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界面层对聚酰胺纳滤膜去除有机微污染物性能的调控作用具有显著差异:取决于基底特性。

Distinct Efficacies of Interlayers in Tailoring Polyamide Nanofiltration Membrane Performance for Organic Micropollutant Removal: Dependent on Substrate Characteristics.

机构信息

State Key Laboratory of Pollution Control and Resources Reuse, Tongji Advanced Membrane Technology Center, Tongji University, Shanghai 200092, China.

Key Laboratory of Yangtze River Water Environment, Ministry of Education, Tongji University, Shanghai 200092, China.

出版信息

Environ Sci Technol. 2024 Aug 6;58(31):14022-14033. doi: 10.1021/acs.est.4c04648. Epub 2024 Jul 25.

Abstract

Interlayered thin-film nanocomposite (TFN) membranes have shown the potential to boost nanofiltration performance for water treatment applications including the removal of organic micropollutants (OMPs). However, the effects of substrates have been overlooked when exploiting and evaluating the efficacy of certain kinds of interlayers in tailoring membrane performance. Herein, a series of TFN membranes were synthesized on different porous substrates with identical interlayers of metal-organic framework nanosheets. It was revealed that the interlayer introduction could narrow but not fully eliminate the difference in the properties among the polyamide layers formed on different substrates, and the membrane performance variation was prominent in distinct aspects. For substrates with small pore sizes exerting severe water transport hindrance, the introduced interlayer mainly enhanced membrane water permeance by affording the gutter effect, while it could be more effective in reducing membrane pore size by improving the interfacial polymerization platform and avoiding PA defects when using a large-pore-size substrate. By matching the selected substrates and interlayers well, superior TFN membranes were obtained with simultaneously higher water permeance and OMP rejections compared to three commercial membranes. This study helps us to objectively understand interlayer efficacies and attain performance breakthroughs of TFN membranes for more efficient water treatment.

摘要

层状薄膜纳米复合(TFN)膜在提高纳滤膜性能方面显示出巨大的潜力,可应用于水处理领域,包括去除有机微污染物(OMPs)。然而,在开发和评估某些层间夹层对膜性能的调节效果时,往往忽略了基底的影响。在此,通过在具有相同金属-有机骨架纳米片层间的不同多孔基底上合成一系列 TFN 膜,研究发现层间的引入可以缩小但不能完全消除不同基底上形成的聚酰胺层之间的性能差异,且膜性能的变化在不同方面表现得尤为突出。对于孔径较小、水传输阻力较大的基底,引入的层间主要通过提供沟渠效应来提高膜水渗透性,而对于大孔径基底,通过改善界面聚合平台和避免 PA 缺陷,层间可以更有效地减小膜孔径。通过选择合适的基底和层间,与三种商业膜相比,得到的 TFN 膜具有更高的水渗透性和 OMP 去除率,这表明 TFN 膜的性能得到了显著提升。该研究有助于我们客观地了解层间的效率,并为更高效的水处理实现 TFN 膜的性能突破。

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