
Membrane properties are highly affected by the composition of the polymer solutions that make up the membrane material and their influence in the filtration performance on the separation or purification process. This paper studies the effects of the addition of pluronic (Plu) and patchouli oil (PO) in a polyethersulfone (PES) solution on the membrane morphology, membrane hydrophilicity, and filtration performance in the pesticide removal compound in the water sample. Three types of membranes with the composition of PES, PES + Plu, and PES + Plu + patchouli oil were prepared through a polymer phase inversion technique in an aqueous solvent. The resulting membranes were then analyzed and tested for their mechanical properties, hydrophilicity, antimicrobial properties, and filtration performance (cross-flow ultrafiltration). The results show that all of the prepared membranes could reject 75% of the pesticide. The modification of the PES membrane with Plu was shown to increase the overall pore size by altering the pore morphology of the pristine PES, which eventually increased the permeation flux of the ultrafiltration process. Furthermore, patchouli oil added antimicrobial properties, potentially minimizing the biofilm formation on the membrane surface.
blending, separation, patchouli, Engineering::Chemical engineering::Polymers and polymer manufacture, Patchouli Oil, 610, Ultrafiltration, polyethersulfone, pluronic, ultrafiltrasi, Article, Polyethersulfone, cross-flow, Engineering::Chemical engineering::Processes and operations, Cross-Flow Filtration, membrane, pesticide, Membrane Separation
blending, separation, patchouli, Engineering::Chemical engineering::Polymers and polymer manufacture, Patchouli Oil, 610, Ultrafiltration, polyethersulfone, pluronic, ultrafiltrasi, Article, Polyethersulfone, cross-flow, Engineering::Chemical engineering::Processes and operations, Cross-Flow Filtration, membrane, pesticide, Membrane Separation
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