4.6 Article

Characterization of PVDF/Graphene Nanocomposite Membranes for Water Desalination with Enhanced Antifungal Activity

期刊

WATER
卷 13, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/w13091279

关键词

membrane distillation; graphene; membranes; anti-fungal activity

资金

  1. School of Science and Engineering
  2. FEMSA-Biotechnology Center at Tecnologico de Monterrey through the Bioprocess Focus Group [0020209I13]
  3. Polish National Agency for Academic Exchange (NAWA) [PPN/ULM/2020/1/00005/U/00001]
  4. COST Association (European Cooperation in Science and Technology) [CA15107]

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Seawater desalination is a global concern and membrane distillation has shown potential for effective brine treatment. The study of graphene/polyvinylidene (PVDF_G) membranes demonstrates that excellent water repellence and a large effective surface area can improve antifungal activity.
Seawater desalination is a worldwide concern for the sustainable production of drinking water. In this regard, membrane distillation (MD) has shown the potential for effective brine treatment. However, the lack of appropriate MD membranes limits its industrial expansion since they experience fouling and wetting issues. Therefore, hydrophobic membranes are promising candidates to successfully deal with such phenomena that are typical for commercially available membranes. Here, several graphene/polyvinylidene (PVDF_G) membranes with different graphene loading (0-10 wt%) were prepared through a phase inversion method. After full characterization of the resulting membranes, the surface revealed that the well-dispersed graphene in the polymer matrix (0.33 and 0.5 wt% graphene loading) led to excellent water repellence together with a rough structure, and a large effective surface area. Importantly, antifungal activity tests of films indicated an increase in the inhibition percentage for PVDF_G membranes against the Curvularia sp. fungal strain. However, the antifungal surface properties were found to be the synergistic result of graphene toxicity and surface topography.

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