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The influence of phase inversion process modified by chemical reaction on membrane properties and morphology

机译:化学反应修饰的相转化过程对膜性能和形貌的影响

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In this study, the chemical reaction between acetic acid (CH_3COOH) used as non-solvent additive of casting solution and sodium carbonate (Na_2CO_3) dissolved in water as coagulant was employed to modify the classical phase inversion process. By means of this method, the polyethersulphone (PES) ultrafiltration (UF) membranes were prepared. The influence of acetic acid on the properties of the polymer solution was examined by viscometry and related to the morphology of the membrane prepared from the casting solution. The membranes were characterized in terms of the pure water flux, solute transport and field emission scanning electron microscope (FESEM) observation. It was found that chemical reaction between the additive and coagulant increases membrane permeability and mean pore size while maintaining the relatively narrow pore size distribution. FESEM images also confirmed that the chemical reaction contributes to suppress the formation of macrovoid and enhance the interconnectivity of pore. Furthermore, the potential mechanism of membrane formation influenced by chemical reaction was explored tentatively.
机译:在这项研究中,采用了用作铸造溶液非溶剂添加剂的乙酸(CH_3COOH)与溶解在水中作为凝结剂的碳酸钠(Na_2CO_3)之间的化学反应,以改进经典的相转化过程。通过这种方法,制备了聚醚砜(PES)超滤(UF)膜。通过粘度测定法检查了乙酸对聚合物溶液性能的影响,该影响与由流延溶液制备的膜的形态有关。通过纯水通量,溶质迁移和场发射扫描电子显微镜(FESEM)观察对膜进行表征。发现添加剂与凝结剂之间的化学反应增加了膜的渗透性和平均孔径,同时保持了相对窄的孔径分布。 FESEM图像还证实了化学反应有助于抑制大孔隙的形成并增强孔的互连性。此外,还初步探讨了受化学反应影响的膜形成的潜在机理。

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