SORPTION, DESORPTION, HALF-LIFE AND LEACHING OF SULFOMETURON-METHYL IN DIFFERENT SOIL CLASSES

ABSTRACT Understanding the behaviour of herbicides in the soil can contribute to adapting the correct dose for efficient weed control with less environmental impact. In this study, we sought to evaluate the factors involved in the sorption, desorption, half-life and leaching processes of sulfometuro...

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Veröffentlicht in:Caatinga 2022-09, Vol.35 (3), p.557-566
Hauptverfasser: SILVA, CYDIANNE CAVALCANTE DA, ALMEIDA, ALANA HELLEN BATISTA DE, FREITAS, DANIEL VIANA DE, SILVA, FRANCISCA DANIELE DA, CHAGAS, PAULO SÉRGIO FERNANDES DAS, SILVA, DANIEL VALADÃO
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creator SILVA, CYDIANNE CAVALCANTE DA
ALMEIDA, ALANA HELLEN BATISTA DE
FREITAS, DANIEL VIANA DE
SILVA, FRANCISCA DANIELE DA
CHAGAS, PAULO SÉRGIO FERNANDES DAS
SILVA, DANIEL VALADÃO
description ABSTRACT Understanding the behaviour of herbicides in the soil can contribute to adapting the correct dose for efficient weed control with less environmental impact. In this study, we sought to evaluate the factors involved in the sorption, desorption, half-life and leaching processes of sulfometuron-methyl in three soil classes: Cambissolo Háplico (CX) (Inceptisol), Latossolo Vermelho (LV) (Oxisol) and Neossolo Quartzarênico (RQ) (Entisol). The sorption and desorption tests were performed using the “batch equilibrium" method. The studies of degradation and formation of metabolites were estimated from the half-life at the end of 180 days. Leaching potential was estimated by testing PVC columns filled with soil. Analyses were performed by ultra-performance liquid chromatography coupled to a mass spectrometer for herbicide quantification. The higher sorption of sulfometuron-methyl in LV (2.81) is related to the low pH (4.7) and mineralogical composition, mainly due to the higher concentration of Fe and Al oxides in this soil, influencing the lower desorption of the herbicide in LV (0.59). This result contributed to more remarkable herbicide persistence in this soil, reducing the molecules available in the solution for degradation. These results contributed to the longer half-life (19 days) in LV compared to the other soils. Among the studied soils, RQ had the highest risk of transport of sulfometuron-methyl based on the GUS Index (2.2) due to its greater desorption (0.34). The results showed that the studied processes are dependent on the physical, chemical and mineralogical attributes of the different classes of soils. RESUMO Entender o comportamento dos herbicidas no solo pode contribuir para adequação da dose correta para o controle das plantas daninhas eficiente com menor impacto ambiental. Nesta pesquisa, buscou-se avaliar os fatores envolvidos nos processos de sorção, dessorção, meia-vida e lixiviação do sulfometuron-methyl em três classes de solo: Cambissolo Háplico (CX), Latossolo Vermelho (LV) e Neossolo Quartzarênico (RQ). Os ensaios de sorção e dessorção foram realizados pelo método “batch equilibrium”. Os estudos de degradação e formação de metabólitos foi estimado pelo tempo de meia-vida ao final de 180 dias. O potencial de lixiviação foi estimado por meio do ensaio em colunas de PVC preenchidas com solo. As análises foram realizadas por cromatografia líquida de ultra performance acoplada ao espectrômetro de massas para quantificação do herbicid
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In this study, we sought to evaluate the factors involved in the sorption, desorption, half-life and leaching processes of sulfometuron-methyl in three soil classes: Cambissolo Háplico (CX) (Inceptisol), Latossolo Vermelho (LV) (Oxisol) and Neossolo Quartzarênico (RQ) (Entisol). The sorption and desorption tests were performed using the “batch equilibrium" method. The studies of degradation and formation of metabolites were estimated from the half-life at the end of 180 days. Leaching potential was estimated by testing PVC columns filled with soil. Analyses were performed by ultra-performance liquid chromatography coupled to a mass spectrometer for herbicide quantification. The higher sorption of sulfometuron-methyl in LV (2.81) is related to the low pH (4.7) and mineralogical composition, mainly due to the higher concentration of Fe and Al oxides in this soil, influencing the lower desorption of the herbicide in LV (0.59). This result contributed to more remarkable herbicide persistence in this soil, reducing the molecules available in the solution for degradation. These results contributed to the longer half-life (19 days) in LV compared to the other soils. Among the studied soils, RQ had the