Literature DB >> 22521169

Photochemical transformation of anionic 2-nitro-4-chlorophenol in surface waters: laboratory and model assessment of the degradation kinetics, and comparison with field data.

Babita Sur1, Elisa De Laurentiis, Marco Minella, Valter Maurino, Claudio Minero, Davide Vione.   

Abstract

Anionic 2-nitro-4-chlorophenol (NCP) may occur in surface waters as a nitroderivative of 4-chlorophenol, which is a transformation intermediate of the herbicide dichlorprop. Here we show that NCP would undergo efficient photochemical transformation in environmental waters, mainly by direct photolysis and reaction with OH. NCP has a polychromatic photolysis quantum yield Φ(NCP)=(1.27±0.22)·10(-5), a rate constant with OH k(NCP,)(OH)=(1.09±0.09)·10(10) M(-1) s(-1), a rate constant with (1)O(2)k(NCP,1O2)=(2.15±0.38)·10(7) M(-1) s(-1), a rate constant with the triplet state of anthraquinone-2-sulphonate k(NCP,3AQ2S*)=(5.90±0.43)·10(8) M(-1) s(-1), and is poorly reactive toward CO(3)(-). The k(NCP,3AQ2S*) value is representative of reaction with the triplet states of chromophoric dissolved organic matter. The inclusion of photochemical reactivity data into a model of surface-water photochemistry allowed the NCP transformation kinetics to be predicted as a function of water chemical composition and column depth. Very good agreement between model predictions and field data was obtained for the shallow lagoons of the Rhône delta (Southern France).
Copyright © 2012 Elsevier B.V. All rights reserved.

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Year:  2012        PMID: 22521169     DOI: 10.1016/j.scitotenv.2012.03.034

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  2 in total

Review 1.  Effects of climate change on surface-water photochemistry: a review.

Authors:  Elisa De Laurentiis; Marco Minella; Valter Maurino; Claudio Minero; Davide Vione
Journal:  Environ Sci Pollut Res Int       Date:  2013-12-06       Impact factor: 4.223

Review 2.  A Critical View of the Application of the APEX Software (Aqueous Photochemistry of Environmentally-Occurring Xenobiotics) to Predict Photoreaction Kinetics in Surface Freshwaters.

Authors:  Davide Vione
Journal:  Molecules       Date:  2019-12-18       Impact factor: 4.411

  2 in total

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