Photochemical transformation of phenylurea herbicides in surface waters: A model assessment of persistence, and implications for the possible generation of hazardous intermediates
Articolo
Data di Pubblicazione:
2015
Abstract:
This work models the phototransformation kinetics in surface waters of five phenylurea herbicides (diuron,
fenuron, isoproturon, metoxuron and chlortoluron), for which important photochemical parameters are
available in the literature (direct photolysis quantum yields and reaction rate constants with OH, CO
3
and the triplet states of chromophoric dissolved organic matter, 3CDOM*). Model calculations suggest that
isoproturon and metoxuron would be the least photochemically persistent and diuron the most persistent
compound. Reactions with OH and 3CDOM* would be the main phototransformation pathways for all
compounds in the majority of environmental conditions. Reaction with CO
3 could be important in waters
with low dissolved organic carbon (DOC), while direct photolysis would be negligible for fenuron, quite
important for chlortoluron, and somewhat significant for the other compounds. The direct photolysis of
metoxuron and diuron is known to increase toxicity, and such a photoreaction pathway would be enhanced
at intermediate DOC values (1–4 mg C L1). The reaction between phenylureas and OH is known to produce
toxic intermediates, differently from 3CDOM*. Therefore, the shift of reactivity from OH to 3CDOM* with
increasing DOC could reduce the environmental impact of photochemical transformation.
Tipologia CRIS:
03A-Articolo su Rivista
Keywords:
Phenylurea herbicides; Direct and indirect photolysis; Environmental photochemistry; Environmental chemodynamics
Elenco autori:
D. Fabbri; M. Minella; V. Maurino; C. Minero; D. Vione
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