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静电纺丝壳聚糖纳米纤维构建超高水通量正渗透膜。

Electrospun chitosan nanofiber constructing superhigh-water-flux forward osmosis membrane.

作者信息

Zeng Wenchao, Yu Meiqiong, Lin Junkang, Huang Liulian, Li Jianguo, Lin Shan, Chen Lihui

机构信息

College of Material Engineering, Fujian Agriculture and Forestry University, Fuzhou 350108, China; National Forestry & Grassland Administration Key Laboratory for Plant Fiber Functional Materials, Fuzhou 350002, China.

College of Material Engineering, Fujian Agriculture and Forestry University, Fuzhou 350108, China; National Forestry & Grassland Administration Key Laboratory for Plant Fiber Functional Materials, Fuzhou 350002, China; School of Ocean Science and Biochemistry Engineering, Fujian Polytechnic Normal University, Fuqing 350300, China.

出版信息

Int J Biol Macromol. 2023 Jan 31;226:833-839. doi: 10.1016/j.ijbiomac.2022.12.052. Epub 2022 Dec 12.

Abstract

Forward osmosis (FO) technology exhibits great potential in seawater desalination and wastewater treatment due to its negligible energy consumption and high antifouling, however, the weak desalination capability, especially low water flux, remains challenging. Herein, a cost-effective and high-desalination-performance chitosan (CS)-based FO membrane is developed via coupling the electrospinning CS nanofibers and interfacial-polymerized polyamide (PA). The electrospun nanofibers construct the porous and hydrophilic CS layer with the large pore-diameter of ~274 nm and low thickness of ~10 μm, enabling the effective transport of water molecules, specifically, a superhigh water flux of 107.53 LMH at a low salt-water ratio of 0.24 g·L. In addition, such superior desalination performance of the as-prepared FO membrane is universal for the various salt species and concentrations. Our CS nanofiber-based membrane with the high separation capability of water-salt, desirable antibacterial activity, as well as the low cost, offers a roadmap toward the sustainable membrane materials.

摘要

由于能耗可忽略不计且具有高抗污染性,正向渗透(FO)技术在海水淡化和废水处理方面展现出巨大潜力,然而,其淡化能力较弱,尤其是水通量较低,仍然是一个挑战。在此,通过将静电纺丝的壳聚糖(CS)纳米纤维与界面聚合的聚酰胺(PA)相结合,开发出一种具有成本效益且具有高脱盐性能的基于壳聚糖(CS)的正向渗透膜。静电纺纳米纤维构建了具有约274nm大孔径和约10μm低厚度的多孔且亲水的CS层,能够实现水分子的有效传输,具体而言,在0.24g·L的低盐水比下具有107.53LMH的超高水通量。此外,所制备的正向渗透膜的这种优异脱盐性能对于各种盐类和浓度都是通用的。我们基于CS纳米纤维的膜具有高水盐分离能力、理想的抗菌活性以及低成本,为可持续膜材料提供了一条途径。

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