聚酰胺
膜
纳滤
化学工程
材料科学
界面聚合
热稳定性
溶解
单体
复合数
氧化物
萃取(化学)
聚合
石墨烯
甲醇
渗透
原位聚合
高分子化学
多孔性
溶剂
热解
肿胀 的
膜技术
聚合物
煤
作者
Jinhua Meng,Yue Zhang,Xinao Tian,Pan Yan,Wen-Hai Zhang,Hong Meng
标识
DOI:10.1021/acs.iecr.5c05034
摘要
Coal thermal dissolution extraction is key for efficient conversion/utilization of low-rank coal, but its industrialization is limited by poor extraction product separation. However, commercial thin-film composite (TFC) polyamide membranes swell in organic solvents, compromising separation accuracy. To solve this, this study incorporated holey graphene oxide (HGO) into interfacial polymerization. HGO-modified polyamide composite membranes were prepared, and their feasibility in OSN was explored. HGO’s amphiphilicity and porous structure enhanced piperazine monomer diffusion kinetics/uniformity, improved polymerization cross-linking, and built an interpenetrating network with polyamide chains to inhibit membrane swelling in polar solvents. Experiments demonstrated that the modified membrane exhibited better structural stability in methanol and excellent small-molecule sieving in methanol systems simulating low-rank coal thermal dissolution extracts. This study fills the gap in HGO for organic OSN membranes, offers new insights for high-efficiency OSN membrane preparation, and facilitates the efficient separation of coal extraction products.
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