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Enhanced permeability and fouling-resistant capacity of poly(vinylidene fluoride) ultrafiltration membrane based on the PPG-co-PEG-co-PPG copolymer with two hydrophobic terminals and one hydrophilic intermediate

机译:基于PPG-Co-Co-Co-PPG共聚物的PPG-Co-Co-PPG共聚物和一种亲水性中间体的增强渗透性和抗渗滤能力增强了聚(偏二氟乙烯)超滤膜的渗透性和抗污垢能力

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摘要

A simple and efficient route was used to prepare an amphiphilic copolymer (poly(propylene glycol)co-poly(ethylene glycoh-co-poly(propylene glycol)) (PPG-co-PEG-co-PPG) by one-pot polymerization reaction. This copolymer was used as the hydrophilic additive in preparation of poly(vinylidene fluoride) (PVDF) ultrafiltration membranes via immersion-precipitation process. Surface characteristics of the membranes were confirmed by contact angle measurements, zeta potential, attenuated total reflectance Fourier transform infrared spectroscopy, X-ray photoelectron spectroscopy, scanning electron microscopy and atomic force microscopy. During filtration experiments, the modified membranes showed better permeation and antifouling performances compared to PVDF membranes with bovine serum albumin, sodium alginate and yeast. After hydraulic stirring cleaning with deionized water, water flux recovery and rejection ratio of the modified membranes were higher than those of pristine PVDF membrane, and the flux recovery ratio was maximized at 94.29%. It was suggested that PPG-co-PEG-co-PPG copolymer was anchored in the PVDF membrane through the two hydrophobic ends of PPG blocks, while the hydrophilic intermediate of the PEG block segregated onto the membrane or pore surface during the membrane preparation process. The synthesized method of amphiphilic PPG-co-PEG-co-PPG copolymer paved a novel way to solve the problems of less compatibility between the copolymer and membrane matrix and instability with water molecules in the ultrafiltration process.
机译:使用简单且有效的途径通过单盆聚合反应制备两亲共聚物(聚(丙二醇)共聚物(聚(丙二醇)共聚物(聚(丙二醇)共聚物(聚(丙二醇)共聚(乙二醇))(PPG-Co-PEG-CO-PPG) 。该共聚物通过浸渍沉淀过程用作制备聚(偏二氟乙烯)(PVDF)超滤膜的亲水性添加剂。通过接触角测量,Zeta电位,衰减总反射率傅里叶变换红外光谱法确认膜的表面特性,X射线光电子体光谱,扫描电子显微镜和原子力显微镜。在过滤实验期间,与牛血清白蛋白,海藻酸钠和酵母钠的PVDF膜相比,改性膜显示出更好的渗透和防污性能。用去离子水清洗液压搅拌后,改性膜的水通量回收和排斥比高于原始PVDF膜,和磁通回收率最大化为94.29%。建议将PPG-Co-PEG-Co-PPG共聚物通过PPG嵌段的两个疏水末端锚定,而PEG块的亲水中间体在膜制备过程中被隔离在膜或孔表面上。两亲性PPG-Co-Co-Co-Co-PPG共聚物的合成方法铺成了一种新的方法来解决共聚物和膜基质之间不太相容性的问题,并且在超滤过程中用水分子不稳定。

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