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通过在膜表面涂覆两性离子功能化碳纳米管来减轻正向渗透中的双向溶质通量。

Mitigation of bidirectional solute flux in forward osmosis via membrane surface coating of zwitterion functionalized carbon nanotubes.

机构信息

Department of Civil and Environmental Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.

Department of Chemical Engineering & Macromolecules Innovation Institute, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.

出版信息

Environ Int. 2019 Oct;131:104970. doi: 10.1016/j.envint.2019.104970. Epub 2019 Jul 8.

Abstract

Forward osmosis (FO) has emerged as a promising membrane technology to yield high-quality reusable water from various water sources. A key challenge to be solved is the bidirectional solute flux (BSF), including reverse solute flux (RSF) and forward solute flux (FSF). Herein, zwitterion functionalized carbon nanotubes (Z-CNTs) have been coated onto a commercial thin film composite (TFC) membrane, resulting in BSF mitigation via both electrostatic repulsion forces induced by zwitterionic functional groups and steric interactions with CNTs. At a coating density of 0.97 g m, a significantly reduced specific RSF was observed for multiple draw solutes, including NaCl (55.5% reduction), NHHPO (83.8%), (NH)HPO (74.5%), NHCl (70.8%), and NHHCO (61.9%). When a synthetic wastewater was applied as the feed to investigate membrane rejection, FSF was notably reduced by using the coated membrane with fewer pollutants leaked to the draw solution, including NH-N (46.3% reduction), NO-N (37.0%), NO-N (30.3%), K (56.1%), PO-P (100%), and Mg (100%). When fed with real wastewater, a consistent water flux was achieved during semi-continuous operation with enhanced fouling resistance. This study is among the earliest efforts to address BSF control via membrane modification, and the results will encourage further exploration of effective strategies to reduce BSF.

摘要

正向渗透(FO)作为一种很有前途的膜技术,能够从各种水源中获得高质量的可重复使用的水。需要解决的一个关键挑战是双向溶质通量(BSF),包括反向溶质通量(RSF)和正向溶质通量(FSF)。本文通过在商业薄膜复合(TFC)膜上涂覆两性离子官能化碳纳米管(Z-CNTs),利用两性离子官能团诱导的静电排斥力和 CNTs 的空间相互作用,减轻了 BSF。在涂层密度为 0.97 g/m 时,观察到多种汲取液的特定 RSF 显著降低,包括 NaCl(降低 55.5%)、NH4H2PO4(83.8%)、(NH4)2HPO4(74.5%)、NH4Cl(70.8%)和 NHHCO3(61.9%)。当将合成废水用作进料来研究膜截留时,使用涂覆膜后,污染物泄漏到汲取液中的量更少,FSF 明显降低,包括 NH-N(降低 46.3%)、NO-N(降低 37.0%)、NO3-N(降低 30.3%)、K(降低 56.1%)、PO4-P(降低 100%)和 Mg(降低 100%)。当用实际废水进行进料时,在半连续操作过程中实现了稳定的水通量,并增强了抗污染能力。本研究是最早通过膜改性来解决 BSF 控制的研究之一,研究结果将鼓励进一步探索减少 BSF 的有效策略。

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