Photodegradation of Flucetosulfuron, a Sulfonylurea-Based Herbicide in the Aqueous Media Is Influenced by Ultraviolet Irradiation

Photodegradation (photolysis) causes the breakdown of organic pesticides molecules by direct or indirect solar radiation energy. Flucetosulfuron herbicide often encounters water bodies. For this reason, it is important to know the behavior of the compound under these stressed conditions. In this con...

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Bibliographic Details
Main Authors: Arnab Goon, Arijita Bhattacharyya, Bappa Ghosh, Rajiv Rakshit, Anupam Das, Suborna Roy Choudury, Chiranjit Kundu, Pritam Ganguly, Akbar Hossain
Format: Article
Language:English
Published: MDPI AG 2021-11-01
Series:Journal of Xenobiotics
Subjects:
Online Access:https://www.mdpi.com/2039-4713/11/4/10
Description
Summary:Photodegradation (photolysis) causes the breakdown of organic pesticides molecules by direct or indirect solar radiation energy. Flucetosulfuron herbicide often encounters water bodies. For this reason, it is important to know the behavior of the compound under these stressed conditions. In this context, photodegradation of flucetosulfuron, a sulfonylurea-based herbicide, has been assessed in aqueous media in the presence of photocatalyst TiO<sub>2</sub> and photosensitizers (i.e., H<sub>2</sub>O<sub>2,</sub> humic acid, and KNO<sub>3</sub>) under the influence of ultraviolet (UV) irradiation. The influence of different water systems was also assessed during the photodegradation study. The photodegradation followed the first-order reaction kinetics in each case. The metabolites after photolysis were isolated in pure form by column chromatographic method and characterized using the different spectral data (i.e., XRD, IR, NMR, UV-VIS, and mass spectrometry). The structures of these metabolites were identified based on the spectral data and the plausible photodegradation pathways of flucetosulfuron were suggested. Based on the findings, photocatalyst TiO<sub>2</sub> with the presence of ultraviolet irradiation was found effective for the photodegradation of toxic flucetosulfuron residues under aqueous conditions.
ISSN:2039-4705
2039-4713