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Highly permeable and highly selective ultrathin film composite polyamide membranes reinforced by reactable polymer chains

机译:高可渗透和高精度的超薄膜复合聚酰胺膜通过可反应的聚合物链增强

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摘要

This study reports highly permeable ultrathin film composite (uTFC) membranes whose rejection layer was reinforced by polymer chains during the interfacial polymerization of trimesoyl chloride (TMC) and m-phenylenediamine (MPD) to achieve enhanced salt rejection. A rejection layer of approximately 20 nm was formed at an MPD concentration of 0.01 wt%. This reinforced membrane had a water permeability of about 16.7 L/(m(2) h bar), while exhibiting an improved divalent salt (Na2SO4) to monovalent salt (NaCl) selectivity compared with the control TFC membrane without reinforcement (3.44 vs. 1.06). The role of the reactable polymer chains in interfacial polymerization was discussed as MPD adsorbent and reactant, according to the measurements by quartz crystal microbalance and X-ray photoelectron spectroscopy. This work provides a new pathway for the design and construction of uniform ultrathin layers as well as the preparation of high performance separation membranes. (C) 2019 Elsevier Inc. All rights reserved.
机译:该研究报告了高度渗透性超薄膜复合(UTFC)膜,其在Timesoyl氯化物(TMC)和M-苯二胺(MPD)的界面聚合过程中通过聚合物链增强了聚合物链,以实现增强的盐排斥。以0.01wt%的MPD浓度形成约20nm的排斥层。该增强膜的水渗透性为约16.7升/(m(2)H棒),同时与无增强的对照TFC膜相比,将改善的二价盐(Na 2 SO 4)与单价盐(Na 2 SO 4)进行相比(3.44 Vs. 1.06 )。根据石英晶体微稳定和X射线光电子能谱的测量,讨论了可随从的聚合物链在界面聚合中的作用作为MPD吸附剂和反应物。这项工作为均匀超薄层的设计和构建提供了一种新的途径以及高性能分离膜的制备。 (c)2019 Elsevier Inc.保留所有权利。

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