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具有轻质功能化多壁碳纳米管纳米填料的正向渗透膜。

Forward osmosis membrane with lightweight functionalised multiwall carbon nanotube nanofillers.

作者信息

Wu Z, Sewwandi B V N, Chen Xing, Perera G, Jayarathna L, Jayasundara A C A, Weerasooriya Rohan

机构信息

Centre for Water Quality Research, National Institute of Fundamental Studies, Kandy, Sri Lanka.

Ministry of Water Supply, China and Sri Lanka Joint Research and Demonstration Centre for Water Technology, Peradeniya, Sri Lanka.

出版信息

Environ Technol. 2025 Apr;46(9):1507-1518. doi: 10.1080/09593330.2024.2401644. Epub 2024 Sep 16.

Abstract

Thin-film nanocomposite (TFN) membranes with a polyamide (PA) active layer modified with carbon nanotubes (CNTs) hold promise for water desalination and wastewater reuse via forward osmosis (FO). We hypothesise that modifying the PA active layer with hydroxyl-functionalised multi-wall carbon nanotubes (f-MWCNTs) will enhance the water flux of the FO membrane while maximising salt rejection. TFN membranes were modified using in situ interfacial polymerisation, with varying f-MWCNT mass content to minimise agglomeration. These modified FO membranes are designated as CTFN-x, where x represents the mass content of f-MWCNTs, ranging from 0.001%, CTFN-1 to 0.008%, CTFN-8 (w/v). The surface properties of CTFN-x were characterised using electron microscopy, atomic force microscopy, and molecular spectroscopy. IR spectroscopic data confirm the successful adherence of f-MWCNTs as a bridging agent between the 1,3-phenylenediamine (MPD) and trimesoyl chloride (TMC) polymers, preserving FO membrane integrity. The CTFN-4 FO membrane shows the highest water flux (29 LMH) and the lowest reverse salt flux (2.90 gHM), attributed to preferential water flow channels in the f-MWCNTs. The integration of f-MWCNTs into the active layer improved water flux, reduced reverse salt flux, and enhanced the antifouling properties of FO membranes.

摘要

具有用碳纳米管(CNT)改性的聚酰胺(PA)活性层的薄膜纳米复合(TFN)膜有望通过正向渗透(FO)实现水脱盐和废水回用。我们假设用羟基官能化的多壁碳纳米管(f-MWCNT)改性PA活性层将提高FO膜的水通量,同时使盐分截留率最大化。使用原位界面聚合对TFN膜进行改性,改变f-MWCNT的质量含量以最小化团聚。这些改性的FO膜被指定为CTFN-x,其中x代表f-MWCNT的质量含量,范围从0.001%(CTFN-1)到0.008%(CTFN-8,w/v)。使用电子显微镜、原子力显微镜和分子光谱对CTFN-x的表面性质进行了表征。红外光谱数据证实f-MWCNT作为1,3-苯二胺(MPD)和均苯三甲酰氯(TMC)聚合物之间的桥接剂成功附着,保持了FO膜的完整性。CTFN-4 FO膜显示出最高的水通量(29 LMH)和最低的反向盐通量(2.90 gHM),这归因于f-MWCNT中的优先水流通道。将f-MWCNT整合到活性层中提高了水通量,降低了反向盐通量,并增强了FO膜的抗污染性能。

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