4.7 Article

Positively charged nanofiltration membranes mediated by a facile polyethyleneimine-Noria interlayer deposition strategy

Journal

DESALINATION
Volume 513, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.desal.2020.114836

Keywords

Noria; Polyethyleneimine; Interlayer; Positively charged; Nanofiltration

Funding

  1. National Natural Science Foundation of China [21908247]
  2. China Postdoctoral Science Foundation [2018M642725]
  3. Shandong Province Major Science and Technology Innovation Project [2018CXGC1002]
  4. Key Technology Research and Development Program of Shandong [2019JZZY010410]
  5. Fundamental Research Funds for the Central Universities [18CX05001A]

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In this study, a positively charged nanofiltration membrane was developed with high water permeance and good separation performance through an interlayer manipulation strategy.
The development of the positively charged nanofiltration (NF) membrane is of great importance for water softening. The relative low water permeance restricts its widespread application. Up to now, numerous efforts on the interlayer technologies have been implemented to manipulate the interfacial polymerization (IP) process of the negatively charged NF membrane. However, there are few reports on the interlayer-mediated positively charged NF membrane. Herein, an interlayer-mediated positively charged NF membrane is fabricated via an IP process between polyethyleneimine (PEI) and trimesoyl chloride. A facile interlayer is deposited based on the interaction of a macrocycle polyphenol of Noria and PEI. The fabricated NF membrane possesses a unique surface morphology, less intrusion of the polyamide layer, a low lateral mass transfer resistance and adequate separation layer thickness. Consequently, the interlayer-mediated NF membrane exhibits a high water permeance of 110.4 L.m(-2) h(-1).MPa-1, which is similar to 2.6 times over the control group of 41.6 L.m(-2)h(-1).MPa-1, while preserves a considerable rejection of 95.4% towards MgCl2 solution. More importantly, the water permeance is enhanced not at the expense of membrane thickness, which is conducive to the long-term running stability. This study paves a new way to fabricate a high performance positively charged NF membrane through an interlayer manipulation strategy.

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