highest risk of transport of sulfometuron-methyl based on the GUS Index (2.2) due to its greater desorption (0.34). The results showed that the studied processes are dependent on the physical, chemical and mineralogical attributes of the different classes of soils. RESUMO Entender o comportamento dos herbicidas no solo pode contribuir para adequação da dose correta para o controle das plantas daninhas eficiente com menor impacto ambiental. Nesta pesquisa, buscou-se avaliar os fatores envolvidos nos processos de sorção, dessorção, meia-vida e lixiviação do sulfometuron-methyl em três classes de solo: Cambissolo Háplico (CX), Latossolo Vermelho (LV) e Neossolo Quartzarênico (RQ). Os ensaios de sorção e dessorção foram realizados pelo método “batch equilibrium”. Os estudos de degradação e formação de metabólitos foi estimado pelo tempo de meia-vida ao final de 180 dias. O potencial de lixiviação foi estimado por meio do ensaio em colunas de PVC preenchidas com solo. As análises foram realizadas por cromatografia líquida de ultra performance acoplada ao espectrômetro de massas para quantificação do herbicida. A maior sorção do sulfometuron-methyl no LV (2,81) está relacionada ao baixo pH (4,7) e à composição mineralógica, principalmente pela maior concentração de óxidos de Fe e Al, deste solo, influenciando na menor dessorção do herbicida em LV (0,59). Tal resultado contribuiu para maior persistência do herbicida nesse solo reduzindo as moléculas disponíveis na solução para a degradação. Estes resultados contribuíram para o maior tempo de meia-vida (19 dias) no LV comparado aos demais solos. Entre os solos estudados, o RQ indicou o maior risco de transporte do sulfometuron-methyl pelo Índice de GUS (2,2), em decorrência da sua maior dessorção (0,34). 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Caatinga</addtitle><description>ABSTRACT Understanding the behaviour of herbicides in the soil can contribute to adapting the correct dose for efficient weed control with less environmental impact. In this study, we sought to evaluate the factors involved in the sorption, desorption, half-life and leaching processes of sulfometuron-methyl in three soil classes: Cambissolo Háplico (CX) (Inceptisol), Latossolo Vermelho (LV) (Oxisol) and Neossolo Quartzarênico (RQ) (Entisol). The sorption and desorption tests were performed using the “batch equilibrium" method. The studies of degradation and formation of metabolites were estimated from the half-life at the end of 180 days. Leaching potential was estimated by testing PVC columns filled with soil. Analyses were performed by ultra-performance liquid chromatography coupled to a mass spectrometer for herbicide quantification. The higher sorption of sulfometuron-methyl in LV (2.81) is related to the low pH (4.7) and mineralogical composition, mainly due to the higher concentration of Fe and Al oxides in this soil, influencing the lower desorption of the herbicide in LV (0.59). This result contributed to more remarkable herbicide persistence in this soil, reducing the molecules available in the solution for degradation. These results contributed to the longer half-life (19 days) in LV compared to the other soils. Among the studied soils, RQ had the highest risk of transport of sulfometuron-methyl based on the GUS Index (2.2) due to its greater desorption (0.34). The results showed that the studied processes are dependent on the physical, chemical and mineralogical attributes of the different classes of soils. RESUMO Entender o comportamento dos herbicidas no solo pode contribuir para adequação da dose correta para o controle das plantas daninhas eficiente com menor impacto ambiental. Nesta pesquisa, buscou-se avaliar os fatores envolvidos nos processos de sorção, dessorção, meia-vida e lixiviação do sulfometuron-methyl em três classes de solo: Cambissolo Háplico (CX), Latossolo Vermelho (LV) e Neossolo Quartzarênico (RQ). Os ensaios de sorção e dessorção foram realizados pelo método “batch equilibrium”. Os estudos de degradação e formação de metabólitos foi estimado pelo tempo de meia-vida ao final de 180 dias. O potencial de lixiviação foi estimado por meio do ensaio em colunas de PVC preenchidas com solo. As análises foram realizadas por cromatografia líquida de ultra performance acoplada ao espectrômetro de massas para quantificação do herbicida. A maior sorção do sulfometuron-methyl no LV (2,81) está relacionada ao baixo pH (4,7) e à composição mineralógica, principalmente pela maior concentração de óxidos de Fe e Al, deste solo, influenciando na menor dessorção do herbicida em LV (0,59). Tal resultado contribuiu para maior persistência do herbicida nesse solo reduzindo as moléculas disponíveis na solução para a degradação. Estes resultados contribuíram para o maior tempo de meia-vida (19 dias) no LV comparado aos demais solos. Entre os solos estudados, o RQ indicou o maior risco de transporte do sulfometuron-methyl pelo Índice de GUS (2,2), em decorrência da sua maior dessorção (0,34). 