Journal
POLYMERS
Volume 14, Issue 17, Pages -Publisher
MDPI
DOI: 10.3390/polym14173600
Keywords
polysulfone membrane; silver nanoflake; good health; antibacterial activity; Escherichia coli; water treatment
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Funding
- Hibah SATU Joint Research Scheme, Airlangga University [1307/UN3.15/PT/2021]
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This research aims to investigate the possibility of using silver nanoflakes as an antibacterial agent in polysulfone membranes. The results show that polysulfone membranes blended with a small amount of silver nanoflakes exhibit improved water flux and antimicrobial activity, suggesting their potential application in water filtration.
The aim of this research was to study the possibility of using silver nanoflakes (SNFs) as an antibacterial agent in polysulfone (PSF) membranes. SNFs at different concentrations (0.1, 0.2, 0.3 and 0.4 wt.%) were added to a PSF membrane dope solution. To investigate the effect of SNFs on membrane performance and properties, the water contact angle, protein separation, average pore size and molecular weight cutoffs were measured, and water flux and antibacterial tests were conducted. The antimicrobial activities of the SNFs were investigated using Escherichia coli taken from river water. The results showed that PSF membranes blended with 0.1 wt.% SNFs have contact angles of 55 degrees, which is less than that of the pristine PSF membrane (81 degrees), exhibiting the highest pure water flux. Molecular weight cutoff values of the blended membranes indicated that the presence of SNFs does not lead to enlargement of the membrane pore size. The rejection of protein (egg albumin) was improved with the addition of 0.1 wt.% SNFs. The SNFs showed antimicrobial activity against Escherichia coli, where the killing rate was dependent on the SNF concentration in the membranes. The identified bacterial colonies that appeared on the membranes decreased with increasing SNF concentration. PSF membranes blended with SNF, to a great degree, possess quality performance across several indicators, showing great potential to be employed as water filtration membranes.
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