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Effects of Additives on the Morphology and Performance of PPTA/PVDF in Situ Blend UF Membrane

机译:添加剂对原位共混超滤膜PPTA / PVDF形态和性能的影响

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Poly(p-phenylene terephtalamide) (PPTA), a high-performance polymer with high modulus and good hydrophilicity, is often used as a reinforced material. However, due to its high crystallity, micro-phase separation often occurs in the blends. In this paper, PPTA/poly(vinylidene fluoride) (PVDF) compatible blend solution was synthesized by in situ polycondensation. Blend ultra-filtration membrane was prepared through the immersion phase inversion process. In order to obtain desired pore structure, the effects of different additives including hydrophilic polymer (polyethylene glycol (PEG)), inorganic salt (lithium chloride (LiCl)) and the surfactant (Tween-80) on the morphology and performance of PPTA/PVDF blend membranes were studied. The membrane formation process was investigated through ternary phase diagram (thermodynamics) and viscosities (kinetics) analysis. It was found that, with the increasing of LiCl content, a porous membrane structure with long finger-like pores was formed due to the accelerated demixing process which resulted in the increase of porosity and pore diameter as well as the enhancement of water flux and the decline of PEG rejection. When Tween content increased to over 3 wt%, dynamic viscosity became the main factor resulting in a decreased phase separation rate. The transfer of PEG and LiCl molecules onto membrane surface increased the surface hydrophilicity. The effect of Tween content on membrane hydrophilicity was also correlated with the compatibility of blend components.
机译:聚对苯二甲酰对苯二酰胺(PPTA)是一种具有高模量和良好亲水性的高性能聚合物,通常被用作增强材料。然而,由于其高结晶度,在共混物中经常发生微相分离。通过原位缩聚反应合成了PPTA /聚偏二氟乙烯(PVDF)相容的共混溶液。共混超滤膜是通过浸渍相转化法制备的。为了获得所需的孔结构,包括亲水性聚合物(聚乙二醇(PEG)),无机盐(氯化锂(LiCl))和表面活性剂(Tween-80)在内的不同添加剂对PPTA / PVDF形态和性能的影响研究了共混膜。通过三元相图(热力学)和粘度(动力学)分析研究了膜的形成过程。结果发现,随着LiCl含量的增加,由于加速了混合过程,形成了具有长指状孔的多孔膜结构,从而导致孔隙率和孔径的增加,水通量的增​​加和流动性的增强。 PEG排斥的下降。当吐温含量增加至超过3wt%时,动态粘度成为导致相分离速率降低的主要因素。 PEG和LiCl分子在膜表面上的转移增加了表面亲水性。吐温含量对膜亲水性的影响还与共混物组分的相容性相关。

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