Screening of pesticide residues in honeybee wax comb by LC-ESI-MS/MS. A pilot study

A developed multi-residue method using microflow-LC-ESI-QqQ-MS provided a wide-scope analysis for medium-polar and polar pesticide residues (120 compounds including breakdown products). Honeybee wax comb samples were extracted using a generic QuEChERS based procedure. Acceptable recoveries at concentration levels of 5 and 50 μg kg−1 were within the 70–120% range with an associated precision RSD <20%. The LOQ values were mostly 5 μg kg−1 for almost all pesticides. Aprox. 31 of 120 LC-amenable pesticides tested (25.8%) were detected in a pilot study of 60 samples. Pesticide residues detected using the proposed method were the breakdown products of amitraz, DMPF and DMF, an acaricide used for Varroa mite control, with a range of concentration from 5 to 464 μg kg−1 (sum of DMPF + DMF), organophosphate insecticides from 1 to 464 μg kg−1, acaricides at concentrations > 9 μg kg−1; fungicides at concentrations ranging from 1 to 23 μg kg−1. The number of positive detections due to herbicides was lower as expected and at a lower level of concentration, from 1 to 5.9 μg kg−1. © 2016 Elsevier Ltd

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Bibliographic Details
Main Authors: Herrera López, S., Lozano, A., Sosa, A., Hernando Guil, María Dolores, Fernández-Alba, A. R.
Format: artículo biblioteca
Language:English
Published: Elsevier 2016
Subjects:Pesticide residues, LC-Amenable compounds, Honeybee wax comb, Trace analysis, Microflow-LC-MS/MS,
Online Access:http://hdl.handle.net/20.500.12792/2096
http://hdl.handle.net/10261/290013
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spelling dig-inia-es-10261-2900132023-02-17T08:26:30Z Screening of pesticide residues in honeybee wax comb by LC-ESI-MS/MS. A pilot study Herrera López, S. Lozano, A. Sosa, A. Hernando Guil, María Dolores Fernández-Alba, A. R. Pesticide residues LC-Amenable compounds Honeybee wax comb Trace analysis Microflow-LC-MS/MS A developed multi-residue method using microflow-LC-ESI-QqQ-MS provided a wide-scope analysis for medium-polar and polar pesticide residues (120 compounds including breakdown products). Honeybee wax comb samples were extracted using a generic QuEChERS based procedure. Acceptable recoveries at concentration levels of 5 and 50 μg kg−1 were within the 70–120% range with an associated precision RSD <20%. The LOQ values were mostly 5 μg kg−1 for almost all pesticides. Aprox. 31 of 120 LC-amenable pesticides tested (25.8%) were detected in a pilot study of 60 samples. Pesticide residues detected using the proposed method were the breakdown products of amitraz, DMPF and DMF, an acaricide used for Varroa mite control, with a range of concentration from 5 to 464 μg kg−1 (sum of DMPF + DMF), organophosphate insecticides from 1 to 464 μg kg−1, acaricides at concentrations > 9 μg kg−1; fungicides at concentrations ranging from 1 to 23 μg kg−1. The number of positive detections due to herbicides was lower as expected and at a lower level of concentration, from 1 to 5.9 μg kg−1. © 2016 Elsevier Ltd 2023-02-17T08:26:30Z 2023-02-17T08:26:30Z 2016 artículo Chemosphere 163: 44-53 (2016) 0045-6535 http://hdl.handle.net/20.500.12792/2096 http://hdl.handle.net/10261/290013 10.1016/j.chemosphere.2016.07.008 en none Elsevier
institution INIA ES
collection DSpace
country España
countrycode ES
component Bibliográfico
access En linea
databasecode dig-inia-es
tag biblioteca
region Europa del Sur
libraryname Biblioteca del INIA España
language English
topic Pesticide residues
LC-Amenable compounds
Honeybee wax comb
Trace analysis
Microflow-LC-MS/MS
Pesticide residues
LC-Amenable compounds
Honeybee wax comb
Trace analysis
Microflow-LC-MS/MS
spellingShingle Pesticide residues
LC-Amenable compounds
Honeybee wax comb
Trace analysis
Microflow-LC-MS/MS
Pesticide residues
LC-Amenable compounds
Honeybee wax comb
Trace analysis
Microflow-LC-MS/MS
Herrera López, S.
Lozano, A.
Sosa, A.
Hernando Guil, María Dolores
Fernández-Alba, A. R.
Screening of pesticide residues in honeybee wax comb by LC-ESI-MS/MS. A pilot study
description A developed multi-residue method using microflow-LC-ESI-QqQ-MS provided a wide-scope analysis for medium-polar and polar pesticide residues (120 compounds including breakdown products). Honeybee wax comb samples were extracted using a generic QuEChERS based procedure. Acceptable recoveries at concentration levels of 5 and 50 μg kg−1 were within the 70–120% range with an associated precision RSD <20%. The LOQ values were mostly 5 μg kg−1 for almost all pesticides. Aprox. 31 of 120 LC-amenable pesticides tested (25.8%) were detected in a pilot study of 60 samples. Pesticide residues detected using the proposed method were the breakdown products of amitraz, DMPF and DMF, an acaricide used for Varroa mite control, with a range of concentration from 5 to 464 μg kg−1 (sum of DMPF + DMF), organophosphate insecticides from 1 to 464 μg kg−1, acaricides at concentrations > 9 μg kg−1; fungicides at concentrations ranging from 1 to 23 μg kg−1. The number of positive detections due to herbicides was lower as expected and at a lower level of concentration, from 1 to 5.9 μg kg−1. © 2016 Elsevier Ltd
format artículo
topic_facet Pesticide residues
LC-Amenable compounds
Honeybee wax comb
Trace analysis
Microflow-LC-MS/MS
author Herrera López, S.
Lozano, A.
Sosa, A.
Hernando Guil, María Dolores
Fernández-Alba, A. R.
author_facet Herrera López, S.
Lozano, A.
Sosa, A.
Hernando Guil, María Dolores
Fernández-Alba, A. R.
author_sort Herrera López, S.
title Screening of pesticide residues in honeybee wax comb by LC-ESI-MS/MS. A pilot study
title_short Screening of pesticide residues in honeybee wax comb by LC-ESI-MS/MS. A pilot study
title_full Screening of pesticide residues in honeybee wax comb by LC-ESI-MS/MS. A pilot study
title_fullStr Screening of pesticide residues in honeybee wax comb by LC-ESI-MS/MS. A pilot study
title_full_unstemmed Screening of pesticide residues in honeybee wax comb by LC-ESI-MS/MS. A pilot study
title_sort screening of pesticide residues in honeybee wax comb by lc-esi-ms/ms. a pilot study
publisher Elsevier
publishDate 2016
url http://hdl.handle.net/20.500.12792/2096
http://hdl.handle.net/10261/290013
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