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采用负载质子离子液体改性的新型聚醚砜纳滤膜的设计及其在染料/盐去除方面的抗污染性能。

Design of a new polyethersulfone nanofiltration membrane with anti-fouling properties using supported protic ionic liquid modification for dye/salt removal.

机构信息

Health Research Center, Life Style Institute, Baqiyatallah University of Medical Sciences, Tehran, Iran.

Department of Environmental Health Engineering, School of Public Health, Baqiyatallah University of Medical Sciences, Tehran, Iran.

出版信息

Water Environ Res. 2023;95(1):e10829. doi: 10.1002/wer.10829.

Abstract

Facile techniques to fabricate the nanofiltration membranes with ideal molecular sieving is one of the most interesting subjects in membrane separation technology. In this study, the application of modified graphene oxide (GO) with triethylenetetramine (TETA), CuFe O , and acetic acid (AC) (supported GO-TETA-CuFe O @AC) as a supported protic ionic liquid (PIL) modifier for polyethersulfone (PES) membrane was evaluated to approve the improvement of anti-fouling properties and wastewater rejection of the fabricated membranes. To enhance the key properties of graphene oxide, it was modified by hydrophilic nanomaterials (TETA-CuFe O ). High flux and promising flux recovery ratio (up to 95% compared to the unmodified membrane) can be observed in the modified membranes. The modified membranes by GO-TETA-CuFe O @AC were studied at optimum concentrations (0.5 wt.%) for salt rejection and different dyes. The obtained data indicated that the modified membranes by GO-TETA-CuFe O @AC indicated higher salt removal (up to 97% for BaCl than the unmodified membrane), which was related to the efficient modification. The obtained pure water flux (PWF) for bare and optimal modified membrane from 13.11 to 27.87 kg/m ·h, respectively. To exact evaluate the effect of membrane modification on performance examination, the modified membranes were evaluated for chlorine resistance testing. This study aimed to develop cost-effective nanofiltration (NF) membranes with high anti-fouling properties and to determine the maximum filtration capacity of in-time dyes and salts in effluents. PRACTITIONER POINTS: A GO-TETA-CuFe2O4 mixed matrix membrane was prepared for removal of salts and dyes. The effect of GO-TETA-CuFe2O4 enhanced the hydrophilicity and porosity. The membrane exhibited superior antifouling properties and ions rejection.

摘要

制备具有理想分子筛的纳滤膜的简易技术是膜分离技术中最有趣的课题之一。在这项研究中,评估了用三乙烯四胺(TETA)、CuFe O 和乙酸(AC)改性的氧化石墨烯(GO)(负载 GO-TETA-CuFe O @AC)作为质子离子液体(PIL)改性剂在聚醚砜(PES)膜中的应用,以证实所制备膜的抗污染性能和废水截留率的提高。为了增强氧化石墨烯的关键性能,用亲水性纳米材料(TETA-CuFe O )对其进行了改性。在改性膜中可以观察到通量的提高和有希望的通量恢复率(与未改性膜相比高达 95%)。在最佳浓度(0.5wt.%)下,用 GO-TETA-CuFe O @AC 对改性膜进行了盐截留和不同染料的研究。获得的数据表明,GO-TETA-CuFe O @AC 改性膜对盐的去除率更高(与未改性膜相比,BaCl 的去除率高达 97%),这与有效的改性有关。裸膜和最佳改性膜的纯水通量(PWF)分别从 13.11 增加到 27.87kg/m·h。为了确切评估膜改性对性能测试的影响,对改性膜进行了耐氯性测试。本研究旨在开发具有高抗污染性能的具有成本效益的纳滤(NF)膜,并确定废水中染料和盐的最大过滤能力。

要点

制备了 GO-TETA-CuFe2O4 混合基质膜,用于去除盐和染料。GO-TETA-CuFe2O4 的增强作用提高了亲水性和孔隙率。膜表现出优异的抗污染性能和离子截留性能。

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