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Fabrication and modification of polysulfone nanofiltration membrane using organic acids: Morphology, characterization and performance in removal of xenobiotics

机译:使用有机酸的聚砜纳米过滤膜的制备和改性:异源生物的形态,表征和去除性能

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摘要

The effects of organic acids with different structures and acidic strengths on the preparation of polysulfone (PS) nanofiltration membranes were investigated in terms of membrane morphology, characteristics, permeation, and retention performance in separation of xenobiotics (2,4-dinitrophenol (DNP) and p-nitrophenol (PNP)) from aqueous media at different solution pHs. The prepared membranes were characterized by water contact angle and zeta potential measurements, SEM, AFM, FTIR-ATR, and dead-end nanofiltration. The water contact angle measurements prove that the hydrophilicity of PS membrane strongly increases by increasing of the concentration of additives in the casting solution. The SEM and AFM images declare that the membrane porosity increases and the pore size of the membranes decreases after addition of additives. The results show that addition of organic acids results in membranes with superior pure water flux and higher permeation and rejection compared to PS membrane. Also, it was found that rejection of DNP and PNP molecules strongly depends on the solution pH, structural properties of the solutes and characteristics of the membranes.
机译:从膜的形态,特性,渗透性以及异生物素(2,4-二硝基苯酚(DNP)和DNP)分离中的保留性能方面,研究了具有不同结构和酸性强度的有机酸对制备聚砜(PS)纳滤膜的影响。对硝基苯酚(PNP))在不同溶液pH下从水性介质中提取。通过水接触角和ζ电位测量,SEM,AFM,FTIR-ATR和末端纳米过滤对制备的膜进行表征。水接触角的测量证明,通过增加流延溶液中添加剂的浓度,可以大大提高PS膜的亲水性。 SEM和AFM图像表明添加添加剂后,膜的孔隙率增加,膜的孔径减小。结果表明,与PS膜相比,添加有机酸可使膜的纯净水通量更高,渗透和截留率更高。而且,发现DNP和PNP分子的排斥在很大程度上取决于溶液的pH,溶质的结构性质和膜的特性。

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