Chuah Chong Yang, Lee Jaewon, Bae Tae-Hyun
Singapore Membrane Technology Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University, Singapore 637141, Singapore.
Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.
Membranes (Basel). 2020 Nov 12;10(11):336. doi: 10.3390/membranes10110336.
Hydrogen (H) is an industrial gas that has showcased its importance in several well-known processes such as ammonia, methanol and steel productions, as well as in petrochemical industries. Besides, there is a growing interest in H production and purification owing to the global efforts to minimize the emission of greenhouse gases. Nevertheless, H which is produced synthetically is expected to contain other impurities and unreacted substituents (e.g., carbon dioxide, CO; nitrogen, N and methane, CH), such that subsequent purification steps are typically required for practical applications. In this context, membrane-based separation has attracted a vast amount of interest due to its desirable advantages over conventional separation processes, such as the ease of operation, low energy consumption and small plant footprint. Efforts have also been made for the development of high-performance membranes that can overcome the limitations of conventional polymer membranes. In particular, the studies on graphene-based membranes have been actively conducted most recently, showcasing outstanding H-separation performances. This review focuses on the recent progress and potential challenges in graphene-based membranes for H purification.
氢气(H)是一种工业气体,已在多个知名过程中展现出其重要性,如氨、甲醇和钢铁生产,以及石化行业。此外,由于全球致力于将温室气体排放降至最低,人们对氢气生产和提纯的兴趣与日俱增。然而,合成生产的氢气预计会含有其他杂质和未反应的取代基(如二氧化碳、CO;氮气、N和甲烷、CH),因此实际应用中通常需要后续的提纯步骤。在这种背景下,基于膜的分离因其相对于传统分离工艺的理想优势,如操作简便、能耗低和占地面积小,而备受关注。人们也在努力开发能够克服传统聚合物膜局限性的高性能膜。特别是,最近对基于石墨烯的膜的研究一直在积极开展,展现出卓越的氢气分离性能。本综述聚焦于基于石墨烯的膜在氢气提纯方面的最新进展和潜在挑战。