Giovanni Caria, Baghdad Ouddane, Sopheak Net, Nicolas Proix, Claire Froger
{"title":"Liquid chromatography - high-resolution quadrupole time-of-flight mass spectrometry analysis of pesticides in French agricultural soils","authors":"Giovanni Caria, Baghdad Ouddane, Sopheak Net, Nicolas Proix, Claire Froger","doi":"10.1080/03067319.2023.2277881","DOIUrl":null,"url":null,"abstract":"ABSTRACTAgricultural soils are not controlled in France for the massive use of pesticides. The quadrupole mass spectrometer is used for targeted analysis of a few dozen pesticides, while the high-resolution time-of-flight quadrupole mass spectrometer (QTOF-MS) allows both targeted and non-targeted analysis of hundreds of pesticides. In this study, a targeted method was developed in soils using pressurised-liquid extraction (PLE) and liquid chromatography (LC) coupled with a QTOF-MS. This method development was necessary to carry out next suspect and non-target screening in soils and has been validated for triazines, phenylureas and emerging pesticides in soils. The internal calibration of pesticides was validated for low levels (0.5 to 12.5 µg L−1) and high levels (12.5 to 400 µg L−1) using labelled internal standards. The determination coefficient (R2) of calibration curve of each pesticide was greater than 0.99. Excepted DCPU and IPPU, the mean recoveries of pesticides in five reference soils spiked at 40 µg kg−1 and 10 µg kg−1 were greater than 93.5% and 106.2%, and the variation coefficients lower than 14.7% and 22.5%, respectively. So, multiplier factors were applied to the quantification results of DCPU and IPPU, respectively, 2.5 and 1.7 for correction. This validated method has been applied to a selection of 40 French soils of Centre-Val de Loire region. The limit of quantification (LOQ) of pesticides varied between 0.005 and 0.175 µg kg−1 in soils. Seven pesticides were the most detected in soils. Seventeen pesticides were detected between 10 and 50% of cases and very low detection frequencies (<10%) were found for 10 pesticides in soils. The mean concentrations were 0.730 µg kg−1 dw for triazines, 1.367 µg kg−1 dw for phenylureas and 7.638 µg kg−1 dw for emerging pesticides. DCPMU and epoxiconazole were detected in all the 40 soils.KEYWORDS: Pesticidessoilpressurised-liquid extractionliquid chromatographytime-of-flightmass spectrometry AcknowledgmentsColleagues of INRAE Info&Sols in Orléans (France), responsible for the French Soil Quality Monitoring Network (RMQS), are gratefully acknowledged for providing the soil samples and informations about their agricultural uses and phytosanitary treatments.Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationFundingThis work was supported by ‘AgroEcoSystem’, a scientific department of INRAE (National Research Institute for Agriculture, Food and Environment).","PeriodicalId":13973,"journal":{"name":"International Journal of Environmental Analytical Chemistry","volume":"8 1‐2","pages":"0"},"PeriodicalIF":2.3000,"publicationDate":"2023-11-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"International Journal of Environmental Analytical Chemistry","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1080/03067319.2023.2277881","RegionNum":4,"RegionCategory":"化学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"CHEMISTRY, ANALYTICAL","Score":null,"Total":0}
引用次数: 0
Abstract
ABSTRACTAgricultural soils are not controlled in France for the massive use of pesticides. The quadrupole mass spectrometer is used for targeted analysis of a few dozen pesticides, while the high-resolution time-of-flight quadrupole mass spectrometer (QTOF-MS) allows both targeted and non-targeted analysis of hundreds of pesticides. In this study, a targeted method was developed in soils using pressurised-liquid extraction (PLE) and liquid chromatography (LC) coupled with a QTOF-MS. This method development was necessary to carry out next suspect and non-target screening in soils and has been validated for triazines, phenylureas and emerging pesticides in soils. The internal calibration of pesticides was validated for low levels (0.5 to 12.5 µg L−1) and high levels (12.5 to 400 µg L−1) using labelled internal standards. The determination coefficient (R2) of calibration curve of each pesticide was greater than 0.99. Excepted DCPU and IPPU, the mean recoveries of pesticides in five reference soils spiked at 40 µg kg−1 and 10 µg kg−1 were greater than 93.5% and 106.2%, and the variation coefficients lower than 14.7% and 22.5%, respectively. So, multiplier factors were applied to the quantification results of DCPU and IPPU, respectively, 2.5 and 1.7 for correction. This validated method has been applied to a selection of 40 French soils of Centre-Val de Loire region. The limit of quantification (LOQ) of pesticides varied between 0.005 and 0.175 µg kg−1 in soils. Seven pesticides were the most detected in soils. Seventeen pesticides were detected between 10 and 50% of cases and very low detection frequencies (<10%) were found for 10 pesticides in soils. The mean concentrations were 0.730 µg kg−1 dw for triazines, 1.367 µg kg−1 dw for phenylureas and 7.638 µg kg−1 dw for emerging pesticides. DCPMU and epoxiconazole were detected in all the 40 soils.KEYWORDS: Pesticidessoilpressurised-liquid extractionliquid chromatographytime-of-flightmass spectrometry AcknowledgmentsColleagues of INRAE Info&Sols in Orléans (France), responsible for the French Soil Quality Monitoring Network (RMQS), are gratefully acknowledged for providing the soil samples and informations about their agricultural uses and phytosanitary treatments.Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationFundingThis work was supported by ‘AgroEcoSystem’, a scientific department of INRAE (National Research Institute for Agriculture, Food and Environment).
期刊介绍:
International Journal of Environmental Analytical Chemistry comprises original research on all aspects of analytical work related to environmental problems. This includes analysis of organic, inorganic and radioactive pollutants in air, water, sediments and biota; and determination of harmful substances, including analytical methods for the investigation of chemical or metabolic breakdown patterns in the environment and in biological samples.
The journal also covers the development of new analytical methods or improvement of existing ones useful for the control and investigation of pollutants or trace amounts of naturally occurring active chemicals in all environmental compartments. Development, modification and automation of instruments and techniques with potential in environment sciences are also part of the journal.
Case studies are also considered, particularly for areas where information is scarce or lacking, providing that reported data is significant and representative, either spatially or temporally, and quality assured. Owing to the interdisciplinary nature of this journal, it will also include topics of interest to researchers in the fields of medical science (health sciences), toxicology, forensic sciences, oceanography, food sciences, biological sciences and other fields that, in one way or another, contribute to the knowledge of our environment and have to make use of analytical chemistry for this purpose.