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Photo-catalytic degradation of bisphenol-a from aqueous solutions using GF/Fe-TiO 2 -CQD hybrid composite

In this photocatalytic study, removal of bisphenol-A from aqueous solution was studied using the GF/Fe-TiO -CQD composite. Due to its health and environmental effects, this compound should be disposed of sources that are mainly industrial wastewater. The phis-chemical properties of the composite wer...

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Bibliographic Details
Published in:Journal of environmental health science and engineering 2021-06, Vol.19 (1), p.837
Main Authors: Jafari, Ahmad Jonidi, Kalantary, Roshanak Rezaei, Esrafili, Ali, Moslemzadeh, Mehrdad
Format: Article
Language:English
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Summary:In this photocatalytic study, removal of bisphenol-A from aqueous solution was studied using the GF/Fe-TiO -CQD composite. Due to its health and environmental effects, this compound should be disposed of sources that are mainly industrial wastewater. The phis-chemical properties of the composite were determined by traditional analyzes of EF-SEM, EDX, BET, XRD, FTIR and DRS. In this study, different ratios of CQD in the composite (1.5, 4.5 and 7.5 wt%), pH, and bisphenol-A concentration as variable parameters were investigated. All analyzes, EF-SEM, EDX, BET, XRD, FTIR, show that the GF/Fe-TiO -CQD composite is well coated on glass fibers (GF) and all the elements in the catalyst are present. On the other hand, DRS analysis showed that CQD reduces the band gap of Fe-TiO from 2.96 eV to 2.91 eV, it was 3.10 eV for TiO . Among different catalysts, GF/Fe-TiO -CQD has the best performance. The results showed that for GF/Fe-TiO -CQD , optimum for the process was at pH = 6 in low concentration of bisphenol-A. The first order model for the photocatalytic degradation process were well studied. In addition, GF/Fe-TiO -CQD showed that it can be used many times with a minimal reduction in performance. As a result, the GF/Fe-TiO -CQD composite can successfully remove bisphenol-A form in synthetic aqueous solution. However, it is necessary to further studies to applied that for real water source in water and wastewater treatment plants.
ISSN:2052-336X
2052-336X