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亲水空心纳米立方体形功能化薄膜纳米复合膜,具有增强的纳滤性能。

Hydrophilic Hollow Nanocube-Functionalized Thin Film Nanocomposite Membrane with Enhanced Nanofiltration Performance.

机构信息

Key Laboratory of New Membrane Materials, Ministry of Industry and Information Technology, School of Environment and Biological Engineering , Nanjing University of Science and Technology , Nanjing 210094 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Feb 6;11(5):5344-5352. doi: 10.1021/acsami.8b19121. Epub 2019 Jan 23.

Abstract

The performance of thin film nanocomposite (TFN) membrane is significantly determined by the inherent structure and composition of the incorporated nanofillers. In this work, hydrophilic hollow nanocubes (HHNs) derived from zeolitic imidazolate framework 8 (ZIF-8) were incorporated into the polyamide layer via an interfacial polymerization approach. The HHNs with abundant hydroxyl groups on the surface were obtained by etching solid ZIF-8 using tannic acid. Benefiting from the hydrophilicity, hollow structure, and negative charge of HHNs, the outstanding nanofiltration performance of the composite membrane was achieved. With the assistance of HHNs, the permeance and NaSO rejection of the TFN membrane increased up to 19.4 ± 0.6 L/(m·h·bar) and 95.2 ± 1.4%, corresponding to an improvement of 190% of the permeance and 2.0% of the rejection compared to the pristine thin film composite membrane. Comparatively, the performance of TFN membranes prepared with solid ZIF-8 only shows 116% improvements of the permeance with slightly increased salt rejection. More importantly, the antifouling property of the TFN-4H membrane was also elevated. The flux recovery ratios of the TFN-4H membrane are 93.2 and 84.7% corresponding to humic acid and bovine serum albumin solutions, respectively. The results indicate that the nanofiltration performance of the composite membrane was significantly enhanced with the incorporation of HHNs.

摘要

薄膜纳米复合(TFN)膜的性能主要由所掺入的纳米填料的固有结构和组成决定。在这项工作中,通过界面聚合的方法将来源于沸石咪唑酯骨架 8(ZIF-8)的亲水性中空纳米立方体制备到聚酰胺层中。通过使用单宁酸刻蚀 ZIF-8 得到表面富含羟基的中空纳米立方。受益于 HHNs 的亲水性、中空结构和负电荷,复合膜具有出色的纳滤性能。在 HHNs 的辅助下,TFN 膜的渗透性能和 NaSO 截留率分别提高了 19.4±0.6 L/(m·h·bar)和 95.2±1.4%,与原始的薄膜复合膜相比,渗透性能提高了 190%,截留率提高了 2.0%。相比之下,仅用 ZIF-8 制备的 TFN 膜的性能仅显示出渗透性能提高了 116%,盐截留率略有增加。更重要的是,TFN-4H 膜的抗污染性能也得到了提高。TFN-4H 膜的通量恢复率分别为 93.2%和 84.7%,对应于腐殖酸和牛血清白蛋白溶液。结果表明,通过掺入 HHNs,复合膜的纳滤性能得到了显著提高。

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