Synthesis and characterization of Ag-ion-exchanged zeolite/TiO2 nanocomposites for antibacterial applications and photocatalytic degradation of antibiotics

Journal Article (2022)
Author(s)

Niloufar Torkian (Tafresh University)

Abbas Bahrami (Isfahan University of Technology)

Afrouzossadat Hosseini-Abari (University of Isfahan)

Mohammad Mohsen Momeni (Isfahan University of Technology)

Meisam Abdolkarimi-Mahabadi (Tafresh University)

Ahmad Bayat (Tafresh University)

P. Hajipour (Isfahan University of Technology)

Hamed Amini Rourani (University of Isfahan)

Maryam Mehr (TU Delft - Electronic Components, Technology and Materials)

More authors (External organisation)

Research Group
Electronic Components, Technology and Materials
Copyright
© 2022 Niloufar Torkian, Abbas Bahrami, Afrouzossadat Hosseini-Abari, Mohammad Mohsen Momeni, Meisam Abdolkarimi-Mahabadi, Ahmad Bayat, Pejman Hajipour, Hamed Amini Rourani, M. Yazdan Mehr, More Authors
DOI related publication
https://doi.org/10.1016/j.envres.2021.112157
More Info
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Publication Year
2022
Language
English
Copyright
© 2022 Niloufar Torkian, Abbas Bahrami, Afrouzossadat Hosseini-Abari, Mohammad Mohsen Momeni, Meisam Abdolkarimi-Mahabadi, Ahmad Bayat, Pejman Hajipour, Hamed Amini Rourani, M. Yazdan Mehr, More Authors
Research Group
Electronic Components, Technology and Materials
Bibliographical Note
Green Open Access added to TU Delft Institutional Repository 'You share, we take care!' - Taverne project https://www.openaccess.nl/en/you-share-we-take-care Otherwise as indicated in the copyright section: the publisher is the copyright holder of this work and the author uses the Dutch legislation to make this work public.@en
Volume number
207
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Abstract

This paper investigates the synthesis, antibacterial, and photocatalytic properties of silver ion-exchanged natural zeolite/TiO2 photocatalyst nanocomposite. Zeolite is known to have a porous surface structure, making it an ideal substrate and framework in different nanocomposites. Moreover, natural zeolite has a superior thermal and chemical stability, with hardly any reactivity with chemicals. Finding an effective and low-cost method to remove both antibiotics and bacteria from water resources has become a vital global issue due to the worldwide excessive use of chemicals and antibiotics. This research aims to propose a facile method to synthesize Ag-ion-exchanged zeolite/TiO2 catalyst for anti-bacterial purposes and photocatalytic removal of atibiotics from wastewaters. TiO2 particles were deposited on the surface of natural zeolite. Ag ion exchanging was performed via a liquid ion-exchange method using 0.1 M AgNO3 solution. X-ray diffractometry (XRD), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), and Fourier-transform infrared spectroscopy (FTIR) were used to evaluate the structure of synthesized powders. Antibacterial activities of samples were assessed, using Staphylococcus aureus ATCC 25923 and Escherichia coli ATCC 25922 by disc diffusion method. It was shown that Ag-containing nanocomposite samples have an improved antibacterial performance in both cases. Results showed that the synthesized catalyst has promising potentials in wastewater treatment.

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