Fabrication of PVDF-Silica Ultrafiltration Membranes

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The highly hydrophobic nature of PVDF membranes makes it prone to fouling, and hydrophilic additives are frequently used to improve its wettability and fouling performance. Another approach to mitigate fouling is to alter membrane via surface modification. Under optimum conditions of membrane fabrication, in-situ membrane surface modification may be achieved as a result of the spontaneous migration of amphiphilic additives to the membrane upper surface resulting in so-called surface segregation. In this study, a novel approach was taken to use nanoparticles as carriers and anchors for antifouling ligands. Commercial SiO2 nanoparticles were chemically functionalized by silane coupling agents, which were then further used to immobilize PEG molecules on their surface. Modified nanoparticles were directly dispersed in casting solution and modified SiO2/PVDF blend membranes were prepared. The results demonstrated that the surface modified SiO2 nanoparticles acted as a carrier that facilitated the migration of PDMS or PEG molecules immobilized on SiO2 to the surface of the membrane, contributing to the modification of surface and hence improvement of the membrane fouling resistance.

Autorentext

Mr. Hao WU obtained his Bachelor degree in 2009 from Beijing University of Chemical Technology, majoring in Material Engineering. He went to Australia in 2010 and completed his Master's degree at UNESCO Centre for Membrane Science and Technology in the University of New South Wales in 2012. Now he is a PhD student at UNSW Water Research Centre.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783659340529
    • Sprache Englisch
    • Größe H220mm x B220mm x T150mm
    • Jahr 2013
    • EAN 9783659340529
    • Format Kartonierter Einband (Kt)
    • ISBN 978-3-659-34052-9
    • Titel Fabrication of PVDF-Silica Ultrafiltration Membranes
    • Autor Hao Wu
    • Untertitel Improving the Anti-fouling and Fouling-release of PVDF UF Membrane by Chemically Modified SiO2 Nanoparticles
    • Herausgeber LAP Lambert Academic Publishing
    • Anzahl Seiten 228
    • Genre Luft- und Raumfahrttechnik

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