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The strategies of molecular architecture and modification of polyimide-based membranes for CO2 removal from natural gas-A review

机译:天然气中CO2脱除的聚酰亚胺基膜的分子结构和修饰策略-A综述

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摘要

Efficient separation technologies are required for the removal of carbon dioxide from natural gas streams. Membrane-based natural gas separation has emerged as one of the fastest growing technologies, due to the compactness, higher energy efficiency and economic advantages which can be reaped. However, the inadequacy of the existing polymeric membrane materials hinders the full exploitation of the application opportunities on the industrial scale. The two important identified challenges are: (1) achieving good gas selectivity without sacrificing gas permeability and (2) maintaining the long-term gas separation performance by overcoming the problems of aging and plasticization. In this article, an overview of the natural gas treatment is presented. Following which, the prevalent mechanisms for the transport of the gas molecules through glassy polyimide membranes are briefly discussed. The recent developments in polyimide molecular design and modification for the separation of carbon dioxide from natural gas are examined. In the light of the anticipated marked role of polyimides as eminent materials for natural gas purification, the future research directions to overcome the challenges are proposed.
机译:需要有效的分离技术以从天然气流中去除二氧化碳。基于膜的天然气分离已成为发展最快的技术之一,这归因于其紧凑性,更高的能源效率和可利用的经济优势。然而,现有聚合物膜材料的不足阻碍了在工业规模上充分利用应用机会。已确定的两个重要挑战是:(1)在不牺牲气体渗透性的情况下实现良好的气体选择性;(2)通过克服老化和塑化问题,保持长期的气体分离性能。在本文中,对天然气处理进行了概述。随后,简要讨论了气体分子通过玻璃状聚酰亚胺膜传输的普遍机理。研究了聚酰亚胺分子设计和改性技术从天然气中分离二氧化碳的最新进展。鉴于聚酰亚胺作为天然气净化的重要材料的预期显着作用,提出了克服挑战的未来研究方向。

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