Poly(ether sulfone)-based ultrafiltration membranes using chitosan/ammonium chloride to enhance permeability and antifouling properties

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Fitri Khoerunnisa, Marthini Sihombing, Mita Nurhayati, Fitri Dara, Hari Agung Triadi, Muhamad Nasir, Hendrawan Hendrawan, Amelinda Pratiwi, Eng-Poh Ng, Pakorn Opaprakasit

2022 Polymer Journal Vol. 54 Issue 4 Article Cited by 21 SDG 17SDG 6SDG 3SDG 12SDG 14 Quartile

Abstract

The presence of microorganisms on filtration membranes can cause biofouling phenomena. In this study, poly(ether sulfone)- (PES)-based functional ultrafiltration membranes were developed by employing chitosan (CS) and ammonium chloride (NH4Cl) as antibacterial agents to enhance antibiofouling properties. A PES membrane was prepared using the phase inversion method and then immersed in CS/NH4Cl solutions containing different NH4Cl concentrations to form composite membranes. The membrane antibiofouling properties were evaluated using Kirby Bauer and total plate counting methods. The structures and properties of the composite membranes were characterized by FTIR spectroscopy, SEM-EDX, porosity and hydrophilicity measurements, and tensile tests. The addition of NH4Cl increased the antibiofouling properties of the membranes, where maximum bacteria-killing ratio (%BKR) values of 99.2 and 83.3% were observed against Staphylococcus aureus and Escherichia coli, respectively. The addition of CS/NH4Cl not only modified the morphological structure of the PES membrane but also increased its hydrophilicity (water contact angle from 82.3 to 64.4°), porosity (49.6 to 70%), and mechanical strength (0.57 to 8.7 MPa). The results from performance tests, compared with other similar membrane systems, firmly suggest that the synthesized membranes are promising for water and wastewater purification through the ultrafiltration method. © 2022, The Author(s), under exclusive licence to The Society of Polymer Science, Japan.

Affiliations

Department of Chemistry, Indonesia University of Education, Setiabudhi 229, Bandung, 40154, Indonesia; Research Unit for Clean Technology, National Research and Innovation Agency, Bandung, 40135, Indonesia; School of Chemical Sciences, Universiti Sains Malaysia, Penang, 11800 USM, Malaysia; School of Bio-Chemical Engineering and Technology, Sirindhorn International Institute of Technology (SIIT), Thammasat University, Pathum Thani, Bangkok, 12121, Thailand

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