Literature DB >> 11804524

Nicosulfuron: alcoholysis, chemical hydrolysis, and degradation on various minerals.

Jean Sabadie1.   

Abstract

Alcoholysis (methanol or ethanol) and hydrolysis (pH ranging from 4 to 11) of the herbicide nicosulfuron at 30 degrees C principally involves the breakdown of the urea part of the molecule. A high yield of the corresponding carbamate was obtained along with aminopyrimidine during alcoholysis. Hydrolysis led to both aminopyrimidine and pyridylsulfonamide. The latter compound may be easily cyclized (pH > or = 7). First-order kinetics describe the rates of alcoholysis and hydrolysis well. The rate constants (0.44 days(-1) for methanolysis) decreased from 0.50 to 0.002 days(-1) as pH increased from 4 to 8, then remained stable under alkaline conditions. In acidic or neutral solution, the hydrolysis path appeared prevalent (> or =70%), whereas in an alkaline medium it decreased when pH increased. The chemical degradation of nicosulfuron on various dry minerals (calcium bentonite, kaolinite, silica gel, H(+) bentonite, montmorillonite K10, and alumina) was investigated at 30 degrees C. The best conditions for the degradation are obtained on acidic minerals after herbicide deposition using the liquid method. Under these conditions an acceptable correlation with pseudo-first-order kinetics was observed, and the major degradation path is similar to that proposed for chemical hydrolysis. Conversely, alumina seemed to favor other unknown degradation processes. The hydrolysis paths of nicosulfuron and rimsulfuron appeared to be different.

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Year:  2002        PMID: 11804524     DOI: 10.1021/jf010873s

Source DB:  PubMed          Journal:  J Agric Food Chem        ISSN: 0021-8561            Impact factor:   5.279


  2 in total

1.  Study on the photodegradation of amidosulfuron in aqueous solutions by LC-MS/MS.

Authors:  M Benzi; E Robotti; V Gianotti
Journal:  Environ Sci Pollut Res Int       Date:  2013-06-16       Impact factor: 4.223

2.  Study on Electrochemical Degradation of Nicosulfuron by IrO₂-Based DSA Electrodes: Performance, Kinetics, and Degradation Mechanism.

Authors:  Rui Zhao; Xuan Zhang; Fanli Chen; Xiaobing Man; Wenqiang Jiang
Journal:  Int J Environ Res Public Health       Date:  2019-01-26       Impact factor: 3.390

  2 in total

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