4.7 Article

Facile hydrophobic modification of hydrophilic membranes by fluoropolymer coating for direct contact membrane distillation

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JOURNAL OF MEMBRANE SCIENCE
卷 672, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.memsci.2023.121432

关键词

Membrane distillation; Hydrophobic modification; Desalination; LUMIFLONTM LF-200; Nitrocellulose membrane; Nylon membrane

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This study developed a method to fabricate hydrophobic membranes for membrane distillation. The hydrophilic membranes were transformed into hydrophobic through the coating of a polymer called LUMIFLONTM LF-200. The coated membranes showed better performance than commercial membranes.
Membrane distillation (MD) is a promising desalination technology as it is less sensitive to feed's salinity and can handle high-salinity water. However, the industrial application of MD is restricted by the limited availability of cost-effective hydrophobic membranes. This study developed a simple method to fabricate hydrophobic MD membranes through the coating of a fluoroethylene vinyl ether polymer called LUMIFLONTM LF-200. The flu-oropolymer was effectively coated on porous nitrocellulose (NC) and nylon membrane through dip-coating followed by a thermal crosslinking. The coating layer was thin and uniform, covering the surface of the whole membrane matrix, while the high porosity and the microstructure of the membranes were still mostly preserved. After modification, the originally hydrophilic NC and nylon membranes were transformed into hydrophobic, with water contact angles of similar to 130 degrees. The 12LF-NC membrane showed a high flux of 10.1 kg m(-2) h(-1) with salt rejection >99.99% over 120 h in the direct contact MD fed with 10 wt% NaCl solution, which outperformed the commercial PVDF membrane. This coating method has the potential to modify various substrates to produce MD membranes with good performance, which broadens the availability of appropriate membranes for MD application.

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