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Effect of volatile solvent and evaporation time on formation and performance of PVC/PVC-g-PEGMA blended membranes

机译:挥发性溶剂和蒸发时间对PVC / PVC-g-PEGMA共混膜形成和性能的影响

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In order to further improve the performances of fabricated PVC/PVC- graft -poly(ethylene glycol) methyl ether methacrylate (PVC/PVC- g -PEGMA) blended membranes, we investigated the inner connections between affecting parameters during preparation and membrane performances. Two parameters including the composition of casting solutions and the solvent evaporation time were selected. In this study, PVC/PVC- g -PEGMA blended membranes were prepared by non-solvent induced phase separation (NIPS) using 1-methyl-2-pyrrolidinone (NMP) and tetrahydrofuran (THF) as mixing solvents. We found that (1) the membrane morphologies like surface pore size and porosity decreased as the ratio of THF to NMP increased, which resulted in the decrease in pure water flux and the increase of sodium alginate (SA) rejection ratio; (2) the presence of THF in the casting solution could significantly lower the membrane surface roughness compared to only using NMP as a solvent; (3) solvent evaporation for an appropriate time increased the hydrophilicity of the membrane. Among these findings, we achieved a membrane exhibiting the highest flux recovery ratio of 98.65 ± 0.85% with a mixing ratio of 1?:?9 (THF?:?NMP) at 60 s of evaporation time. High pollutant rejection and high flux recovery ratio were achieved. This study provides more insight into the PVC/PVC- g -PEGMA membrane and a more flexible approach to the application of PVC membranes.
机译:为了进一步改善所制备的PVC / PVC-接枝-聚(乙二醇)甲基丙烯酸甲酯(PVC / PVC-g-PEGMA)共混膜的性能,我们研究了制备过程中影响参数与膜性能之间的内在联系。选择包括浇铸溶液的组成和溶剂蒸发时间的两个参数。在这项研究中,通过使用1-甲基-2-吡咯烷酮(NMP)和四氢呋喃(THF)作为混合溶剂的非溶剂诱导相分离(NIPS)制备了PVC / PVC-g -PEGMA共混膜。我们发现:(1)随着THF与NMP的比例增加,膜的形貌如表面孔径和孔隙率降低,这导致纯净水通量降低,藻酸钠(SA)截留率提高。 (2)与仅使用NMP作为溶剂相比,在浇铸溶液中存在THF可显着降低膜表面粗糙度; (3)溶剂蒸发适当的时间增加了膜的亲水性。在这些发现中,我们获得了一种膜,在60 s的蒸发时间下,其通量回收率最高,为98.65±0.85%,混合比为1:∶9(THF:2:NMP)。实现了高污染物截留率和高通量回收率。这项研究为PVC / PVC-g -PEGMA膜提供了更多的见识,并为PVC膜的应用提供了更灵活的方法。

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