具有可扩展制造潜力的导电聚酰胺膜分离性能的动态调制

IF 11.4 1区 工程技术 Q1 ENGINEERING, CHEMICAL
Haya Nassrullah, Sandra Aristizabal, Jamaliah Aburabie, Nidal Hilal, Raed Hashaikeh
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引用次数: 0

摘要

聚酰胺是工业规模纳滤膜中最常用的选择层。然而,聚酰胺膜缺乏柔韧性,因为一旦膜形成,它们在排斥和通量方面的性能就会固定。虽然已经有一些研究探索了聚酰胺膜在制造过程中和制造后的修饰,但这些方法会导致膜性质的不可逆变化。在此,我们开发了一种导电聚酰胺膜,该膜通过施加外部正或负电位来动态调节盐的抑制性能。观察到的膜性能变化是可逆的,表明膜的化学和结构的完整性是保持的。此外,与以前的研究结果不同,即使在诱发电化学反应的电压下,这种膜的盐排斥性能仍然不受影响。这些结果突出了这种膜在自适应过滤系统和需要电化学反应而不牺牲分离效率的应用中的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dynamic modulation of separation performance in electrically conductive polyamide membranes with scalable fabrication potential

Dynamic modulation of separation performance in electrically conductive polyamide membranes with scalable fabrication potential

Polyamide is the most commonly used selective layer in nanofiltration membranes at an industrial scale. However, polyamide membranes lack flexibility, as their performance in terms of rejection and flux becomes fixed once the membrane is formed. Although several studies have explored during- and post-fabrication modifications of polyamide membranes, these approaches result in irreversible changes to membrane properties. Herein, we developed an electrically conductive polyamide membrane with dynamically tunable salt rejection performance by applying external positive or negative potentials. The observed changes in membrane performance were reversible, indicating that the chemical and structural integrity of the membrane is maintained. Furthermore, unlike findings from previous studies, the salt rejection performance of this membrane remains uncompromised even at voltages that induce electrochemical reactions. These results highlight the potential of this membrane for adaptive filtration systems and applications requiring electrochemical reactions without sacrificing separation efficiency.

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来源期刊
npj Clean Water
npj Clean Water Environmental Science-Water Science and Technology
CiteScore
15.30
自引率
2.60%
发文量
61
审稿时长
5 weeks
期刊介绍: npj Clean Water publishes high-quality papers that report cutting-edge science, technology, applications, policies, and societal issues contributing to a more sustainable supply of clean water. The journal's publications may also support and accelerate the achievement of Sustainable Development Goal 6, which focuses on clean water and sanitation.
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