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离子液体膜在 CO、CH、N、H 或这些气体混合物从各种气流中的气体分离过程中的主要应用和潜在限制。

Key Applications and Potential Limitations of Ionic Liquid Membranes in the Gas Separation Process of CO, CH, N, H or Mixtures of These Gases from Various Gas Streams.

机构信息

Department of Chemical Engineering, College of Engineering, Qatar University, Doha P.O. Box 2713, Qatar.

Center for Advanced Materials, Qatar University, Doha P.O. Box 2713, Qatar.

出版信息

Molecules. 2020 Sep 18;25(18):4274. doi: 10.3390/molecules25184274.

Abstract

Heightened levels of carbon dioxide (CO) and other greenhouse gases (GHGs) have prompted research into techniques for their capture and separation, including membrane separation, chemical looping, and cryogenic distillation. Ionic liquids, due to their negligible vapour pressure, thermal stability, and broad electrochemical stability have expanded their application in gas separations. This work provides an overview of the recent developments and applications of ionic liquid membranes (ILMs) for gas separation by focusing on the separation of carbon dioxide (CO), methane (CH), nitrogen (N), hydrogen (H) or mixtures of these gases from various gas streams. The three general types of ILMs, such as supported ionic liquid membranes (SILMs), ionic liquid polymeric membranes (ILPMs), and ionic liquid mixed-matrix membranes (ILMMMs) for the separation of various mixed gas systems, are discussed in detail. Furthermore, issues, challenges, computational studies and future perspectives for ILMs are also considered. The results of the analysis show that SILMs, ILPMs, and the ILMMs are very promising membranes that have great potential in gas separation processes. They offer a wide range of permeabilities and selectivities for CO, CH, N, H or mixtures of these gases. In addition, a comparison was made based on the selectivity and permeability of SILMs, ILPMs, and ILMMMs for CO/CH separation based on a Robeson's upper bound curves.

摘要

二氧化碳(CO)和其他温室气体(GHGs)水平的升高促使人们研究它们的捕获和分离技术,包括膜分离、化学循环和低温蒸馏。由于离子液体的蒸气压可忽略不计、热稳定性和广泛的电化学稳定性,它们在气体分离中的应用得到了扩展。

本工作通过重点介绍从各种气流中分离二氧化碳(CO)、甲烷(CH)、氮气(N)、氢气(H)或这些气体的混合物,综述了离子液体膜(ILM)在气体分离方面的最新进展和应用。详细讨论了用于分离各种混合气体系统的三种一般类型的 ILM,即支撑离子液体膜(SILM)、离子液体聚合物膜(ILPM)和离子液体混合基质膜(ILMMM)。此外,还考虑了 ILM 的问题、挑战、计算研究和未来展望。

分析结果表明,SILM、ILPM 和 ILMMM 是非常有前途的膜,在气体分离过程中有很大的潜力。它们为 CO、CH、N、H 或这些气体的混合物提供了广泛的渗透性和选择性。此外,还根据 Robeson 上限曲线,基于 SILM、ILPM 和 ILMMM 对 CO/CH 分离的选择性和渗透性进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6027/7570638/912821947ff7/molecules-25-04274-g001.jpg

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