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Glass transition behaviors of interfacially polymerized polyamide barrier layers on thin film composite membranes via nano-thermal analysis

机译:纳米热分析法研究薄膜复合膜上界面聚合聚酰胺阻隔层的玻璃化行为

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摘要

Thin film composite (TFC) reverse osmosis (RO) membranes enjoy widespread use in desalination, but their sensitivity to oxidizing agents such as chlorine remains a continuing challenge. In contrast to many reports on the chemical aspects associated with decreased membrane performance after chlorine exposure, studies on the fundamental physical properties of the polyamide barrier layer (PBL) of TFC membranes are scarce. This omission is mostly due to the lack of techniques capable of characterizing such interfacially polymerized PBLs, which are ultrathin and insoluble. The focus of this study is the development of an AFM-based nano-thermal analysis technique that provides the first-ever result for the direct measurement of the glass transition temperature (Tg) of the PBL on several commercial TFC RO membranes. Moreover, the technique is utilized to study the changes in Tg of the PBL after exposure to chlorine solutions as a function of concentration and duration at constant pH. Results indicate significant and systematic reduction in Tg of the PBL with increasing chlorine concentration and exposure time.
机译:薄膜复合(TFC)反渗透(RO)膜在海水淡化中得到广泛使用,但是它们对氧化剂(如氯)的敏感性仍然是一个持续的挑战。与许多与氯暴露后膜性能下降相关的化学方面的报道相反,对TFC膜的聚酰胺阻隔层(PBL)的基本物理性能的研究很少。这种遗漏主要是由于缺乏能够表征这种界面聚合的PBL(超薄且不溶)的技术。这项研究的重点是开发基于AFM的纳米热分析技术,该技术为直接测量几种商用TFC RO膜上PBL的玻璃化转变温度(Tg)提供了首个结果。此外,该技术用于研究在恒定的pH下暴露于氯溶液后PBL的Tg随浓度和持续时间的变化。结果表明,随着氯浓度和暴露时间的增加,PBL的Tg显着而系统地降低。

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