Chuah Chong Yang, Jiang Xu, Goh Kunli, Wang Rong
Singapore Membrane Technology Centre, Nanyang Environment & Water Research Institute, Nanyang Technological University, Singapore 637141, Singapore.
School of Civil and Environmental Engineering, Nanyang Technological University, Singapore 639798, Singapore.
Membranes (Basel). 2021 Aug 30;11(9):666. doi: 10.3390/membranes11090666.
Membrane separation is a compelling technology for hydrogen separation. Among the different types of membranes used to date, the mixed-matrix membranes (MMMs) are one of the most widely used approaches for enhancing separation performances and surpassing the Robeson upper bound limits for polymeric membranes. In this review, we focus on the recent progress in MMMs for hydrogen separation. The discussion first starts with a background introduction of the current hydrogen generation technologies, followed by a comparison between the membrane technology and other hydrogen purification technologies. Thereafter, state-of-the-art MMMs, comprising emerging filler materials that include zeolites, metal-organic frameworks, covalent organic frameworks, and graphene-based materials, are highlighted. The binary filler strategy, which uses two filler materials to create synergistic enhancements in MMMs, is also described. A critical evaluation on the performances of the MMMs is then considered in context, before we conclude with our perspectives on how MMMs for hydrogen separation can advance moving forward.
膜分离是一种极具吸引力的氢气分离技术。在迄今为止使用的不同类型的膜中,混合基质膜(MMMs)是提高分离性能并超越聚合物膜的罗伯逊上限的最广泛使用的方法之一。在这篇综述中,我们关注混合基质膜在氢气分离方面的最新进展。讨论首先从当前制氢技术的背景介绍开始,接着比较膜技术与其他氢气纯化技术。此后,重点介绍了包括沸石、金属有机框架、共价有机框架和石墨烯基材料等新兴填充材料的先进混合基质膜。还描述了使用两种填充材料在混合基质膜中产生协同增强作用的二元填充策略。然后在背景下对混合基质膜的性能进行批判性评估,最后我们对氢气分离混合基质膜未来如何发展提出看法。