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银-氧化锌聚酰胺薄膜复合膜的防污性能及对2-氯苯酚和2,4-二氯苯酚的截留率

Antifouling Properties of Silver-Zinc Oxide Polyamide Thin Film Composite Membrane and Rejection of 2-Chlorophenol and 2,4-Dichlorophenol.

作者信息

Kotlhao Kate, Lawal Isiaka A, Moutloali Richard M, Klink Michael J

机构信息

Faculty of Applied and Computer Sciences, Department of Chemistry, Vaal University of Technology, Private Bag X021, Vanderbijlpark 1900, South Africa.

Faculty of Science, Department of Applied Chemistry, University of Johannesburg, P.O. Box 17011, Doornfontein, Johannesburg 2028, South Africa.

出版信息

Membranes (Basel). 2019 Aug 5;9(8):96. doi: 10.3390/membranes9080096.

Abstract

The silver-zinc oxide (Ag-ZnO) polyamide thin film composite (PA-TFC) membrane was prepared by interfacial polymerization. The Ag-ZnO/PA-TFC membrane was characterized by attenuated total reflectance fourier-transform infrared spectroscopy (ATR-FTIR) for polyamide functional groups and contact angle for surface hydrophilicity. The Ag-ZnO/PA-TFC membrane was further characterized by Scanning Electron Microscopy (SEM) and Atomic Force Microscopy (AFM) for morphology and surface roughness, respectively. The performance of the fabricated membrane was investigated using pure water flux, permeability, rejection, flux recovery, and fouling resistance using low molecular weight organic pollutants, 2-chlorophenol (2-CP) and 2,4-dichlorophenol (2,4-DCP). The results were compared to the neat (PA-TFC) membrane. It was observed that incorporation of Ag-ZnO nanocomposites into the PA-TFC membrane improved hydrophilicity, permeation, rejection, and fouling resistance properties of the membrane. The contact angle decreased from 62.8° to 54° for PA-TFC and the Ag-ZnO/PA-TFC membrane, respectively. The presence of Ag-ZnO enhanced permeability of the membrane from 0.9 (Lmhbar) to 1.9 (Lmhbar). Modification of the membrane with Ag-ZnO further showed an enhanced rejection of 2-CP and 2,4-DCP from 43% to 80% and 58% to 85%, respectively. The 2,4-DCP molecules were rejected more than 2-CP due to enhanced repulsive forces from the extra Cl ion. A high flux recovery of about 95% was achieved for the modified membrane compared to 64% for the neat membrane. The improved flux recovery was an indication of enhanced antifouling propensity.

摘要

通过界面聚合制备了银-氧化锌(Ag-ZnO)聚酰胺薄膜复合(PA-TFC)膜。采用衰减全反射傅里叶变换红外光谱(ATR-FTIR)对Ag-ZnO/PA-TFC膜的聚酰胺官能团进行表征,采用接触角对其表面亲水性进行表征。分别利用扫描电子显微镜(SEM)和原子力显微镜(AFM)对Ag-ZnO/PA-TFC膜的形态和表面粗糙度进行进一步表征。使用纯水通量、渗透率、截留率、通量恢复率以及对低分子量有机污染物2-氯酚(2-CP)和2,4-二氯酚(2,4-DCP)的抗污染性能来研究制备膜的性能。将结果与纯(PA-TFC)膜进行比较。观察到将Ag-ZnO纳米复合材料掺入PA-TFC膜中可改善膜的亲水性、渗透性、截留率和抗污染性能。PA-TFC膜和Ag-ZnO/PA-TFC膜的接触角分别从62.8°降至54°。Ag-ZnO的存在使膜的渗透率从0.9(Lm/hbar)提高到1.9(Lm/hbar)。用Ag-ZnO对膜进行改性后,对2-CP和2,4-DCP的截留率进一步提高,分别从43%提高到80%和从58%提高到85%。由于额外的Cl离子增强了排斥力,2,4-DCP分子比2-CP分子被截留得更多。改性膜实现了约95%的高通量恢复率,而纯膜为64%。通量恢复率的提高表明抗污染倾向增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ede/6723071/621708c9fa44/membranes-09-00096-sch001.jpg

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