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Synergistic influence of hydrophilicity and photocatalysis of bio-TiO2@ZIF-8/PVA-PVDF membrane on high-performance treatment of antibiotic-contaminated water

delete2026-01-01
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OA
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E
Enemuo, Ngozi
J
Jen, Tien-Chien *
DOI:10.1016/j.watcyc.2026.02.008delete
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Abstract

Abstract

En 中文
The menace of antibiotic contamination of water bodies has highlighted the need to develop efficient strategies to effectively remove them from contaminated water for safe discharge. In this study, a high-performance bioTiO2@ZIF-8/PVA-PVDF membrane was developed to effectively remove cefixime, which is a commonly used antibiotic, from contaminated water. Through harnessing the hydrophilicity and photocatalytic capability of the membrane, significant improvements in the membrane's permeability, CFX removal, and self-cleaning propensity were achieved. Analysis of the bio-TiO2@ZIF-8/PVA-PVDF membrane's hydrophilicity indicates that the water contact angle (WCA) was reduced to 61.00 +/- 4.59o, as compared to the 88.56 +/- 2.79o WCA of the pristine PVDF. The band gap energy (Eg) of the bio-TiO2@ZIF-8 composite was narrowed to 2.96 eV from 3.25 eV obtained for the bio-TiO2, which infused the bio-TiO2@ZIF-8 modified membrane with photocatalytic ability in the visible light range. The pure water flux (PWF) of the bio-TiO2@ZIF-8/PVA-PVDF membrane was 246.50 +/- 3.11 L/m2h, and the long-term filtration of the CFX-contaminated water demonstrated that the membrane could maintain a stable CFX flux for 78 h, while being able to remove up to 99.5 % CFX from the wastewater. This notable performance of the bio-TiO2@ZIF-8/PVA-PVDF membrane is attributed to the enhanced hydrophilic and photocatalytic capacity of the membrane, which contributed to increasing the membrane's water affinity and its CFX degradation under visible light. Absorbed CFX on the membrane surface, due to the saturation of the feed solution and CFX blockage of the membrane's photoactive sites, was noted after the long filtration. However, the absorbed CFX on the membrane was self-cleaned within 1 h.
Keywords:
Membrane filtration
Photocatalytic membrane
Hydrophilic membrane
Antibiotic wastewater
Water treatment
TiO2
ZIF-8
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Journal

W
Water Cycle
IF:
8.7
Papers:
33
Citations:
630

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U
university of johannesburg
Scholars:
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Papers: 1.1K
Citations: 0
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