School of Civil and Transportation Engineering, Hebei University of Technology, Tianjin 300401, PR China.
School of Civil and Transportation Engineering, Hebei University of Technology, Tianjin 300401, PR China.
Water Res. 2024 Jun 15;257:121745. doi: 10.1016/j.watres.2024.121745. Epub 2024 May 7.
Polyester-amide (PEA) thin film composite (TFC) NF membranes have rapidly evolved towards a competitive performance, benefiting from their remarkable antifouling capability and superior chlorine resistance. In this report, a new concept of synergistic interfacial polymerization is explored, which promptly triggers the reaction between hydramines and trimesoyl chloride (TMC) in the presence of a trace amount of diamines. This rapid-start mode enables the formation of defect-free PEA films without the requirement of catalysis. A comprehensive characterization of physicochemical properties using high-resolution mass spectrometer (HRMS) reveals that the recombination and formation of a "hydramine-diamine" coupling unit plays a decisive role in activating the synergistic interfacial polymerization reaction with TMC molecules. Taking the pair of serinol and piperazine (PIP) as an example, the PEA-NF membrane fabricated with 0.1 w/v% serinol mixed with 0.04 w/v% PIP as water-soluble monomer and 0.1 w/v% TMC as oil phase monomer was found to have a pure water permeability (PWP) of 18.5 L·m·h·bar and a MgSO rejection of 95.5 %, which surpasses almost all the reported PEA NF membranes. Findings of the current research provide more possibilities for the low-cost and rapid synthesis of high-performance PEA membranes aiming for water purification.
聚酰胺-胺(PEA)薄膜复合(TFC)纳滤膜因其优异的抗污染性能和卓越的耐氯性能,迅速发展成为一种具有竞争力的性能。在本报告中,探索了协同界面聚合的新概念,即在痕量二胺存在下,水合胺与均苯三甲酰氯(TMC)之间迅速引发反应。这种快速启动模式能够在无需催化的情况下形成无缺陷的 PEA 薄膜。使用高分辨率质谱仪(HRMS)对物理化学性质进行全面表征表明,“水合胺-二胺”偶联单元的重组和形成在激活与 TMC 分子的协同界面聚合反应中起着决定性作用。以丝氨酸和哌嗪(PIP)为例,用 0.1 w/v%丝氨酸与 0.04 w/v%哌嗪作为水溶性单体和 0.1 w/v% TMC 作为油相单体共混制备的 PEA-NF 膜,纯水透过率(PWP)为 18.5 L·m·h·bar,硫酸镁截留率为 95.5%,超过了几乎所有报道的 PEA NF 膜。本研究的结果为低成本、快速合成用于水净化的高性能 PEA 膜提供了更多的可能性。