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Updated: Jun 28, 2026

Measuring Rates of Herbicide Metabolism in Dicot Weeds with an Excised Leaf Assay
Published on: September 7, 2015
Analytical strategy photodegradation/chemiluminescence/continuous-flow multicommutation methodology for the
J R Albert-García1, M Catala Icardo, J Martínez Calatayud
1Department of Analytical Chemistry, University of Valencia, Valencia, Spain.
Abstract:
The present paper is dealing with an analytical strategy based on coupling photodegradation, chemiluminescence and multicommutation continuous-flow methodology for the determination of the pesticide Propanil, a common herbicide. The pesticide solution is inserted as small segments sequentially alternated with segments of the solution for adjusting the suitable medium for the photodegradation. Both flow-rates (sample and medium) are adjusted to required time for photodegradation, 2.0min; and then, the resulting solution is also sequentially inserted as segments alternated with segments of the oxidizing solutions system, 1.00x10(-4)moll(-1) potassium permanganate in 2.00moll(-1) sulphuric acid medium. The calibration range, from 10mugl(-1) to 25mgl(-1), resulted in a linear behaviour over the range 10mugl(-1)-5mgl(-1) and fitting the linear equation: I=780.30C+95.28; correlation coefficient 0.9999. The limit of detection was 8mugl(-1) and the sample throughput 20h(-1). After testing the influence of a large series of potential interferents the method is applied to water samples obtained from different places and to one formulation. The method is valid for the determination of other pesticides from the same chemical family, namely: alachlor, flumetsulam, furalaxyl and ofurace. Calibration graphs, limits of detection, repeatability and determination in water samples are obtained for each reported pesticide.
