Journal of Applied Polymer Science · 2021 · 16 citations · 27 references
Membrane FormationEngineeringUltrafiltration MembranesPolymer MembraneContact AnglePolymer ScienceWater PurificationPolymeric MembranesMembrane CharacterizationSimple ApproachBiomedical EngineeringPlasma TreatmentMembrane PermeationMembrane TechnologyPolymer Chemistry
Abstract The modification of the surface characteristics after treatment with plasma in polymeric materials, such as the aging phenomenon, calls the attention of research in the area of nonthermal plasma technology. In this work, a direct treatment with dielectric‐barrier discharge plasma was used on the surfaces of ultrafiltration membranes. The measurements of the contact angle with water, attenuated total reflectance accessory, zeta potential, atomic force microscopy and scanning electron microscopy‐MEV were performed on the surfaces to verify changes after plasma treatment and to understand the occurrence and timing of the plasma aging effect. In the analysis of the membrane performance, hydraulic permeation and protein retention tests were performed. The results showed an improvement in wettability and hydrophilic properties in the post‐treated membranes. The study of reversibility/aging of the post‐plasma surface is important for research that deals with the modification of polymeric membranes. Changes in surface morphology, topography and wettability of the membranes were observed up to seven days after treatment, with a tendency to return to the initial characteristics of the membranes.
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Effect of physical aging on the gas transport and sorption in PIM-1 membranes
Paola Bernardo, Fabio Bazzarelli, Franco Tasselli et al. · Polymer · 2016 · 167 citations · Full text
Hai‐Yin Yu, Lan‐Qin Liu, Zhao-Qi Tang et al. · Journal of Membrane Science · 2007 · 125 citations
Polypropylene Microporous Membrane, Chemical Engineering, Membrane Technology +5