Design of PVDF/PEGMA- b -PS- b -PEGMA membranes by VIPS for improved biofouling mitigation - Université Toulouse III - Paul Sabatier - Toulouse INP Accéder directement au contenu
Article Dans Une Revue Journal of Membrane Science Année : 2016

Design of PVDF/PEGMA- b -PS- b -PEGMA membranes by VIPS for improved biofouling mitigation

Résumé

Literature on the design of efficient nonfouling membranes by in-situ modification is poor, which can be explained by the difficulty to control membrane formation mechanisms when a third material is added to the casting solution, or by the lack of stability of matrix polymers with surface-modifiers. We present polyvinylidene fluoride membranes formed by vapor-induced phase separation and modified with a tri-block copolymer of poly(styrene) and poly(ethylene glycol) methacrylate moieties (PEGMA124-b-PS54-b-PEGMA124). After characterizing the copolymer, we move onto membrane formation mechanisms. Membrane formation is well controlled and leads to structure close to bi-continuous. Considering the formulation chosen, PVDF/PEGMA124-b-PS54-b-PEGMA124 solutions are less viscous and more hydrophilic than virgin PVDF solutions. Both effects promote non-solvent transfer, thus decreasing the chances for crystallization. Hydrophilic capability of membranes is increased from about 59 mg/cm3 to 650 mg/cm3, leading to a severe drop of non-specific protein adsorption, up to 85–90%, also depending on its nature. Biofouling at the micro-scale by modified Escherichia coli and Streptococcus mutans is almost totally inhibited. Finally, biofouling is importantly reduced in dynamic conditions, as measured from the water flux recovery ratio of 69.4%, after 3 water-BSA filtration cycles, much higher than with a commercial hydrophilic PVDF membrane (47.3%). These membranes hold promise as novel materials for water-treatment or blood filtration.
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Dates et versions

hal-01907330 , version 1 (29-10-2018)

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Citer

Séverine Carretier, Li-An Chen, Antoine Venault, Zhong-Ru Yang, Pierre Aimar, et al.. Design of PVDF/PEGMA- b -PS- b -PEGMA membranes by VIPS for improved biofouling mitigation. Journal of Membrane Science, 2016, 510, pp.355-369. ⟨10.1016/j.memsci.2016.03.017⟩. ⟨hal-01907330⟩
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