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Preparation and characterization of polyethersulfone hollow fiber nanofiltration membranes made from PES/NMP/PEG 400/WATER

机译:PES / NMP / PEG 400 / WATER制备的聚醚砜中空纤维纳滤膜的制备与表征

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摘要

The objective of this study is to develop nanofiltration hollow fiber membrane from a sophisticated multi component spinning dope. Polyethersulfone (PES) asymmetric nanofiltration (NF) hollow fibers membranes were prepared by a simple dry/wet phase inversion process from spinning solution consisted of N-Methyl-2-Pyrrolidone (NMP), Polyethylene-glycol (PEG 400) as polymeric additive and pure water as a non-solvent additive. These fibers have been produced from a newly developed spinning solution with a mass ratio of 21.34/31.22/10.2/7.24 (PES/NMP/PEG/water). The dope formulation was designed to be very close to its cloud point (binodal line) in order to speed up the coagulation of the nascent fibers so that the relaxation effect on molecular orientation is reduced. Sodium chloride solution was used to determine the rejection rate of the membranes. In order to achieve high performance NF membranes, the effects of shear rate on the separation performance of NF hollow fiber membrane were studied. Thus, different dope extrusion rate (DER) ranging from 2.0 to 3.5 cm3/min were used to produce the fibers. The results are used to correlate the relationship between DER and the separation performance (rejection) of the membrane. Experimental results show a significant effect of extrusion shear on the rejection rate of the membranes. As the shear rate was increased, the rejection increased until a certain level, before the rejection decreases. Finally, the optimum shear rate was observed in this study and it was about 2.5 cm3/min. In conclusion, we demonstrated that increasing the shear rate (DER) experienced by the spinning solution during membrane fabrication increased the molecular orientation and this had favorable effect on membrane rejection.
机译:这项研究的目的是从复杂的多组分纺丝原液开发出纳滤中空纤维膜。通过简单的干/湿相转化工艺,由N-甲基-2-吡咯烷酮(NMP),聚乙二醇(PEG 400)作为聚合物添加剂和自旋溶液,通过简单的干/湿相转化工艺制备了聚醚砜(PES)不对称纳滤(NF)中空纤维膜。纯水作为非溶剂添加剂。这些纤维由新开发的纺丝溶液生产,质量比为21.34 / 31.22 / 10.2 / 7.24(PES / NMP / PEG /水)。将涂料配方设计为非常接近其浊点(双曲线),以加快新生纤维的凝结,从而降低对分子取向的松弛作用。用氯化钠溶液确定膜的排斥率。为了获得高性能的NF膜,研究了剪切速率对NF中空纤维膜分离性能的影响。因此,使用范围为2.0至3.5cm 3 / min的不同浓液挤出速率(DER)来生产纤维。该结果用于使DER与膜的分离性能(排斥)之间的关系相关。实验结果表明,挤出剪切对膜的截留率有显着影响。随着剪切速率的增加,拒绝率会增加直到一定水平,然后拒绝率才降低。最后,在本研究中观察到最佳剪切速率,约为2.5 cm3 / min。总之,我们证明了在膜制造过程中增加纺丝溶液的剪切速率(DER)会增加分子的取向,这对膜截留率具有有利的影响。

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