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将二氧化钛纳米颗粒与正向渗透膜MEMO-PMMA-Br单体链结合以增强过滤和抗污染性能。

Binding TiO nanoparticles to forward osmosis membranes MEMO-PMMA-Br monomer chains for enhanced filtration and antifouling performance.

作者信息

Xue Wenchao, Sint Kaung Ko Ko, Ratanatamskul Chavalit, Praserthdam Piyasan, Yamamoto Kazuo

机构信息

Department of Environmental Engineering, Faculty of Engineering, Chulalongkorn University 254 Phayathai Road, Patumwan Bangkok 10330 Thailand

Department of Energy, Environment, and Climate Change, School of Environment, Resources, and Development, Asian Institute of Technology Pathumthani 12120 Thailand

出版信息

RSC Adv. 2018 May 23;8(34):19024-19033. doi: 10.1039/c8ra03613f. eCollection 2018 May 22.

Abstract

Forward osmosis (FO) has attracted increasing interest in various applications for water and wastewater treatment and reuse. However, drawbacks caused by its lower-than-expected flux performance and fouling issues remain bottlenecks that limit the wider applications of FO technology. In this research, titanium dioxide (TiO) nanoparticles were grafted onto two commercially available FO membranes, a cellulose triacetate (CTA) membrane and an aquaporin (AqP) membrane, through a specially designed 3-(trimethoxysilyl)propyl methacrylate-polymethyl methacrylate-bromide (MEMO-PMMA-Br) monomer chain, to improve the filtration performance with regard to pure water flux and organic fouling resistance. The success of the surface coating method was verified using FT-IR, SEM-EDX, and AFM. Approximately 30% titanium coverage was obtained for both FO membranes. A reduction of the contact angle on the modified CTA membrane surface indicated enhanced water permeability and antifouling performance. An adverse effect on the surface hydrophilicity of the modified AqP membrane may be attributed to the obstruction of aquaporins from the feed solution due to the coverage of MEMO-PMMA-Br monomers and TiO nanoparticles. The pure water flux of both membranes was significantly improved, with average flux increases of 73.4% and 13.6% identified for the modified CTA and AqP membranes, respectively. In addition, the antifouling performance of the AqP membrane was greatly enhanced after surface modification, attributed to the integrated effects of foulant photodegradation (catalyzed by TiO nanoparticles at the interface) and the prevention of functional water channels being blocked by organic foulants due to TiO coverage.

摘要

正向渗透(FO)在水和废水处理及回用的各种应用中已引起越来越多的关注。然而,其通量性能低于预期以及污垢问题所带来的缺点仍然是限制FO技术更广泛应用的瓶颈。在本研究中,通过一种特殊设计的甲基丙烯酸3-(三甲氧基甲硅烷基)丙酯-聚甲基丙烯酸甲酯-溴化物(MEMO-PMMA-Br)单体链,将二氧化钛(TiO₂)纳米颗粒接枝到两种市售的FO膜上,即三醋酸纤维素(CTA)膜和水通道蛋白(AqP)膜上,以提高纯水通量和抗有机污垢方面的过滤性能。使用傅里叶变换红外光谱(FT-IR)、扫描电子显微镜-能谱仪(SEM-EDX)和原子力显微镜(AFM)验证了表面涂层方法的成功。两种FO膜均获得了约30%的钛覆盖率。改性CTA膜表面接触角的减小表明其水渗透性和抗污垢性能增强。改性AqP膜表面亲水性的不利影响可能归因于MEMO-PMMA-Br单体和TiO₂纳米颗粒的覆盖阻碍了进料溶液中的水通道蛋白。两种膜的纯水通量均显著提高,改性CTA膜和AqP膜的平均通量分别提高了73.4%和13.6%。此外,表面改性后AqP膜的抗污垢性能大大增强,这归因于污垢光降解(由界面处的TiO₂纳米颗粒催化)以及TiO₂覆盖防止有机污垢堵塞功能性水通道的综合作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9a8/9080677/428704edd925/c8ra03613f-f1.jpg

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