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Study of synthesis parameters and active layer morphology of interfacially polymerized polyamide-polysulfone membranes

机译:界面聚合聚酰胺-聚砜膜的合成参数和活性层形貌研究

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Thin film composite (TFC) polyamide membranes were prepared on a polysulfone support membrane and the effect of various synthesis conditions on the active layer morphology, the physicochemical properties and the membrane performance was investigated. The support membrane porosity factor had a significant effect on the TFC membrane performance. A polyamide top layer was formed within 15 s of reaction. Prolonging the reaction time, although resulting in a thicker active layer, only had a minor influence on the membrane performance. This highlights the importance of the incipient layer of the polyamide structure on its performance. The addition of both a surfactant and a base to the amine solution resulted in a change of the active layer morphology and an improved performance. The effect of additives was attributed to changes in the polymerization mechanism. In addition, it was demonstrated that curing at 50 degrees C resulted in an improved membrane performance, due to more cross-linking of the active layer. Curing at higher temperatures deteriorated the structure of the support membrane. This research shows that the TFC membrane performance is well correlated with the changes in the active layer morphology, measured using SEM, AFM and TEM; whereas only minor changes in the physicochemical characteristics of the membranes were detected by zeta potential and ATR-FTIR spectroscopy when the same synthesis parameters were varied. (C) 2014 Elsevier B.V. All rights reserved.
机译:在聚砜支撑膜上制备了薄膜复合(TFC)聚酰胺膜,研究了各种合成条件对活性层形貌,理化性质和膜性能的影响。支撑膜的孔隙率因素对TFC膜的性能有重大影响。在反应的15秒内形成聚酰胺顶层。延长反应时间,尽管会导致活性层变厚,但对膜性能的影响很小。这突出了聚酰胺结构起始层对其性能的重要性。向胺溶液中加入表面活性剂和碱均导致活性层形态的改变和性能的改善。添加剂的作用归因于聚合机理的变化。另外,已经证明,由于活性层的更多交联,在50℃下固化导致改善的膜性能。在较高温度下的固化使支撑膜的结构劣化。这项研究表明,使用SEM,AFM和TEM测量,TFC膜的性能与活性层形态的变化密切相关;而当相同的合成参数发生变化时,通过ζ电位和ATR-FTIR光谱只能检测到膜的理化特性发生微小变化。 (C)2014 Elsevier B.V.保留所有权利。

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