One-pot green preparation of deep eutectic solvent-assisted ZnO/GO nanocomposite for cefixime trihydrate photocatalytic degradation under UV-A irradiation
In this study, one of the advanced oxidation processes (AOPs) was selected for the pharmaceutical’s treatment from wastewaters. For this purpose, deep eutectic solvent (DES) consisting of choline-chloride and ethylene glycol at 1:2 M ratio was synthesized for preparation of zinc oxide/graphene oxide...
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Veröffentlicht in: | Biomass conversion and biorefinery 2022-07, Vol.12 (Suppl 1), p.73-86 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In this study, one of the advanced oxidation processes (AOPs) was selected for the pharmaceutical’s treatment from wastewaters. For this purpose, deep eutectic solvent (DES) consisting of choline-chloride and ethylene glycol at 1:2 M ratio was synthesized for preparation of zinc oxide/graphene oxide (ZnO/GO/DES) photocatalyst for degradation of the cefixime trihydrate (CFX) as a model of antibiotic via UV-A radiation. Photocatalytic degradation of CFX was statistically maximized as a response through the design of the experiments using a face-centered central composite design (FCCCD). The catalyst dose (0.3–0.7 g L
−1
), pH of media (4–10), and antibiotic concentration (20–50 mg L
−1
) were taken as a factor to construct the experimental design. Besides, photocatalytic reaction results showed that using DES served as at high degradation performance as 86% CFX degradation under 0.532 g L
−1
catalyst dose, 20.13 mg L
−1
initial CFX concentration, and 4.03 pH using UV-A radiation. Photocatalysts with DES have proved a crucial catalyst in antibiotic resistance in water treatment. Thus, the prepared deep eutectic solvent-based photocatalyst indicates marvelous effects for eliminating CFX. |
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ISSN: | 2190-6815 2190-6823 |
DOI: | 10.1007/s13399-021-01734-0 |