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亲水性纳米纤维作为用于工程渗透的薄膜复合膜的新型支撑体。

Hydrophilic nanofibers as new supports for thin film composite membranes for engineered osmosis.

机构信息

Department of Chemical and Biomolecular Engineering and Center for Environmental Sciences and Engineering, University of Connecticut, 191 Auditorium Road, Unit 3222, Storrs, Connecticut 06269-3222, United States.

出版信息

Environ Sci Technol. 2013 Feb 5;47(3):1761-9. doi: 10.1021/es304215g. Epub 2013 Jan 9.

Abstract

Engineered osmosis (e.g., forward osmosis, pressure-retarded osmosis, direct osmosis) has emerged as a new platform for applications to water production, sustainable energy, and resource recovery. The lack of an adequately designed membrane has been the major challenge that hinders engineered osmosis (EO) development. In this study, nanotechnology has been integrated with membrane science to build a next generation membrane for engineered osmosis. Specifically, hydrophilic nanofiber, fabricated from different blends of polyacrylonitrile and cellulose acetate via electrospinning, was found to be an effective support for EO thin film composite membranes due to its intrinsically wetted open pore structure with superior interconnectivity. The resulting composite membrane exhibits excellent permselectivity while also showing a reduced resistance to mass transfer that commonly impacts EO processes due to its thin, highly porous nanofiber support layer. Our best membrane exhibited a two to three times enhanced water flux and 90% reduction in salt passage when compared to a standard commercial FO membrane. Furthermore, our membrane exhibited one of the lowest structural parameters reported in the open literature. These results indicate that hydrophilic nanofiber supported thin film composite membranes have the potential to be a next generation membrane for engineered osmosis.

摘要

工程渗透(例如,正向渗透、压力延迟渗透、直接渗透)已经成为一个新的平台,可应用于水生产、可持续能源和资源回收。缺乏设计合理的膜一直是阻碍工程渗透(EO)发展的主要挑战。在这项研究中,纳米技术已经与膜科学相结合,为工程渗透制造下一代膜。具体来说,通过静电纺丝从不同比例的聚丙烯腈和醋酸纤维素制成的亲水性纳米纤维,由于其固有的润湿开放孔结构和卓越的连通性,被发现是 EO 薄膜复合膜的有效支撑体。由于其薄而高度多孔的纳米纤维支撑层,复合膜表现出优异的选择渗透性,同时也降低了通常影响 EO 过程的传质阻力。我们最好的膜与标准商业 FO 膜相比,水通量提高了两到三倍,盐通量降低了 90%。此外,我们的膜表现出文献中报道的最低结构参数之一。这些结果表明,亲水性纳米纤维支撑的薄膜复合膜有可能成为下一代工程渗透膜。

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