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膜技术在“电力制氢(P2H)路线图”中用于氢气提纯的机遇:综述

The opportunity of membrane technology for hydrogen purification in the power to hydrogen (P2H) roadmap: a review.

作者信息

Lu Hiep Thuan, Li Wen, Miandoab Ehsan Soroodan, Kanehashi Shinji, Hu Guoping

机构信息

Department of Chemical Engineering, The University of Melbourne, Parkville, VIC 3010 Australia.

Department of Animal, Plant and Soil Sciences, La Trobe University, Bundoora, VIC 3086 Australia.

出版信息

Front Chem Sci Eng. 2021;15(3):464-482. doi: 10.1007/s11705-020-1983-0. Epub 2020 Dec 29.

Abstract

The global energy market is in a transition towards low carbon fuel systems to ensure the sustainable development of our society and economy. This can be achieved by converting the surplus renewable energy into hydrogen gas. The injection of hydrogen (⩽10% v/v) in the existing natural gas pipelines is demonstrated to have negligible effects on the pipelines and is a promising solution for hydrogen transportation and storage if the end-user purification technologies for hydrogen recovery from hydrogen enriched natural gas (HENG) are in place. In this review, promising membrane technologies for hydrogen separation is revisited and presented. Dense metallic membranes are highlighted with the ability of producing 99.9999999% (v/v) purity hydrogen product. However, high operating temperature (⩾300 °C) incurs high energy penalty, thus, limits its application to hydrogen purification in the power to hydrogen roadmap. Polymeric membranes are a promising candidate for hydrogen separation with its commercial readiness. However, further investigation in the enhancement of H/CH selectivity is crucial to improve the separation performance. The potential impacts of impurities in HENG on membrane performance are also discussed. The research and development outlook are presented, highlighting the essence of upscaling the membrane separation processes and the integration of membrane technology with pressure swing adsorption technology.

摘要

全球能源市场正在向低碳燃料系统转型,以确保我们社会和经济的可持续发展。这可以通过将过剩的可再生能源转化为氢气来实现。在现有的天然气管道中注入氢气(体积比≤10%)对管道的影响可忽略不计,并且如果具备从富氢天然气(HENG)中回收氢气的终端用户净化技术,这是一种很有前景的氢气运输和储存解决方案。在这篇综述中,重新审视并介绍了用于氢气分离的有前景的膜技术。致密金属膜因其能够生产纯度为99.9999999%(体积比)的氢气产品而受到关注。然而,高操作温度(≥300°C)会导致高能量消耗,因此,限制了其在“电力制氢路线图”中氢气净化方面的应用。聚合物膜因其商业成熟度而成为氢气分离的有前景的候选材料。然而,进一步研究提高H/CH选择性对于改善分离性能至关重要。还讨论了HENG中的杂质对膜性能的潜在影响。展示了研发前景,强调了扩大膜分离过程规模以及将膜技术与变压吸附技术集成的重要性。

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