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DatoValore
TitleOxidative pathways in the degradation of triazine herbicides: a mechanistic approach
AbstractStudies about the chemical reactivity of compounds widely used in the environment are needed. The chemical reactivity of triazines toward oxidants was tested in the laboratory with cerium(IV) ammonium nitrate and ozone. Simazine, atrazine and terbutylazine were tested. The oxidative N-dealkylation occurred both with cerium ammonium nitrate and with ozone at acidic pH. The N-de-ethylation was invariably preferred to the N-dealkylation reaction. A degradation pathway for triazine herbicides is suggested. The kinetics of the oxidation of these triazines with ozone at pH 3 and the kinetics of the saturation of the solution with ozone have been evaluated. These data may be useful for the prediction of the persistency of these compounds in the environment.
SourceWater science and technology 30, pp. 129–136
JournalWater science and technology
EditorIWA Publishing, London,
Year1994
TypeArticolo in rivista
AuthorsBolzacchini E., Brambilla A., Orlandi M., Polesello S., Rindone B.
Text233496 1994 Oxidative pathways in the degradation of triazine herbicides a mechanistic approach Bolzacchini E., Brambilla A., Orlandi M., Polesello S., Rindone B. Universita degli studi di Milano Studies about the chemical reactivity of compounds widely used in the environment are needed. The chemical reactivity of triazines toward oxidants was tested in the laboratory with cerium IV ammonium nitrate and ozone. Simazine, atrazine and terbutylazine were tested. The oxidative N dealkylation occurred both with cerium ammonium nitrate and with ozone at acidic pH. The N de ethylation was invariably preferred to the N dealkylation reaction. A degradation pathway for triazine herbicides is suggested. The kinetics of the oxidation of these triazines with ozone at pH 3 and the kinetics of the saturation of the solution with ozone have been evaluated. These data may be useful for the prediction of the persistency of these compounds in the environment. 30 Articolo in rivista IWA Publishing 0273 1223 Water science and technology Water science and technology Water science and technology. Water sci. technol. stefano.polesello POLESELLO STEFANO