4.1 Article

Imidazolinone herbicides in strongly acidic media: Speciation and electroreduction

期刊

COMPTES RENDUS CHIMIE
卷 14, 期 10, 页码 957-962

出版社

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.crci.2011.01.004

关键词

Imidazolinone herbicides; Dissociation constants; Soil sorption; Reduction mechanisms; Electrode kinetics

资金

  1. Junta de Andalucia [FQM-0198]
  2. CICyT [CTQ2006-07224/PPQ]
  3. Cordoba University

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From UV-visible measurements and potentiometric titrations it follows that the lowest pK values (pK(1)) of imidazolinone herbicides correspond to the simultaneous protonation/dissociation equilibria of both the pyridinic (or quinolinic) nitrogen and the carboxyl group, the following pK (pK(2)) to the imminium nitrogen and the basic pK (pK(3)) to the dissociation of the imido nitrogen. Below pH 6 and down to pH c.a. 2.5, the dominant form of the herbicide is a double ion having both positive and negative charges, this being important in discussing the effect of pH in the natural dynamics of imidazolinone herbicides, especially in their soil sorption. Electrochemical studies of the reduction of the herbicides were made on mercury and carbon electrodes in strongly acidic media (0.1 to 2.7 M H(2)SO(4)) as well up to pH 7. The reduction signals were all attributed to the reduction of the imidazolinone ring except the second peak/wave that was found to have originated by the reduction of the pyridine/quinoline ring. A signal observed in strongly acidic media and at highly negative overpotentials was attributed to the reduction of the imidazolinone ring of the product of the previous reduction in a process consisting of two reversible electron transfers followed by a protonation reaction. (C) 2011 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.

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