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使用 UiO-66-NH 预沉积聚酰胺膜提高水透过率和去除 EDCs。

Enhanced water permeance and EDCs rejection using a UiO-66-NH-predeposited polyamide membrane.

机构信息

State Key Laboratory of Separation Membranes and Membrane Processes/ National Center for International Joint Research on Separation Membranes, Tiangong University, Tianjin, 300387, China; School of Environmental Science and Engineering, Tiangong University, Tianjin, 300387, China.

State Key Laboratory of Separation Membranes and Membrane Processes/ National Center for International Joint Research on Separation Membranes, Tiangong University, Tianjin, 300387, China; School of Environmental Science and Engineering, Tiangong University, Tianjin, 300387, China.

出版信息

Chemosphere. 2023 Jan;312(Pt 1):137114. doi: 10.1016/j.chemosphere.2022.137114. Epub 2022 Nov 2.

Abstract

Endocrine disrupting compounds (EDCs) have been increasingly detected in drinking water sources, and pose severe threat to human health. Polyamide (PA) based nanofiltration (NF) membrane has great potential for EDCs removal from water, but the removal of hydrophobic EDCs is not satisfying due to strong hydrophobic affinity. In this study, UiO-66-NH/PA membranes were prepared by predepositing hydrophilic UiO-66-NH onto the substrate prior to interfacial polymerization. The UiO-66-NH aggregates increased the permeable area and strengthened the "gutter effect". Therefore, the pure water flux of UiO-66-NH/PA increased by 115% compared with that of the thin-film composite (TFC) membrane, and its rejection of NaSO was 96%. The hydrophilicity-enhanced PA film reduced its adsorption of EDCs and decreased the driving force for EDCs diffusion. Moreover, the UiO-66-NH-induced hydrophilic nanochannels, including the interfacial gaps between PA film and UiO-66-NH aggregates, the gaps in UiO-66-NH aggregates, and the inherent pores in UiO-66-NH crystals, alleviated the hydrophobic affinity and effectively restricted EDCs diffusion. The rejection rates of methylparaben, propylparaben, bisphenol A, and benzylparaben by the optimal UiO-66-NH/PA were 50%, 67%, 75%, and 85%, respectively, and the water/benzylparaben selectivity was 4.4 times as high as that of TFC. The results demonstrate that incorporating hydrophilic metal-organic frameworks (MOFs) can improve the membrane hydrophilicity and create hydrophilic nanochannels, and is an effective strategy to enhance EDCs removal by nanofiltration.

摘要

内分泌干扰物 (EDCs) 在饮用水源中被越来越多地检出,对人类健康构成严重威胁。基于聚酰胺 (PA) 的纳滤 (NF) 膜在去除水中 EDCs 方面具有巨大潜力,但由于强疏水性亲和力,对疏水性 EDCs 的去除效果并不理想。在这项研究中,UiO-66-NH/PA 膜是通过在界面聚合前预先将亲水性 UiO-66-NH 沉积在基底上来制备的。UiO-66-NH 聚集体增加了可渗透面积并增强了“沟渠效应”。因此,与薄膜复合 (TFC) 膜相比,UiO-66-NH/PA 的纯水通量增加了 115%,对 NaSO 的截留率为 96%。增强亲水性的 PA 膜减少了 EDCs 的吸附,降低了 EDCs 扩散的驱动力。此外,UiO-66-NH 诱导的亲水性纳米通道,包括 PA 膜和 UiO-66-NH 聚集体之间的界面间隙、UiO-66-NH 聚集体中的间隙以及 UiO-66-NH 晶体中的固有孔,减轻了疏水性亲和力并有效地限制了 EDCs 的扩散。最优 UiO-66-NH/PA 对甲基对羟基苯甲酸酯、对羟基苯甲酸丙酯、双酚 A 和对羟基苯甲酸苄酯的截留率分别为 50%、67%、75%和 85%,水/对羟基苯甲酸苄酯的选择性是 TFC 的 4.4 倍。结果表明,引入亲水性金属-有机骨架 (MOFs) 可以提高膜的亲水性并产生亲水性纳米通道,是增强纳滤去除 EDCs 的有效策略。

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