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Preparation and hydrophilicity study of poly(vinyl butyral)-based ultrafiltration membranes

机译:聚乙烯醇缩丁醛基超滤膜的制备及亲水性研究

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Poly(vinyl butyral) (PVB)-based ultrafiltration membranes were prepared by immersion-precipitation in water coagulation bath. The effects of different factors, such as PVB concentration, scraper clearance, water temperature and especially solvent nature on the performance of final membranes were extensively investigated. The toplayer formation mechanism of the PVB membranes prepared in four different PVB-solvent-water systems was discussed. By comparison with poly(ether sulfone) (PES), the hydrophilicity of PVB was also studied. Experimental results showed that PVB-based ultrafiltration membranes with an asymmetric structure were successfully prepared by the observations of scanning electron microscope (SEM). The formation of the toplayer of the PVB membranes above-mentioned from different solvents was the result of the combination of the equilibrium thermodynamics and membrane formation kinetics, whereas, the sublayer of those membranes was dominated by the diffusion rate of solvent-nonsolvent. The permeability and separation performance of the final PVB membranes could be adjusted under different preparation conditions. PVB-PES blends were the nonmiscible systems, and the increase in mass ratio of PVB in the components decreased the surface contact angle of the resulting PVB-PES composite membranes from 81.0° to 76.6°. In phase diagram, the width of the liquid-liquid homogeneous region of the PES-DMAC-water system was very close to but slightly smaller than that of the PVB-DMAC-water system, which indicated that PVB was a little more hydrophilic than PES while in solution.
机译:聚乙烯醇缩丁醛(PVB)基超滤膜是通过在水凝固浴中浸没沉淀而制备的。广泛研究了PVB浓度,刮板清除率,水温,尤其是溶剂性质等不同因素对最终膜性能的影响。讨论了在四种不同的PVB-溶剂-水系统中制备的PVB膜的竞争形成机理。通过与聚醚砜(PES)的比较,还研究了PVB的亲水性。实验结果表明,通过扫描电镜观察,成功制备了不对称结构的基于PVB的超滤膜。上面提到的PVB膜由不同的溶剂形成,是平衡热力学和膜形成动力学相结合的结果,而这些膜的亚层则主要是由溶剂-非溶剂的扩散速率决定的。最终PVB膜的渗透性和分离性能可以在不同的制备条件下进行调节。 PVB-PES共混物是不可混溶的体系,组分中PVB的质量比的增加将所得PVB-PES复合膜的表面接触角从81.0°降低到76.6°。在相图中,PES-DMAC-水系统的液-液均匀区域的宽度非常接近但略小于PVB-DMAC-水系统的宽度,这表明PVB的亲水性比PES略高在解决方案中。

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