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Nanofiltration Membranes with Crumpled Polyamide Films: A Critical Review on Mechanisms, Performances, and Environmental Applications

期刊

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.est.2c04736

关键词

nanofiltration; polyamide; crumpled morphology; water transport pathway; selectivity; membrane fouling

资金

  1. Natural Science Foundation of China [52070147]
  2. Research Grants Council of the Hong Kong Special Administration Region, China [SRFS2021-7S04]
  3. RGC Postdoctoral Fellowship from the Research Grants Council of the Hong Kong Special Administration Region, China [PDFS2223-7S02]

向作者/读者索取更多资源

Nanofiltration (NF) membranes, especially crumpled NF membranes, have shown great potential in various environmental applications. This critical review classifies the morphologies of crumpled NF membranes and summarizes the mechanisms and fabrication methods involved in their formation. The transport of water and solutes in these membranes is discussed, highlighting their potential to improve membrane performance. The review also emphasizes the environmental applications of these membranes and identifies future research opportunities and needs.
Nanofiltration (NF) membranes have been widely applied in many important environmental applications, including water softening, surface/groundwater purification, wastewater treatment, and water reuse. In recent years, a new class of piperazine (PIP)-based NF membranes featuring a crumpled polyamide layer has received considerable attention because of their great potential for achieving dramatic improvements in membrane separation performance. Since the report of novel crumpled Turing structures that exhibited an order of magnitude enhancement in water permeance (Science 2018, 360 (6388), 518-521), the number of published research papers on this emerging topic has grown exponentially to approximately 200. In this critical review, we provide a systematic framework to classify the crumpled NF morphologies. The fundamental mechanisms and fabrication methods involved in the formation of these crumpled morphologies are summarized. We then discuss the transport of water and solutes in crumpled NF membranes and how these transport phenomena could simultaneously improve membrane water permeance, selectivity, and antifouling performance. The environmental applications of these emerging NF membranes are highlighted, and future research opportunities/needs are identified. The fundamental insights in this review provide critical guidance on the further development of high-performance NF membranes tailored for a wide range of environmental applications.

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