin (2.5 mu m) defect-free and selective layer (Pd75Ag25 alloy) membrane reactor. The economic sensitivity analysis results show usefulness in finding the optimum operating condition that achieves minimum hydrogen production cost at break-even point. A hydrogen production cost of 1.98 $/kg is estimated while the cost of the thin-layer selective membrane is found to constitute 29% of total process capital cost. These results indicate the competiveness of this thin-layer membrane process against conventional methods of hydrogen production. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种基于多管钯基膜的理论模型,并针对在高温下运行的两种不同尺寸的膜组件的实验数据进行了验证。该模型以顺序模拟格式用于描述和分析纯氢和氢二元混合物的分离,然后扩展为模拟工业规模的膜装置。该模型用作ASPEN Plus模型中的子例程,以模拟蒸汽重整制氢厂中的膜反应器。然后使用经过验证的模型对生产300 TPD氢气的工厂进行技术经济分析。该工厂利用了一个薄的(2.5微米)无缺陷和选择性层(Pd75Ag25合金)膜反应器。经济敏感性分析结果表明,在寻找达到收支平衡点最低制氢成本的最佳操作条件方面很有用。氢气生产成本估计为1.98 $ / kg,而发现薄层选择性膜的成本占总工艺资本成本的29%。这些结果表明,该薄层膜方法与常规的制氢方法相比具有竞争力。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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