首页> 外文期刊>The Korean journal of chemical engineering >Morphologies and separation characteristics of polyphenylsulfone-based solvent resistant nanofiltration membranes: Effect of polymer concentration in casting solution and membrane pretreatment condition
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Morphologies and separation characteristics of polyphenylsulfone-based solvent resistant nanofiltration membranes: Effect of polymer concentration in casting solution and membrane pretreatment condition

机译:聚苯砜基耐溶剂纳米过滤膜的形貌和分离特性:流延溶液中聚合物浓度和膜预处理条件的影响

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摘要

The performance of polyphenylsulfone (PPSU) solvent resistant nanofiltration (SRNF)-based flat sheet membranes prepared from phase inversion method was investigated by varying the concentration of polymer in the dope solution and condition of membrane pretreatment process. The membrane properties were characterized by SEM, FTIR, AFM and contact angle goniometer, while their performance was evaluated by measuring methanol flux and rejection of different molecular weight of dyes (ranging from 269 to 1,470 g/mol) in methanol. The experimental results showed that the polymer concentration has great impact not only on the final membrane morphology but also its separation characteristics. Increasing polymer concentration from 17 to 25 wt% tended to suppress finger-like structure and more pear-like pores were developed, causing methanol flux to decrease. This can be explained by the decrease in molecular weight cut off (MWCO) of the membrane prepared at high polymer concentration. With respect to the effect of membrane pretreatment conditions, the rejection of membrane was negatively affected with longer immersion period in methanol solution prior to filtration experiment The variation in membrane rejection can be attributed to the rearrangement of the polymer chain, which results in membrane swelling and/or change of membrane surface hydrophilicity.
机译:通过改变涂料溶液中聚合物的浓度和膜预处理工艺的条件,研究了用相转化法制备的聚苯砜(PPSU)耐溶剂纳滤(SRNF)基平板膜的性能。通过SEM,FTIR,AFM和接触角测角仪对膜的性能进行了表征,同时通过测量甲醇通量和不同分子量的染料(269至1,470 g / mol)在甲醇中的截留率来评估其性能。实验结果表明,聚合物浓度不仅对最终膜的形态有很大影响,而且对分离特性也有很大影响。将聚合物浓度从17wt%增加到25wt%趋于抑制手指状结构,并且形成更多的梨状孔,导致甲醇通量降低。这可以通过在高聚合物浓度下制备的膜的分子量截留值(MWCO)降低来解释。就膜预处理条件的影响而言,在过滤实验之前,将膜的截留率受到在甲醇溶液中浸泡更长的时间的负面影响。膜截留率的变化可归因于聚合物链的重排,从而导致膜膨胀和/或改变膜表面的亲水性。

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