Photocatalytic degradation of p-nitrophenol using biologically synthesized ZnO nanoparticles

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2021

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Springer Science and Business Media Deutschland GmbH

Abstract

The present work deals with the photocatalytic degradation of p-nitrophenol as it is a United States Environmental Protection Agency-listed priority pollutant and has adverse environmental and health effects. To eradicate the detrimental environmental impact of p-nitrophenol, the biologically synthesized ZnO nanoparticles were used as a photocatalyst. The degradation of p-nitrophenol was confirmed by decreasing the absorbance value at a characteristic wavelength of 317 nm using the UV-vis spectrophotometer. Reaction parameters such as ZnO photocatalyst concentration of 0.1 g/L at pH 11 in the presence of H<inf>2</inf>O<inf>2</inf> (5 mM) were found to be optimum conditions for p-nitrophenol degradation. The photocatalytic degradation was slowly enhanced in the presence of H<inf>2</inf>O<inf>2</inf> as an electron acceptor. The kinetics of nitrophenol degradation was studied, which follows the pseudo-first-order reaction. The photocatalytic degradation of p-nitrophenol was characterized by using total organic carbon, chemical oxygen demand, and high-performance liquid chromatography analyses. This method is found to be effective as it is environmentally friendly, free of toxic chemicals. © 2020, Springer-Verlag GmbH Germany, part of Springer Nature.

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Keywords

absorbance, chemical oxygen demand, nanoparticle, organic compound, photodegradation, reaction kinetics, total organic carbon, zinc, 4-nitrophenol, hydrogen peroxide, nitrophenol, zinc oxide, catalysis, Catalysis, Hydrogen Peroxide, Nitrophenols, Zinc Oxide

Citation

Environmental Science and Pollution Research, 2021, 28, 10, pp. 12119-12130

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