Optimization of ultrasonic extraction and analyses methodology by HPLC for determination of diuron and its metabolites in soil cultivation of sugar cane

Diuron, N-(3,4-dichlorophenyl)-N, N-dimethylurea can be transformed into the soil through the biodegradation of 3-(3,4-dichlorophenyl)-3-methylurea (DCPMU), 3.4-diclorofenilureia (DCPU) and 3,4-dichloroaniline (DCA). This study aimed to optimize and validate a method of extraction and analysis of th...

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Main Authors: Maria Josefa Santos Yabe, Ilza Lobo, Patrícia Cavani Martins de Mello
Format: Article
Language:English
Published: Universidade Estadual de Londrina 2009-03-01
Series:Semina: Ciências Exatas e Tecnológicas
Subjects:
Online Access:http://www.uel.br/revistas/uel/index.php/semexatas/article/view/1912
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spelling doaj-0d541a9eba01446992f46f61e86560c82020-11-24T22:58:00ZengUniversidade Estadual de LondrinaSemina: Ciências Exatas e Tecnológicas1676-54511679-03752009-03-01302107116Optimization of ultrasonic extraction and analyses methodology by HPLC for determination of diuron and its metabolites in soil cultivation of sugar caneMaria Josefa Santos YabeIlza LoboPatrícia Cavani Martins de MelloDiuron, N-(3,4-dichlorophenyl)-N, N-dimethylurea can be transformed into the soil through the biodegradation of 3-(3,4-dichlorophenyl)-3-methylurea (DCPMU), 3.4-diclorofenilureia (DCPU) and 3,4-dichloroaniline (DCA). This study aimed to optimize and validate a method of extraction and analysis of these substances in the soil by HPLC/DAD. There was extracted with methanol in the bath ultrasonic and analysis in a liquid chromatograph/detector brand Waters. The condition of analysis optimized for separation of analytes was mobile phase methanol: water 50:50 (v / v), flow 1 mL min-1. Wavelength of 240 nm was selected for the DCA and 254 nm for diuron, DCPMU and DCPU. It was used column and pre column Waters Xterra RP18, 5 um, 4.6 and 3.9 x 150 mm x 20 mm. The calibration curve was obtained from the fortification of the soil with the mixture of patterns in the range of 5 mg Kg-1 to 200 mg Kg-1 of soil. The recovery was obtained in two concentration levels of 5 and 200 mg. Kg-1 of soil was between 85 and 99%. The repeatability was 0.78%, 2.20%, 2.17% and 1.72% and intermediate precision was 2.48%, 2.11%, 3.10% and 2.77% for diuron, DCPMU, DCPU and DCA, respectively. The limit of quantification was 1.25 mg Kg-1 soil. The concentration of diuron found in some bioaugmented soil samples ranged from 5.5 to 8.9 mg Kg-1 soil, but was not detected the presence of their metabolites.http://www.uel.br/revistas/uel/index.php/semexatas/article/view/1912DiuronMetabolitesSugarcaneValidationHigh Performance Liquid ChromatographyBioaugmentation
collection DOAJ
language English
format Article
sources DOAJ
author Maria Josefa Santos Yabe
Ilza Lobo
Patrícia Cavani Martins de Mello
spellingShingle Maria Josefa Santos Yabe
Ilza Lobo
Patrícia Cavani Martins de Mello
Optimization of ultrasonic extraction and analyses methodology by HPLC for determination of diuron and its metabolites in soil cultivation of sugar cane
Semina: Ciências Exatas e Tecnológicas
Diuron
Metabolites
Sugarcane
Validation
High Performance Liquid Chromatography
Bioaugmentation
author_facet Maria Josefa Santos Yabe
Ilza Lobo
Patrícia Cavani Martins de Mello
author_sort Maria Josefa Santos Yabe
title Optimization of ultrasonic extraction and analyses methodology by HPLC for determination of diuron and its metabolites in soil cultivation of sugar cane
title_short Optimization of ultrasonic extraction and analyses methodology by HPLC for determination of diuron and its metabolites in soil cultivation of sugar cane
title_full Optimization of ultrasonic extraction and analyses methodology by HPLC for determination of diuron and its metabolites in soil cultivation of sugar cane
title_fullStr Optimization of ultrasonic extraction and analyses methodology by HPLC for determination of diuron and its metabolites in soil cultivation of sugar cane
title_full_unstemmed Optimization of ultrasonic extraction and analyses methodology by HPLC for determination of diuron and its metabolites in soil cultivation of sugar cane
title_sort optimization of ultrasonic extraction and analyses methodology by hplc for determination of diuron and its metabolites in soil cultivation of sugar cane
publisher Universidade Estadual de Londrina
series Semina: Ciências Exatas e Tecnológicas
issn 1676-5451
1679-0375
publishDate 2009-03-01
description Diuron, N-(3,4-dichlorophenyl)-N, N-dimethylurea can be transformed into the soil through the biodegradation of 3-(3,4-dichlorophenyl)-3-methylurea (DCPMU), 3.4-diclorofenilureia (DCPU) and 3,4-dichloroaniline (DCA). This study aimed to optimize and validate a method of extraction and analysis of these substances in the soil by HPLC/DAD. There was extracted with methanol in the bath ultrasonic and analysis in a liquid chromatograph/detector brand Waters. The condition of analysis optimized for separation of analytes was mobile phase methanol: water 50:50 (v / v), flow 1 mL min-1. Wavelength of 240 nm was selected for the DCA and 254 nm for diuron, DCPMU and DCPU. It was used column and pre column Waters Xterra RP18, 5 um, 4.6 and 3.9 x 150 mm x 20 mm. The calibration curve was obtained from the fortification of the soil with the mixture of patterns in the range of 5 mg Kg-1 to 200 mg Kg-1 of soil. The recovery was obtained in two concentration levels of 5 and 200 mg. Kg-1 of soil was between 85 and 99%. The repeatability was 0.78%, 2.20%, 2.17% and 1.72% and intermediate precision was 2.48%, 2.11%, 3.10% and 2.77% for diuron, DCPMU, DCPU and DCA, respectively. The limit of quantification was 1.25 mg Kg-1 soil. The concentration of diuron found in some bioaugmented soil samples ranged from 5.5 to 8.9 mg Kg-1 soil, but was not detected the presence of their metabolites.
topic Diuron
Metabolites
Sugarcane
Validation
High Performance Liquid Chromatography
Bioaugmentation
url http://www.uel.br/revistas/uel/index.php/semexatas/article/view/1912
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