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Systematic hydrolysis of PIM-1 and electrospinning of hydrolyzed PIM-1 ultrafine fibers for an efficient removal of dye from water

机译:pIm-1的系统水解和水解pIm-1超细纤维的静电纺丝,可有效去除水中的染料

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摘要

In this study, the Polymer of Intrinsic Microporosity (PIM-1) was systematically hydrolyzed in the presence of sodium hydroxide by varying the concentration of base, washing procedure and the time of the reaction. The chemical structure analyses confirmed that PIM-1 could be hydrolyzed by 65% up to 99% conversion depending on the synthesis procedure. The hydrolyzed PIM-1 samples have shown improved solubility which facilitates the fabrication of hydrolyzed PIM-1 ultrafine fibers by electrospinning technique. Extensive optimization studies were performed for the electrospinning of uniform and bead-free fibers from hydrolyzed PIM-1 with different degree of hydrolysis (65%, 86%, 94% and 99%). The electrospun hydrolysed PIM-1fibrous samples have average fiber diameters (AFD) ranging from 0.58±0.15 μm to 1.21±0.15 μm, depending on the polymer concentration and applied electrospinning parameters. After electrospinning, self-standing hydrolyzed PIM-1 fibrous membranes were obtained which is useful as a filtering material for the adsorption of organic dyes from wastewater. Here, the capability of hydrolyzed PIM-1 electrospun fibrous membranes for the removal of dyes from aqueous solutions was investigated by using a batch adsorption process. The maximum adsorption capacity of fully hydrolyzed PIM-1 fibers was found 157±16 mg g-1 for Methylene Blue and 4 mg g-1 for Congo Red when the adsorption was conducted by 20 mg L-1 dye solution without using any dilution. Moreover, maximum dye adsorption was also studied by using concentrated Methylene Blue solutions showing up to 272 mg g-1 adsorption maximum. In addition, the self-standing fibrous hydrolyzed PIM-1 membrane was employed to separate Methylene Blue from an aqueous system by filtration without the necessity of additional driving force. The results indicate that hydrolyzed PIM-1 electrospun nanofibrous membranes can be a promising filtering material for wastewater treatment.
机译:在这项研究中,通过改变碱的浓度,洗涤程序和反应时间,在氢氧化钠存在下,本征微孔聚合物(PIM-1)被系统地水解。化学结构分析证实,取决于合成程序,PIM-1可以被65%水解,最高可转化为99%。水解的PIM-1样品显示出改善的溶解度,这有助于通过电纺丝技术制造水解的PIM-1超细纤维。对来自不同水解度(65%,86%,94%和99%)的水解PIM-1的均匀无珠纤维的静电纺丝进行了广泛的优化研究。电纺水解的PIM-1纤维样品的平均纤维直径(AFD)为0.58±0.15μm至1.21±0.15μm,具体取决于聚合物浓度和应用的电纺参数。静电纺丝后,获得了自立式水解PIM-1纤维膜,可作为过滤材料从废水中吸附有机染料。在此,采用间歇吸附法研究了水解的PIM-1电纺纤维膜从水溶液中去除染料的能力。当在不使用任何稀释度的情况下用20 mg L-1染料溶液进行吸附时,发现完全水解的PIM-1纤维的最大吸附容量对亚甲基蓝为157±16 mg g-1,对刚果红为4 mg g-1。此外,还通过使用显示最大272 mg g-1吸附最大值的浓亚甲基蓝溶液研究了最大的染料吸附。此外,采用自立式纤维水解PIM-1膜通过过滤将亚甲基蓝从水性体系中分离出来,而无需额外的驱动力。结果表明,水解的PIM-1电纺纳米纤维膜可以作为一种有前途的废水处理过滤材料。

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