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Caatinga</addtitle><date>2022-09-01</date><risdate>2022</risdate><volume>35</volume><issue>3</issue><spage>557</spage><epage>566</epage><pages>557-566</pages><issn>0100-316X</issn><issn>1983-2125</issn><eissn>1983-2125</eissn><abstract>ABSTRACT Understanding the behaviour of herbicides in the soil can contribute to adapting the correct dose for efficient weed control with less environmental impact. In this study, we sought to evaluate the factors involved in the sorption, desorption, half-life and leaching processes of sulfometuron-methyl in three soil classes: Cambissolo Háplico (CX) (Inceptisol), Latossolo Vermelho (LV) (Oxisol) and Neossolo Quartzarênico (RQ) (Entisol). The sorption and desorption tests were performed using the “batch equilibrium" method. The studies of degradation and formation of metabolites were estimated from the half-life at the end of 180 days. Leaching potential was estimated by testing PVC columns filled with soil. Analyses were performed by ultra-performance liquid chromatography coupled to a mass spectrometer for herbicide quantification. The higher sorption of sulfometuron-methyl in LV (2.81) is related to the low pH (4.7) and mineralogical composition, mainly due to the higher concentration of Fe and Al oxides in this soil, influencing the lower desorption of the herbicide in LV (0.59). This result contributed to more remarkable herbicide persistence in this soil, reducing the molecules available in the solution for degradation. These results contributed to the longer half-life (19 days) in LV compared to the other soils. Among the studied soils, RQ had the highest risk of transport of sulfometuron-methyl based on the GUS Index (2.2) due to its greater desorption (0.34). The results showed that the studied processes are dependent on the physical, chemical and mineralogical attributes of the different classes of soils. RESUMO Entender o comportamento dos herbicidas no solo pode contribuir para adequação da dose correta para o controle das plantas daninhas eficiente com menor impacto ambiental. Nesta pesquisa, buscou-se avaliar os fatores envolvidos nos processos de sorção, dessorção, meia-vida e lixiviação do sulfometuron-methyl em três classes de solo: Cambissolo Háplico (CX), Latossolo Vermelho (LV) e Neossolo Quartzarênico (RQ). Os ensaios de sorção e dessorção foram realizados pelo método “batch equilibrium”. Os estudos de degradação e formação de metabólitos foi estimado pelo tempo de meia-vida ao final de 180 dias. O potencial de lixiviação foi estimado por meio do ensaio em colunas de PVC preenchidas com solo. As análises foram realizadas por cromatografia líquida de ultra performance acoplada ao espectrômetro de massas para quantificação do herbicida. A maior sorção do sulfometuron-methyl no LV (2,81) está relacionada ao baixo pH (4,7) e à composição mineralógica, principalmente pela maior concentração de óxidos de Fe e Al, deste solo, influenciando na menor dessorção do herbicida em LV (0,59). Tal resultado contribuiu para maior persistência do herbicida nesse solo reduzindo as moléculas disponíveis na solução para a degradação. Estes resultados contribuíram para o maior tempo de meia-vida (19 dias) no LV comparado aos demais solos. Entre os solos estudados, o RQ indicou o maior risco de transporte do sulfometuron-methyl pelo Índice de GUS (2,2), em decorrência da sua maior dessorção (0,34). Os resultados demonstraram que, os processos estudados são dependentes dos atributos físicos, químicos e mineralógicos das diferentes classes de solos.</abstract><pub>Universidade Federal Rural do Semi-Árido</pub><doi>10.1590/1983-21252022v35n306rc</doi><tpages>10</tpages><orcidid>https://orcid.org/0000-0002-0279-6132</orcidid><orcidid>https://orcid.org/0000-0003-0800-0489</orcidid><orcidid>https://orcid.org/0000-0003-0644-2849</orcidid><orcidid>https://orcid.org/0000-0002-6961-7872</orcidid><orcidid>https://orcid.org/0000-0002-1986-5114</orcidid><orcidid>https://orcid.org/0000-0002-0097-672X</orcidid><oa>free_for_read</oa></addata></record>
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subjects AGRICULTURE, DAIRY & ANIMAL SCIENCE
AGRONOMY
FISHERIES
FOOD SCIENCE & TECHNOLOGY
FORESTRY
VETERINARY SCIENCES
title SORPTION, DESORPTION, HALF-LIFE AND LEACHING OF SULFOMETURON-METHYL IN DIFFERENT SOIL CLASSES
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