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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Novel thin film composite membrane containing ionizable hydrophobes: pH-dependent reverse osmosis behavior and improved chlorine resistance
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Novel thin film composite membrane containing ionizable hydrophobes: pH-dependent reverse osmosis behavior and improved chlorine resistance

机译:包含可离子化疏水物的新型薄膜复合膜:pH依赖的反渗透行为和改善的耐氯性

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摘要

New polyamide thin film composite membranes were prepared by interfacial polymerization of hexafluoroalcohol (HFA)-containing aromatic diamine and trimesoyl chloride (TMC) on a porous polysulfone support. The surface properties of the resulting membranes were characterized by water contact angle, XPS, and SEM. Additionally, the desalination separation performance was evaluated by the cross-flow filtration of 2000 ppm NaCl solution. Water contact angle and XPS analyses indicated that the HFA-containing polyamide membrane is relatively hydrophobic at neutral conditions but becomes hydrophilic at basic conditions due to ionization of the HFA groups, so we refer to this group as an "ionizable hydrophobe" or "i-phobe". The membrane showed strongly pH-dependent reverse osmosis behavior with enhanced performance (high water flux and high salt rejection) at high pH (ca. 10). Both the electron withdrawing nature and the steric bulkiness of the HFA functionality are also advantageous in protecting the polyamide membrane from chlorine attack. Based upon NMR studies of model polymers (linear polyamides with and without the HFA functionality) and the membrane performance measured before and after chlorine exposure, the HFA-containing polyamide has improved chlorine stability compared to the reference polyamide made from m-phenylenediamine and TMC.
机译:通过在多孔聚砜载体上界面聚合含六氟醇(HFA)的芳族二胺和均苯三甲酰氯(TMC),制备了新型聚酰胺薄膜复合膜。所得膜的表面性质通过水接触角,XPS和SEM表征。另外,通过2000ppm NaCl溶液的错流过滤来评价脱盐分离性能。水接触角和XPS分析表明,含HFA的聚酰胺膜在中性条件下相对疏水,但由于HFA基团的电离而在碱性条件下变为亲水性,因此我们将该基团称为“可电离的疏水物”或“ i- phobe”。该膜在高pH值(约10)下表现出强烈的pH依赖性反渗透行为,并具有增强的性能(高水通量和高盐分吸收率)。 HFA官能团的吸电子性质和空间体积都在保护聚酰胺膜不受氯侵蚀方面也是有利的。基于对模型聚合物(具有和不具有HFA官能度的线性聚酰胺)的NMR研究以及在氯暴露前后测量的膜性能,与由间苯二胺和TMC制成的参考聚酰胺相比,含HFA的聚酰胺具有更好的氯稳定性。

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