膜
共聚物
三聚氰胺
聚酰亚胺
气体分离
酸性气体
天然气
材料科学
化学工程
高分子化学
胺气处理
选择性
聚合物
化学
有机化学
催化作用
图层(电子)
生物化学
工程类
作者
Yi Ren,Patrick T. Wright,Zhongyun Liu,Shijie Yang,Lu Lu,John Y. Yang,Xuezhen Wang,Sheng Guo
标识
DOI:10.1002/advs.202416109
摘要
Abstract Membrane‐based gas separation provides an energy‐efficient approach for the simultaneous CO 2 and H 2 S removal from sour natural gas. The fluorinated polyimide (PI) membranes exhibited a promising balance between permeability and permselectivity for sour natural gas separation. To further improve the separation efficiency of fluorinated PI membranes, a melamine‐copolymerization synthetic approach is devised that aims to incorporate melamine motifs with high sour gas affinity into the structure of the PI membranes. The fluorinated copolyimide membranes that are structurally engineered exhibited excellent solution‐processability and enhanced sweet‐mixed gas selectivity compared to their original PI membranes. Additionally, under a five‐component sour mixed‐gas feed, these melamine‐copolymerized fluorinated PI membranes provided superior combined H 2 S and CO 2 removal efficiency in comparison to conventional glassy polymer membranes. The melamine‐copolymerization strategy provides an easily operable and generally effective approach to developing performance‐enhancing PI membranes for sour natural gas separation.
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