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Effects of dissolution conditions on the properties of PVDF ultrafiltration membranes

机译:溶出条件对PVDF超滤膜性能的影响

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Poly (vinylidene fluoride) (PVDF) is an important membrane forming material for water treatment. Earlier works have shown that major morphological changes can be achieved when PVDF is dissolved under different conditions with practical applications in membrane distillation and protein attachment. However, no previous report has discussed the effects of dissolution conditions on the performance of PVDF under ultrafiltration, which is one of the most important applications of the polymer. In this work, four different PVDF ultrafiltration membranes were produced from dopes dissolved either by stirring at 24 degrees C, 90 degrees C, 120 degrees C or by sonication. It is shown that dope sonication results in membrane with enhanced thermal and mechanical stability, improved permeate flux during oil emulsion filtration and high flux recovery of similar to 63% after cleaning. As a comparison, flux recovery of only similar to 26% was obtained for the membrane produced from dope dissolved at 24 degrees C. The outstanding performance of the dope-sonicated membrane was linked to its slightly lower porosity, narrow distribution of small pores and relatively smooth skin layer. Performance parameters for all membranes showed good correlation to porosity suggesting a tool for membrane design achievable by simple variation in the mode of polymer dissolution. The polymer dissolution effect was related to the degree of unfolding of the polymer molecular chains and their entanglements.
机译:聚(偏二氟乙烯)(PVDF)是一种用于水处理的重要膜形成材料。早些时候有效表明,当PVDF在不同条件下溶解具有实际应用和蛋白质附着的实际应用时,可以实现重大形态变化。然而,之前没有讨论过溶解条件对超滤下PVDF性能的影响,这是聚合物最重要的应用之一。在这项工作中,通过在24℃,90℃,120℃或通过超声处理中通过搅拌溶解的掺杂剂产生四种不同的PVDF超滤膜。结果表明,膜超声导致膜具有增强的热和机械稳定性,在清洁后的油乳液过滤期间改善渗透助焊剂和高通量恢复。作为比较,仅获得与24摄氏度溶解的涂料产生的膜产生的膜的助焊剂恢复。涂料 - 超声膜的突出性能与其略低的孔隙率,狭窄的小孔隙分布和相对相对相关。光滑的皮肤层。所有膜的性能参数显示出与孔隙度的良好相关性,这表明通过在聚合物溶解模式下通过简单变化可实现的膜设计工具。聚合物溶解效应与聚合物分子链的展开程度及其缠结有关。

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