Title of article :
Photochemical Degradation of Fluocinolone Acetonidin Drug in Aqueous Solutions Using Nanophotocatalyst ZnO Doped by C, N, and S
Author/Authors :
Hojat Ansari, Sepideh Department of Pharmaceutical Science - North Tehran Branch - Islamic Azad University - Tehran , Giahi, Masoud Department of Chemistry - Faculty of Science - Lahijan Branch - Islamic Azad University - Lahijan
Pages :
7
From page :
183
To page :
189
Abstract :
It has been shown that the photocatalytic activity of doped semiconductor with some nonmetals is higher than pure semiconductor. Hence, with an attempt to achieve higher photocatalytic activity, doped ZnO with C, N, and S was prepared by a sedimentary process and used for the photocatalytic degradation of Fluocinolone Acetonidin as a drug in aqueus solutions. X-Ray Diffraction (XRD), Energy Dispersion X-ray (EDX), X-ray Photoelectron Spectroscopy (XPS) and Scanning Electron Microscopy (SEM) were used to characterize the microstructure and morphology of the precursor and the products. The photocatalytic degradation of drug was investigated using supported ZnO/C, N, and S photocatalyst under UV light irradiation. We also studied the influence of the basic photocatalytic parameters as well as irradiation time, initial concentration of drug, pH of solution, amount of nanoparticles and addition of oxidant on the reaction. The optimum conditions of degradation were obtained accordingly: concentration of Fluocinolone Acetonidin, 20 ppm; amount of photocatalyst, 7 mg; oxidant (K2S2O8), 5 mM; irradiation time, 6 h in pH=9. Kinetic analysis demonstrated that the amount of Fluocinolone Acetonidin photocatalytic degradation can be fitted by a pseudo- first- order model.
Keywords :
UV light irradiation , Fluocinolone Acetonidin , ZnO/C, N; S photocatalyst , Photocatalytic degradation
Journal title :
Astroparticle Physics
Serial Year :
2017
Record number :
2428992
Link To Document :
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