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聚合物膜在解决实际工业CO/CH应用中的增塑和老化问题方面的最新进展——综述

Recent Advances of Polymeric Membranes in Tackling Plasticization and Aging for Practical Industrial CO/CH Applications-A Review.

作者信息

Kadirkhan Farahdila, Goh Pei Sean, Ismail Ahmad Fauzi, Wan Mustapa Wan Nurul Ffazida, Halim Mohd Hanif Mohamad, Soh Wei Kian, Yeo Siew Yean

机构信息

Advanced Membrane Technology Research Centre (AMTEC), Faculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia, Johor Bahru 81310, Malaysia.

Gas Sustainability Technology (GaSTech) R&D Department, Group Research & Technology (GR&T), Project Delivery & Technology (PD&T), PETRONAS Research Sdn Bhd, Block E, Lot 3288 & 3289, Off Jalan Ayer Itam, Kawasan Institusi Bangi, Kajang 43000, Malaysia.

出版信息

Membranes (Basel). 2022 Jan 5;12(1):71. doi: 10.3390/membranes12010071.

Abstract

Membranes are a promising technology for bulk CO separation from natural gas mixtures due to their numerous advantages. Despite the numerous fundamental studies on creating better quality membrane efficiency, scaling up the research work for field testing requires huge efforts. The challenge is to ensure the stability of the membrane throughout the operation while maintaining its high performance. This review addresses the key challenges in the application of polymeric technology for CO separation, focusing on plasticization and aging. A brief introduction to the properties and limitations of the current commercial polymeric membrane is first deliberated. The effect of each plasticizer component in natural gas towards membrane performance and the relationship between operating conditions and the membrane efficiency are discussed in this review. The recent technological advancements and techniques to overcome the plasticization and aging issues covering polymer modification, high free-volume polymers, polymer blending and facilitated transport membranes (FTMs) have been highlighted. We also give our perspectives on a few main features of research related to polymeric membranes and the way forwards. Upcoming research must emphasize mixed gas with CO including minor condensable contaminants as per real natural gas, to determine the competitive sorption effect on CO permeability and membrane selectivity. The effects of pore blocking, plasticization and aging should be given particular attention to cater for large-scale applications.

摘要

由于具有众多优势,膜技术是从天然气混合物中大规模分离二氧化碳的一项很有前景的技术。尽管针对提高膜效率开展了大量基础研究,但要将研究工作扩大规模进行现场测试仍需付出巨大努力。挑战在于在整个运行过程中确保膜的稳定性,同时维持其高性能。本综述阐述了聚合物技术在二氧化碳分离应用中的关键挑战,重点关注塑化和老化问题。首先对当前商用聚合物膜的性能和局限性进行了简要介绍。本综述讨论了天然气中各增塑剂成分对膜性能的影响以及操作条件与膜效率之间的关系。重点介绍了近期在克服塑化和老化问题方面的技术进步和技术,包括聚合物改性、高自由体积聚合物、聚合物共混和促进传递膜(FTM)。我们还对聚合物膜相关研究的几个主要特点和未来发展方向发表了看法。未来的研究必须强调按照真实天然气情况,研究含二氧化碳的混合气体,包括少量可冷凝污染物,以确定其对二氧化碳渗透率和膜选择性的竞争吸附效应。为满足大规模应用的需求,应特别关注孔堵塞、塑化和老化的影响。

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