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Effective and reusable oil/water separation membranes based on modified polysulfone electrospun nanofiber mats

机译:基于改性聚砜电纺纳米纤维毡的有效且可重复使用的油水分离膜

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Membrane technology is the most promising process for oil/water separation operation if the hydrophi-licity, fouling and reusability properties could be improved. In this study, novel effective and reusable membrane for oil-water separation process is introduced based on modification of polysulfone (PSF) electrospun nanofiber mats. The modification process was achieved by incorporation of NaOH nanopar-ticles inside the PSF nanofibers, and formation of a thin layer from a polyamide polymer oh the surface of the electrospun mat. Typically, solutions composed of PSF and NaOH (twelve solutions were prepared based on different PSF concentrations; 15, 18 and 20wt%, and various NaOH content; 1.5, 1.7 and 2.5 wt%) have been electrospun, then the dried nanofiber mats were treated by m-phenylenediamine and 1,3,5-benzenetricarbonyl chloride to form polyamide thin layer on the surface of the mats. The results indicated that incorporation of NaOH and the formed polyamide could decrease the water contact angle from ~130° to 13° for the nanofiber mats obtained from 20 wt% PSF solutions containing 1.7 wt% sodium hydroxide. Interestingly, the membrane having the lowest contact angle could separate oil-water mixture for three successive cycles with complete removal of the oil at a relatively high water flux; 5.5 m~3/m~2 day. Overall, simplicity of the manufacturing technique, and effectiveness and reusability of the produced nanofiber mats open new avenue for the introduced electrospun mats as promising membranes for the oil-water separation process.
机译:如果可以改善疏水性,结垢性和可重复使用性,膜技术是油/水分离操作最有前途的工艺。在这项研究中,基于聚砜(PSF)电纺纳米纤维毡的改性,介绍了一种用于油水分离过程的新型有效且可重复使用的膜。改性过程是通过在PSF纳米纤维内部掺入NaOH纳米粒子,并在电纺垫的表面由聚酰胺聚合物形成薄层来实现的。通常,将由PSF和NaOH组成的溶液(根据不同的PSF浓度制备十二种溶液; 15、18和20wt%,以及各种NaOH含量; 1.5、1.7和2.5 wt%)进行电纺丝,然后对干燥的纳米纤维垫进行处理通过间苯二胺和1,3,5-苯三羰基氯在垫子的表面上形成聚酰胺薄层。结果表明,对于由含有1.7 wt%氢氧化钠的20 wt%PSF溶液获得的纳米纤维垫,NaOH和形成的聚酰胺的掺入可以将水接触角从〜130°降低到13°。有趣的是,具有最小接触角的膜可以在连续三个循环中分离出油水混合物,并以相对较高的水通量完全去除了油。 5.5 m〜3 / m〜2天。总体而言,制造技术的简便性以及所生产纳米纤维毡的有效性和可重复使用性为引入的电纺毡提供了新的途径,作为油水分离工艺中很有希望的膜。

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