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

材料科学 化学工程 聚合物 聚乙二醇 相位反转 聚合物混合物 高分子化学 肺表面活性物质 界面聚合 共聚物 复合材料 化学 单体 生物化学 工程类
作者
Hongbin Li,Wenying Shi,Yufeng Zhang,Dongqing Liu,Xiaofeng Liu
出处
期刊:Polymers [MDPI AG]
卷期号:6 (6): 1846-1861 被引量:88
标识
DOI:10.3390/polym6061846
摘要

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.

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