Risk assessment of the herbicide Clomazone to aquatic life.
Due to their widespread distribution and toxic nature, pesticides may have a serious impact on the aquatic environment. Clomazone (2-(2-chlorophenyl)methyl-4,4-dimethyl-3-isoxazolidinone) is a post emergence herbicide widely used in paddy rice fields in South Brazil, with activity against Gramineae like Echinochloa crusgalli. The recommended application rate (RAR) of the emulsible concentrate is 1.4L/ha. The high vapor pressure of Clomazone (1.44x10-4mm Hg 25oC) contributes to volatilization losses. Thus, the contamination of the aquatic environment by the herbicide may occur in aerial application. Other ways of the aquatic ecosystem contamination may occur by drainage from irrigated rice fields. In this work, studies were conducted with two primary producers and with a primary consumer in order to evaluate the risk of Clomazone to aquatic life based on maximun application rates (MAR).
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Format: | Artigo de periódico biblioteca |
Language: | Ingles English |
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1998-09-24
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Subjects: | Effect, Non-target organisms, agrochemicals, algae, herbicides, invertebrates, macrophytes, toxicity, |
Online Access: | http://www.alice.cnptia.embrapa.br/alice/handle/doc/12989 |
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dig-alice-doc-129892023-04-26T13:19:10Z Risk assessment of the herbicide Clomazone to aquatic life. JONSSON, C. M. MAIA, A. de H. N. FERREIRA, C. J. A RIBEIRO, E. O. CLAUDIO MARTIN JONSSON, CNPMA; ALINE DE HOLANDA NUNES MAIA, CNPMA. Effect Non-target organisms agrochemicals algae herbicides invertebrates macrophytes toxicity Due to their widespread distribution and toxic nature, pesticides may have a serious impact on the aquatic environment. Clomazone (2-(2-chlorophenyl)methyl-4,4-dimethyl-3-isoxazolidinone) is a post emergence herbicide widely used in paddy rice fields in South Brazil, with activity against Gramineae like Echinochloa crusgalli. The recommended application rate (RAR) of the emulsible concentrate is 1.4L/ha. The high vapor pressure of Clomazone (1.44x10-4mm Hg 25oC) contributes to volatilization losses. Thus, the contamination of the aquatic environment by the herbicide may occur in aerial application. Other ways of the aquatic ecosystem contamination may occur by drainage from irrigated rice fields. In this work, studies were conducted with two primary producers and with a primary consumer in order to evaluate the risk of Clomazone to aquatic life based on maximun application rates (MAR). 2023-04-26T13:19:10Z 2023-04-26T13:19:10Z 1998-09-24 2017 Artigo de periódico Verhandlungen des Internationalen Vereins Limnologie, v.26, p.1724-1726, 2017. http://www.alice.cnptia.embrapa.br/alice/handle/doc/12989 Ingles en openAccess |
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Effect Non-target organisms agrochemicals algae herbicides invertebrates macrophytes toxicity Effect Non-target organisms agrochemicals algae herbicides invertebrates macrophytes toxicity |
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Effect Non-target organisms agrochemicals algae herbicides invertebrates macrophytes toxicity Effect Non-target organisms agrochemicals algae herbicides invertebrates macrophytes toxicity JONSSON, C. M. MAIA, A. de H. N. FERREIRA, C. J. A RIBEIRO, E. O. Risk assessment of the herbicide Clomazone to aquatic life. |
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Due to their widespread distribution and toxic nature, pesticides may have a serious impact on the aquatic environment. Clomazone (2-(2-chlorophenyl)methyl-4,4-dimethyl-3-isoxazolidinone) is a post emergence herbicide widely used in paddy rice fields in South Brazil, with activity against Gramineae like Echinochloa crusgalli. The recommended application rate (RAR) of the emulsible concentrate is 1.4L/ha. The high vapor pressure of Clomazone (1.44x10-4mm Hg 25oC) contributes to volatilization losses. Thus, the contamination of the aquatic environment by the herbicide may occur in aerial application. Other ways of the aquatic ecosystem contamination may occur by drainage from irrigated rice fields. In this work, studies were conducted with two primary producers and with a primary consumer in order to evaluate the risk of Clomazone to aquatic life based on maximun application rates (MAR). |
author2 |
CLAUDIO MARTIN JONSSON, CNPMA; ALINE DE HOLANDA NUNES MAIA, CNPMA. |
author_facet |
CLAUDIO MARTIN JONSSON, CNPMA; ALINE DE HOLANDA NUNES MAIA, CNPMA. JONSSON, C. M. MAIA, A. de H. N. FERREIRA, C. J. A RIBEIRO, E. O. |
format |
Artigo de periódico |
topic_facet |
Effect Non-target organisms agrochemicals algae herbicides invertebrates macrophytes toxicity |
author |
JONSSON, C. M. MAIA, A. de H. N. FERREIRA, C. J. A RIBEIRO, E. O. |
author_sort |
JONSSON, C. M. |
title |
Risk assessment of the herbicide Clomazone to aquatic life. |
title_short |
Risk assessment of the herbicide Clomazone to aquatic life. |
title_full |
Risk assessment of the herbicide Clomazone to aquatic life. |
title_fullStr |
Risk assessment of the herbicide Clomazone to aquatic life. |
title_full_unstemmed |
Risk assessment of the herbicide Clomazone to aquatic life. |
title_sort |
risk assessment of the herbicide clomazone to aquatic life. |
publishDate |
1998-09-24 |
url |
http://www.alice.cnptia.embrapa.br/alice/handle/doc/12989 |
work_keys_str_mv |
AT jonssoncm riskassessmentoftheherbicideclomazonetoaquaticlife AT maiaadehn riskassessmentoftheherbicideclomazonetoaquaticlife AT ferreiracja riskassessmentoftheherbicideclomazonetoaquaticlife AT ribeiroeo riskassessmentoftheherbicideclomazonetoaquaticlife |
_version_ |
1764983954989907968 |