Altaf Cigdem Tuc, Colak Tuluhan Olcayto, Karagoz Emine, Kurt Mehmet, Sankir Nurdan Demirci, Sankir Mehmet
Micro and Nanotechnology Graduate Program, TOBB University of Economics and Technology, Sogutozu Caddesi No 43 Sogutozu, 06560 Ankara, Turkey.
Department of Materials Science and Nanotechnology Engineering, TOBB University of Economics and Technology, Sogutozu Caddesi No 43 Sogutozu, 06560 Ankara, Turkey.
ACS Omega. 2024 May 20;9(22):23138-23154. doi: 10.1021/acsomega.4c00152. eCollection 2024 Jun 4.
Keeping global warming at 2 degrees and below as stated in the "Paris Climate Agreement" and minimizing emissions can only be achieved by establishing a hydrogen (H) ecosystem. Therefore, H technologies stand out in terms of accomplishing zero net emissions. Although H is the most abundant element in the known universe, molecular H is very rare in nature and must be produced. In H production, reforming natural gas and renewable hydrogen processes using electrolyzers comes to the fore. The key to all these technologies is to enhance production speed, performance, and system lifetime. At this point, composite membranes used in both processes come to the fore. This review article summarizes composite membrane technologies used in methane, ethanol, and biomass steam reforming processes, proton exchange membranes, alkaline water electrolysis, and hybrid sulfur cycle. In addition to these common H production technologies at large quantities, the innovative systems developed with solar energy integration for H generation were linked to composite membrane utilization. This study aimed to draw attention to the importance of composite membranes in H production. It aims to prepare a guiding summary for those working on membranes by combining the latest and cutting-edge studies on this subject.
如《巴黎气候协定》所述,将全球变暖控制在2摄氏度及以下并尽量减少排放,只有通过建立氢(H)生态系统才能实现。因此,氢能技术在实现净零排放方面脱颖而出。尽管氢是已知宇宙中最丰富的元素,但分子氢在自然界中非常罕见,必须通过生产获得。在制氢过程中,利用电解槽对天然气进行重整以及可再生氢工艺变得尤为重要。所有这些技术的关键在于提高生产速度、性能和系统寿命。在这一点上,这两个过程中使用的复合膜变得尤为重要。这篇综述文章总结了用于甲烷、乙醇和生物质蒸汽重整过程、质子交换膜、碱性水电解和混合硫循环的复合膜技术。除了这些大量常见的制氢技术外,通过整合太阳能开发的用于制氢的创新系统也与复合膜的利用相关联。本研究旨在提请人们注意复合膜在制氢中的重要性。它旨在通过结合该主题的最新和前沿研究,为从事膜研究的人员编写一份指导性总结。