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制备 ZnO/y-FeOOH 纳米粒子嵌入在聚对苯二甲酸乙二醇酯膜上:评估抗污染行为和 COD 去除。

Fabrication of ZnO/y-FeOOH nanoparticles embedded on the polyethylene terephthalate membrane: Evaluation of antifouling behavior and COD removal.

机构信息

Environmental Science and Technology Research Center, Department of Environmental Health Engineering, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

Center for Healthcare Modeling, Department of Biostatistics and Epidemiology, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

出版信息

Environ Sci Pollut Res Int. 2022 Sep;29(44):67014-67025. doi: 10.1007/s11356-022-18965-x. Epub 2022 May 5.

Abstract

Nanofiltration contributes to the development of advanced treatment of wastewater. An antifouling mixed matrix recycled polyethylene terephthalate (rPET) membrane modified by the hydrophilic ZnO/y-FeOOH nanoparticles (NPs) was fabricated via the electrospinning method. The effect of ZnO/y-FeOOH NP embedded in rPET as a modifier on the fabrication of nanocomposite membranes was investigated regarding water flux, membrane morphology, permeability, fouling resistance, and COD removal. The surface morphology of the rPET-ZnO/y-FeOOH membrane was evaluated by field emission scanning electron microscopy (FESEM), energy-dispersive X-ray spectroscopy (EDS), X-ray diffraction (XRD), water contact angle (WCA), and porosity and pore structure.Due to the embedding of NPs, the resulting rPET-ZnO/y-FeOOH membrane, with a low WCA of 53.404° angle, conforms significantly improved hydrophilicity and water permeation flux. The FESEM image displayed the distribution of cuboidal and needle-like ZnO and FeOOH NPs on the rPET membrane. The performance of the nanofiltration system related to the removal efficiency of COD was studied. It was deduced that the rPET-ZnO/y-FeOOH membrane had a superior COD removal capability (95.7%) at a pressure of 2 bar. Protein rejection tests were performed on antifouling behavior. The nanocomposite membrane with a high antifouling capability was related to 0.5 wt·% ZnO/y-FeOOH NPs (flux recovery ratio [FRR] = 96.2%, R = 90.21%, and R = 3.001%). The modification procedure in this study (as a great improving technique) was proposed to fabricate the antifouling nanofiltration membrane.

摘要

纳滤有助于废水的深度处理。通过静电纺丝法制备了一种亲水性 ZnO/y-FeOOH 纳米颗粒(NPs)修饰的抗污染混合基质回收聚对苯二甲酸乙二醇酯(rPET)膜。研究了作为改性剂的 rPET 中嵌入的 ZnO/y-FeOOH NP 对纳米复合膜制备的影响,包括水通量、膜形貌、渗透性、抗污染性和 COD 去除率。通过场发射扫描电子显微镜(FESEM)、能谱(EDS)、X 射线衍射(XRD)、水接触角(WCA)和孔隙率及孔径结构评价 rPET-ZnO/y-FeOOH 膜的表面形貌。由于 NPs 的嵌入,所得 rPET-ZnO/y-FeOOH 膜具有低 WCA(53.404°),表现出显著提高的亲水性和水渗透通量。FESEM 图像显示了 rPET 膜上立方体形和针状 ZnO 和 FeOOH NPs 的分布。研究了纳滤系统与 COD 去除效率的关系。推断 rPET-ZnO/y-FeOOH 膜在 2 巴压力下具有优异的 COD 去除能力(95.7%)。进行了抗污染行为的蛋白质截留测试。具有高抗污染能力的纳米复合膜与 0.5wt·% ZnO/y-FeOOH NPs 有关(通量恢复率[FRR]=96.2%,R=90.21%,R=3.001%)。本研究中的改性程序(作为一种很好的改进技术)被提出用于制备抗污染纳滤膜。

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