Analytical control optimization of residues fungicides from the class of pyrazole carboxamides in water
DOI:
https://doi.org/10.11603/mcch.2410-681X.2017.v0.i3.8203Keywords:
fungicides, high-performance liquid chromatography, water.Abstract
Introduction. Over the past few years, fungicidal formulations based on fluxapyroxad, penthiopyrad, isopyrazam and sedaxan have been proposed in the world market. Such pesticides meet modern requirements and are recommended in the world to protect more than 30 major crops. Given the wide range of crops for which these preparations are offered, as well as the anti-drug strategy for the pesticides application, which involves the use of substances with a new mechanism of action and the introduction of combined formulations based on two or more active substances, it is possible to actively use pyrazolecarboxamides in one region, that is why there is a possibility of their simultaneous arrival in environmental objects.
The aim ofthe study– to develop a methodology for the analytical determination of fluxapyroxad, penthiopyrad, isopyrazam and sedaxanin their joint presence in water.
Materials and Methods. Chromatographic analysis was performed on liquid chromatographs LC-10ADvp and LC-20AD from Shimadzu (Japan) with ultraviolet detection.
Results and Discussion. It was found that the C18 column is more promising for solving the problem of pyrazolecarboxamidesseparation under study. The gradient regime in the eluent system was recognized as optimal: A (acetonitrile), B (methanol) and C (bidistilled water). The retention time (min) is: for fluxapyroxad– 6.8±0.1; trans-sedaxan– 7.4±0.1; cis-sedaxane– 8.2±0.1; penthiopyrad– 9.3±0.1 and isopyrazam– 11.0 ± 0.1.
Conclusions. The conditions for the simultaneous determination of fluxapyroxad, penthiopyrad, isopyrazam and sedaxanby the high-performance liquid chromatography method with their simultaneous presence in water sample wasdeveloped.It makes it possible to significantly accelerate the analysis and reduce the costs of conducting it.
References
Trybel, S.O. Stryhun, O.O.,&Hamanova, O.M. (2014).Suchasnyistankhimichnohometoduzakhysturoslyn [The current state of the chemical method of plant protection].Karantynizakhystroslyn – Quarantine and Plant Protection, 1 (210), 1–4 [in Ukrainian].
Mode of Action of Fungicides: FRAC Fungicide Resistance Action Committee:http://www.frac.info. (Assessed 25 of August 2017).
Stolyarov, B.V., Savinov, I.M., &Vittenberg, A.G. (1998).Prakticheskaya gazovaya i zhidkostnaya khromatografiya: ucheb. posobie [Practical gas and liquid chromatography]. St. Petersburg: Izd-vo S.-Peterburg. un-ta [in Russian].
PPDB: Pesticide PropertiesDataBase: http://sitem.herts.ac.uk/aeru/ppdb/en/Reports. (Assessed 25 of August 2017)
Metodychni vkazivky z vyznachennia fluksapiroksadu u vodi metodom vysokoefektyvnoi ridynnoi khromatohrafii [Guidelinesfordeterminationof fluxapyroxad in water by high-performance liquid chromatography]. Order No. 30 of 08.01.2013 of Ministry of Ecology and Natural Resources of Ukraine No. 1209-2012. (2013).[in Ukrainian].
Metodychni vkazivky z vyznachennia pentiopiradu u vodi metodom vysokoefektyvnoi ridynnoi khromatohrafii [Guidelinesfordeterminationof penthiopyrad in water by high-performance liquid chromatography]. Order No. 155 of 18.05.2015 ofMinistry of Ecology and Natural Resources of Ukraine No. 1374-2015.(2015).[in Ukrainian].
Metodychni vkazivky z vyznachennia izopirazamu u vodi metodom vysokoefektyvnoi ridynnoi khromatohrafii [Guidelinesfordeterminationof isopyrazam in water by high-performance liquid chromatography]. Order No. 97 of 26.03.2015 ofMinistry of Ecology and Natural Resources of Ukraine No.1334-2015. (2015).[in Ukrainian].
Metodychni vkazivky z vyznachennia sedaksanu u vodi metodom vysokoefektyvnoi ridynnoi khromatohrafii [Guidelinesfordeterminationof sedaxane in water by high-performance liquid chromatography]. Order No. 156 of 18.05.2015 ofMinistry of Ecology and Natural Resources of Ukraine No 1417-2015. (2015).[in Ukrainian].