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Hydrophilic microporous PES membranes prepared by PES/PEG/DMAc casting solutions

机译:通过PES / PEG / DMAc流延溶液制备的亲水性微孔PES膜

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Microporous poly(ether sulfones) (PES) membranes were prepared via phase inversion using poly (ethylene glycol) (PEG) as additive and N,N-dimethylacetamide (DMAc) as solvent. Thermodynamic of the casting solutions was studied by coagulation value while precipitation rate was observed by light transmittance measurement. It was found that casting solution with PEG200 as additive was thermodynamically less stable than those with PEG400 and PEG600 as additive and easier to cause phase separation in exposure time. With the increase of PEG200 concentration, the casting solution became thermodynamically less stable and easier to cause phase separation in exposure time, but precipitation rate during immersion precipitation decreased because of the increased viscosities. ATR-FTIR spectra and TGA curves showed that the membranes prepared using PEG200 as additive had less PEG residual than those of PEG400 and PEG600, but it showed better permeation performance than that prepared using PEG400 and PEG600 as additive. With the increase of PEG200 concentration from 30 to 70 wt %, the cross section structure changed from macrovoid to sponge-like, micropores with a mean pore size around 0.1 mu m began to form on the top surface. When the PEG200 concentration is 60 wt %, the pure water flux was 1845 L M 2 h(-1) bar, which is the highest value. As the PEG200 concentration increased from 30 to 60 wt %, the contact angles decreased from 82.1 degrees to 58.2 degrees. As the addition amount of PEG200 increased, the residual PEG made the prepared membranes more hydrophilic. (c) 2007 Wiley Periodicals, Inc.
机译:使用聚(乙二醇)(PEG)作为添加剂和N,N-二甲基乙酰胺(DMAc)作为溶剂,通过相转化制备微孔聚(醚砜)(PES)膜。通过凝结值研究浇铸溶液的热力学,同时通过透光率测量观察沉淀速率。发现以PEG200为添加剂的浇铸溶液在热力学上比以PEG400和PEG600为添加剂的浇铸溶液在热力学上较不稳定,并且更容易引起曝光时间的相分离。随着PEG200浓度的增加,流延溶液在热力学上变得不稳定,并且更容易在曝光时间内引起相分离,但是由于粘度增加,浸没沉淀过程中的沉淀速率降低。 ATR-FTIR光谱和TGA曲线表明,使用PEG200作为添加剂制备的膜的PEG残留量低于PEG400和PEG600,但其渗透性能优于使用PEG400和PEG600作为添加剂的膜。随着PEG 200浓度从30wt%增加到70wt%,横截面结构从大孔隙变为海绵状,平均孔径在0.1μm左右的微孔开始在顶表面上形成。当PEG200浓度为60wt%时,纯水通量为1845L M 2 h(-1)bar,这是最高值。随着PEG200浓度从30wt%增加到60wt%,接触角从82.1度减小到58.2度。随着PEG200的添加量增加,残留的PEG使制备的膜更亲水。 (c)2007年Wiley Periodicals,Inc.

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