Preparation of antibacterial and antifouling PSF/ZnO/eugenol membrane for peat water ultrafiltration
Author(s) -
I Gede Wenten,
Yuda S. Syaifi,
Firmansyah A. Saputra,
Megawati Zunita,
Putu Teta Prihartini Aryanti,
Helen Julian,
K. Khoiruddin
Publication year - 2019
Publication title -
water science and technology water supply
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.318
H-Index - 39
eISSN - 1607-0798
pISSN - 1606-9749
DOI - 10.2166/ws.2019.103
Subject(s) - biofouling , polysulfone , membrane , eugenol , ultrafiltration (renal) , chemistry , antibacterial activity , chromatography , phase inversion , nuclear chemistry , materials science , chemical engineering , organic chemistry , bacteria , biochemistry , biology , engineering , genetics
In this work, polysulfone (PSF)-based ultrafiltration (UF) membrane with antibacterial and antifouling properties was prepared by the phase inversion technique. ZnO and eugenol were used as additives and introduced into the membrane matrix via the additive blending method. The additives could improve the performance of the PSF membrane due to their hydrophilic nature. The water contact angle (WCA) of the PSF membrane decreased from 67.7° ± 1.2° to 52.8° ± 0.8° when the additive loading was increased from 0 to 5%-wt. The PSF membrane with 5%-wt ZnO and 5%-wt eugenol had pure water permeability and humic substance rejection of 83.8 ± 3.7 L m−2 h−1 bar−1 and 95.6%, respectively. In addition, the additives were able to improve antifouling properties, e.g. a recovery ratio (FRR) of 85.4% and relative flux reduction ratio (RFR) of 30.2%. In the antibacterial assay, the membrane displayed 3 mm and 10 mm inhibition zones against Escherichia coli and peat water microorganisms, respectively, probably due to antibacterial properties of the additives.
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