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通过纳米多孔钛酸盐纳米颗粒对薄膜复合膜进行表面改性以提高有机和无机联合抗污染性能

Surface modification of thin film composite membrane by nanoporous titanate nanoparticles for improving combined organic and inorganic antifouling properties.

作者信息

Emadzadeh D, Ghanbari M, Lau W J, Rahbari-Sisakht M, Rana D, Matsuura T, Kruczek B, Ismail A F

机构信息

Department of Chemical Engineering, Gachsaran Branch, Islamic Azad University, Gachsaran, Iran; Industrial Membrane Research Laboratory, Department of Chemical and Biological Engineering, University of Ottawa, 161 Louis Pasteur St, Ottawa, ON K1N 6N5, Canada.

Advanced Membrane Technology Research Centre (AMTEC), Universiti Teknologi Malaysia, 81310 Skudai, Johor, Malaysia.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Jun 1;75:463-470. doi: 10.1016/j.msec.2017.02.079. Epub 2017 Feb 21.

DOI:10.1016/j.msec.2017.02.079
PMID:28415486
Abstract

In this study, nanoporous titanate (NT) nanoparticle synthesized by the solvothermal method was used to modify polyamide layer of thin film composite membranes with the aim of improving membrane resistances against organic and inorganic fouling. Thin film nanocomposite membranes (NMs) were synthesized by adding mNTs (modified nanoparticles) into polyamide selective layer followed by characterization using different analytical instruments. The results of XPS and XRD confirmed the presence of mNTs in the polyamide layer of NMs, while FESEM, AFM, zeta potential and contact angle measurement further supported the changes in physical and chemical properties of the membrane surface upon mNTs incorporation. Results of fouling showed that NM1 (the membrane incorporated with 0.01w/v% mNTs) always demonstrated lower degree of flux decline compared to the control membrane when membranes were tested with organic, inorganic and multicomponent synthesized water, brackish water or seawater. Besides showing greater antifouling resistance, the NM also displayed significantly higher water flux compared to the control M membrane. The findings of this work confirmed the positive impact of mNTs in improving the properties of NM with respect to fouling mitigation and flux improvement.

摘要

在本研究中,采用溶剂热法合成的纳米多孔钛酸盐(NT)纳米颗粒对复合薄膜的聚酰胺层进行改性,旨在提高膜对有机和无机污垢的抗性。通过将改性纳米颗粒(mNTs)添加到聚酰胺选择层中来合成薄膜纳米复合膜(NMs),随后使用不同的分析仪器进行表征。XPS和XRD结果证实了NMs聚酰胺层中存在mNTs,而FESEM、AFM、zeta电位和接触角测量进一步支持了在掺入mNTs后膜表面物理和化学性质的变化。污垢实验结果表明,当用有机、无机和多组分合成水、微咸水或海水对膜进行测试时,NM1(掺入0.01w/v% mNTs的膜)与对照膜相比,通量下降程度始终较低。除了表现出更大的抗污性外,NM与对照M膜相比,水通量也显著更高。这项工作的结果证实了mNTs在改善NM的抗污和通量方面性能的积极影响。

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