Sorption and desorption of triadimefon by soils and model soil colloids

Sorption-desorption of the azole fungicide triadimefon [1-(4- chlorophenoxy)-3,3-dimethyl-1-(1H-1,2,4-triazol-1-yl)-2-butanone] on eight soils and a series of single, binary, and ternary model soil colloids was determined using the batch equilibration technique. Regression analysis between Freundlich sorption coefficients (K(f)) and soil properties suggested that both clay and organic C (OC) were important in triadimefon sorption by soils, with increasing importance of clay for soils with high clay and relatively low OC contents. Triadimefon sorption coefficients on soil were not significantly affected by the concentration of electrolyte or the presence of soluble soil material in solution, but they were highly dependent on the soil:solution ratio due to the nonlinearity of triadimefon sorption on soil. Freundlich sorption isotherms slopes were very similar for all soils (0.75 ± 0.02). Desorption did not greatly depend on the concentration at which it was determined and showed higher hysteresis for more sorptive soils. Results of triadimefon sorption on model sorbents supported that both humic acid and montmorillonite-type clay constituents contribute to triadimefon retention by soil colloids.

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Main Authors: Celis, R., Koskinen, W. C., Hermosín, M.C., Cornejo, J.
Format: artículo biblioteca
Language:English
Published: American Chemical Society 1999
Online Access:http://hdl.handle.net/10261/61051
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spelling dig-irnas-es-10261-610512018-09-10T10:28:51Z Sorption and desorption of triadimefon by soils and model soil colloids Celis, R. Koskinen, W. C. Hermosín, M.C. Cornejo, J. Sorption-desorption of the azole fungicide triadimefon [1-(4- chlorophenoxy)-3,3-dimethyl-1-(1H-1,2,4-triazol-1-yl)-2-butanone] on eight soils and a series of single, binary, and ternary model soil colloids was determined using the batch equilibration technique. Regression analysis between Freundlich sorption coefficients (K(f)) and soil properties suggested that both clay and organic C (OC) were important in triadimefon sorption by soils, with increasing importance of clay for soils with high clay and relatively low OC contents. Triadimefon sorption coefficients on soil were not significantly affected by the concentration of electrolyte or the presence of soluble soil material in solution, but they were highly dependent on the soil:solution ratio due to the nonlinearity of triadimefon sorption on soil. Freundlich sorption isotherms slopes were very similar for all soils (0.75 ± 0.02). Desorption did not greatly depend on the concentration at which it was determined and showed higher hysteresis for more sorptive soils. Results of triadimefon sorption on model sorbents supported that both humic acid and montmorillonite-type clay constituents contribute to triadimefon retention by soil colloids. Peer Reviewed 2012-11-25T19:36:59Z 2012-11-25T19:36:59Z 1999 2012-11-25T19:36:59Z artículo http://purl.org/coar/resource_type/c_6501 doi: 10.1021/jf980618g issn: 0021-8561 e-issn: 1520-5118 Journal of Agricultural and Food Chemistry 47(2): 776-781 (1999) http://hdl.handle.net/10261/61051 10.1021/jf980618g en none American Chemical Society
institution IRNAS ES
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country España
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libraryname Biblioteca del IRNAS España
language English
description Sorption-desorption of the azole fungicide triadimefon [1-(4- chlorophenoxy)-3,3-dimethyl-1-(1H-1,2,4-triazol-1-yl)-2-butanone] on eight soils and a series of single, binary, and ternary model soil colloids was determined using the batch equilibration technique. Regression analysis between Freundlich sorption coefficients (K(f)) and soil properties suggested that both clay and organic C (OC) were important in triadimefon sorption by soils, with increasing importance of clay for soils with high clay and relatively low OC contents. Triadimefon sorption coefficients on soil were not significantly affected by the concentration of electrolyte or the presence of soluble soil material in solution, but they were highly dependent on the soil:solution ratio due to the nonlinearity of triadimefon sorption on soil. Freundlich sorption isotherms slopes were very similar for all soils (0.75 ± 0.02). Desorption did not greatly depend on the concentration at which it was determined and showed higher hysteresis for more sorptive soils. Results of triadimefon sorption on model sorbents supported that both humic acid and montmorillonite-type clay constituents contribute to triadimefon retention by soil colloids.
format artículo
author Celis, R.
Koskinen, W. C.
Hermosín, M.C.
Cornejo, J.
spellingShingle Celis, R.
Koskinen, W. C.
Hermosín, M.C.
Cornejo, J.
Sorption and desorption of triadimefon by soils and model soil colloids
author_facet Celis, R.
Koskinen, W. C.
Hermosín, M.C.
Cornejo, J.
author_sort Celis, R.
title Sorption and desorption of triadimefon by soils and model soil colloids
title_short Sorption and desorption of triadimefon by soils and model soil colloids
title_full Sorption and desorption of triadimefon by soils and model soil colloids
title_fullStr Sorption and desorption of triadimefon by soils and model soil colloids
title_full_unstemmed Sorption and desorption of triadimefon by soils and model soil colloids
title_sort sorption and desorption of triadimefon by soils and model soil colloids
publisher American Chemical Society
publishDate 1999
url http://hdl.handle.net/10261/61051
work_keys_str_mv AT celisr sorptionanddesorptionoftriadimefonbysoilsandmodelsoilcolloids
AT koskinenwc sorptionanddesorptionoftriadimefonbysoilsandmodelsoilcolloids
AT hermosinmc sorptionanddesorptionoftriadimefonbysoilsandmodelsoilcolloids
AT cornejoj sorptionanddesorptionoftriadimefonbysoilsandmodelsoilcolloids
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