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Pore morphology control and hydrophilicity of polyacrylonitrile ultrafiltration membranes

机译:聚丙烯腈超滤膜的孔隙形貌控制和亲水性

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摘要

The effects of different solvents (dimethyl formamide: DMF and dimethylsulfoxide: DMSO) on the solubility of polyacrylonitrile (PAN) were investigated by the phase diagrams of H2O/DMF/PAN and H2O/DMSO/PAN ternary systems through cloud-point titration method at low polymer concentration. The influences of polymer concentrations and temperatures on the morphologies of PAN ultrafiltration membranes were elucidated. The morphologies of fabricated UF membranes were characterized by scanning electron microscopy (SEM) and atomic force microscope (AFM), and the basic performance of ultrafiltration including pure water flux and rejection of BSA were explored. At 25 degrees C, the pure water flux of ultrafiltration membranes at the lower PAN content (16 wt % PAN in 84 wt % DMSO) reached 213.8 L/m/bar and the rejection of BSA was 100%. Interestingly, the water flux of UF membranes dramatically decreased to 20.6 L/m/bar (20 wt %) and 2.9 L/m/bar (24 wt %) when increasing PAN concentrations in DMSO. On the other hand, the hydrophilicity of membranes can be enhanced by increasing coagulation temperatures and polymer concentrations which were characterized by static contact angle, fitting well with the variation tendency of roughness. Although there are many works concerning on the effects of phase inversion conditions on the performance of PAN UF membranes, to our best knowledge, there is seldom works focusing on investigating the membrane hydrophilicity trend by adjusting phase inversion conditions. To disclose the reason of the enhanced hydrophilicity, the water and glycol contact angles of various membranes were measured and the surface tensions were presented. The results illustrated that the enhanced hydrophilicity of PAN UF membranes fabricated at higher temperatures or higher polymer concentrations was due to the higher polarity on membrane surface. Since the vast majority of ultrafiltration membranes in labs and in industrial scale have been fabricated by immersion phase inversion method, this work can provide a guidance to obtain hydrophilic PAN UF membranes by adjusting the process of phase inversion. (c) 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 41991.
机译:通过H2O / DMF / PAN和H2O / DMSO / PAN三元体系的相图,通过浊点滴定法在90℃下研究了不同溶剂(二甲基甲酰胺:DMF和二甲基亚砜:DMSO)对聚丙烯腈(PAN)溶解度的影响。低聚合物浓度。阐明了聚合物浓度和温度对PAN超滤膜形态的影响。用扫描电子显微镜(SEM)和原子力显微镜(AFM)对超滤膜的形貌进行表征,探讨了超滤的基本性能,包括纯净水通量和BSA的截留率。在25摄氏度时,较低PAN含量(84 wt%DMSO中的16 wt%PAN)的超滤膜的纯水通量达到213.8 L / m / bar,BSA的截留率为100%。有趣的是,当增加DMSO中的PAN浓度时,超滤膜的水通量急剧下降至20.6 L / m / bar(20 wt%)和2.9 L / m / bar(24 wt%)。另一方面,可以通过提高凝结温度和以静态接触角为特征的聚合物浓度来提高膜的亲水性,从而很好地适应粗糙度的变化趋势。尽管有许多关于相转化条件对PAN UF膜性能影响的研究,但据我们所知,很少有研究着重于通过调节相转化条件来研究膜的亲水性趋势。为了揭示提高亲水性的原因,测量了各种膜的水和乙二醇接触角,并给出了表面张力。结果表明,在较高温度或较高聚合物浓度下制备的PAN UF膜亲水性增强是由于膜表面极性较高。由于实验室和工业规模的绝大多数超滤膜都是通过浸入式相转化法制备的,因此这项工作可以为通过调整相转化工艺获得亲水性PAN UF膜提供指导。 (c)2015 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,41991。

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