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Hydrophilic Dual Layer Hollow Fiber Membranes for Ultrafiltration

机译:用于超滤的亲水双层中空纤维膜

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摘要

In this study, a triblock copolymer was used as additive to fabricate new dual layer hollow fiber membranes with a hydrophilic active inner surface in order to improve their fouling resistance. The polymeric components of the solutions for membrane fabrication were poly(ether sulfone), poly( -vinyl pyrrolidone), and the triblock copolymer. The additive consists of three blocks: a middle hydrophobic poly(ether sulfone) block and two outer hydrophilic alkyl poly(ethylene glycol) blocks. By varying the additive concentration in the solutions, it was possible to fabricate dual layer hollow fiber membranes that are characterized by a hydrophilic inner layer, a pure water permeance of over 1800 L/(m bar h) and a molecular weight cut-off of 100 kDa similar to commercial membranes. Contact angle and composition determination by XPS measurements revealed the hydrophilic character of the membranes, which improved with increasing additive concentration. Rheological, dynamic light scattering, transmission, and cloud point experiments elucidated the molecular interaction, precipitation, and spinning behavior of the solutions. The low-molecular weight additive reduces the solution viscosity and thus the average relaxation time. On the contrary, slow processes appear with increasing additive concentration in the scattering data. Furthermore, phase separation occurred at a lower non-solvent concentration and the precipitation time increased with increasing additive content. These effects revealed a coupling mechanism of the triblock copolymer with poly( -vinyl pyrrolidone) in solution. The chosen process parameters as well as the additive solutions provide an easy and inexpensive way to create an antifouling protection layer in situ with established recipes of poly(ether sulfone) hollow fiber membranes. Therefore, the membranes are promising candidates for fast integration in the membrane industry.
机译:在该研究中,将三嵌段共聚物用作添加剂,以制造具有亲水活性内表面的新的双层中空纤维膜,以改善它们的污垢抗性。膜制造溶液的聚合物组分是聚(醚砜),聚( - 乙烯基吡咯烷酮)和三嵌段共聚物。添加剂由三个嵌段组成:中间疏水性聚(醚砜)嵌段和两个外亲水烷基聚(乙二醇)嵌段。通过改变溶液中的添加剂浓度,可以制造具有亲水内层的双层中空纤维膜,其具有超过1800升/(杆H)的纯净渗透率和分子量截止100 KDA类似于商业膜。通过XPS测量的接触角和组成测定揭示了膜的亲水性,随着添加剂浓度的增加而改善。流变,动态光散射,透射和浊点实验阐明了溶液的分子相互作用,沉淀和纺丝行为。低分子量添加剂降低了溶液粘度,从而降低了平均松弛时间。相反,随着散射数据中增加的添加剂浓度,显得缓慢的过程。此外,在较低的非溶剂浓度下发生相分离,并且随着添加剂含量的增加而增加沉淀时间。这些效果揭示了在溶液中具有聚( - 乙烯基吡咯烷酮)的三嵌段共聚物的偶联机理。所选择的工艺参数以及添加剂溶液提供了一种容易且廉价的方式,以利用聚(醚砜)中空纤维膜的建立的配方,以原位产生防污保护层。因此,膜是希望在膜工业中快速整合的候选人。

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