African Journal of
Agricultural Research

  • Abbreviation: Afr. J. Agric. Res.
  • Language: English
  • ISSN: 1991-637X
  • DOI: 10.5897/AJAR
  • Start Year: 2006
  • Published Articles: 6932

Full Length Research Paper

Sorption-desorption isotherms of diuron alone and in a mixture in soils with different physico-chemical properties

Vanessa Takeshita
  • Vanessa Takeshita
  • Ecotoxicology Lab, Center of Nuclear Energy in Agriculture (CENA), University of São Paulo (USP), Piracicaba - São Paulo – Brazil.
  • Google Scholar
Kassio Ferreira Mendes
  • Kassio Ferreira Mendes
  • Department of Plant Sciences, Federal University of Viçosa (UFV), Viçosa – Minas Gerais – Brazil.
  • Google Scholar
Pedro Jacob Christoffoleti
  • Pedro Jacob Christoffoleti
  • Department of Plant Sciences, College of Agriculture "Luiz de Queiroz" (ESALQ), University of São Paulo (USP), Piracicaba - São Paulo – Brazil.
  • Google Scholar
Valdemar Luiz Tornisielo
  • Valdemar Luiz Tornisielo
  • Ecotoxicology Lab, Center of Nuclear Energy in Agriculture (CENA), University of São Paulo (USP), Piracicaba - São Paulo – Brazil.
  • Google Scholar
Ana Carolina Dias Guimaraes
  • Ana Carolina Dias Guimaraes
  • Department of Agronomy, University of Mato Grosso State (UNEMAT), Alta Floresta – Mato Grosso – Brazil.
  • Google Scholar


  •  Received: 18 January 2019
  •  Accepted: 22 March 2019
  •  Published: 28 March 2019

References

Ahangar AG, Smernik RJ, Kookana RS, Chittleborough DJ (2008). Clear effects of soil organic matter chemistry, as determined by NMR spectroscopy, on the sorption of diuron. Chemosphere 70(7):1153-1160.
Crossref

 

Alva AK, Singh M (1990). Sorption of bromacil, diuron, norfluron, and simazine at various horizons in two soils. Bulletin of Environmental Contamination and Toxicology 45:365-374.
Crossref

 

Araujo ICL, Melo VF (2012). Sorção de diuron em minerais da fração argila. Química Nova 35:1312-1317.
Crossref

 

Barriuso E, Laird DA, Koskinen WC, Dowdy RH (1994). Atrazine desorption from smectites. Soil Science Society of America Journal 58(6):1632-1638.
Crossref

 

Bonfleur EJ, Tornisielo VL, Regitano JB, Lavorenti A (2015). The effects of glyphosate and atrazine mixture on soil microbial population and subsequent impacts on their fate in a tropical soil. Water Air and Soil Pollution 226:1-10.
Crossref

 

Cáceres-Jensen L, Rodríguez-Becerra J, Parra-Rivero J, Escudey M, Barrientos L, Castro-Castillo V (2013). Sorption kinetics of diuron on volcanic ash derived soils. Journal of Hazardous Materials 261:602-613.
Crossref

 

Chaplain V, Brault A, Tessier D, Défossez P (2008). Soil hydrophobicity: a contribution of diuron sorption experiments. European Journal of Soil Science 59(6):1202-1208.
Crossref

 

Fernández-Bayo JD, Nogales R, Romero E (2008). Evaluation of the sorption process for imidacloprid and diuron in eight agricultural soils from southern Europe using various kinetic models. Journal of Agricultural and Food Chemistry 56:5266-5272.
Crossref

 

Giacomazzi S, Cochet N (2004). Environmental impact of diuron transformation: a review. Chemosphere 56:1021-1032.
Crossref

 

Giles CH, MacEwan TH, Nakhwa SN, Smith D (1960). A system of classification of solution adsorption isotherms. Journal of the Chemical Society 111:3973-3993.
Crossref

 

Giori FG, Tornisielo VL, Pellegrino Cerri CE, Regitano JB (2014). Sugarcane straw management and soil attributes on alachlor and diuron sorption in highly weathered tropical soils. Journal of Environmental Science and Health Part B 49(5):352-360.
Crossref

 

Green RE, Karickhoff SW (1990). Sorption estimates for modeling. In: Cheng HH, Ed.; Pesticides in the Soil Environment: Processes, Impacts, and Modeling. Madison: Soil Science Society of America pp. 79–102.

 

Inoue MH, Oliveira Júnior RS, Constantin J, Alonso DG, Santana DC (2008). Lixiviação e degradação de diuron em dois solos de textura contrastante. Acta Scientiarum. Agronomy 30:631-638.

 

Liu Y, Xu Z, Wu X, Gui W, Zhu G (2010). Adsorption and desorption behavior of herbicide diuron on various Chinese cultivated soils. Journal of Hazardous Materials 178:462-468.
Crossref

 

Martins JM, Mermoud A (1998). Sorption and degradation of four nitroaromatic herbicides in mono and multi-solute saturated/ unsaturated soil batch systems. Journal of Contaminant Hydrology 33(1-2):187-210.
Crossref

 

Mendes KF, Inoue MH, Goulart MO, Pimpinato RF, Tornisielo VL (2016b). Leaching of a mixture of hexazinone, sulfometuron-methyl, and diuron applied to soils of contrasting textures. Water, Air and Soil Pollution 227(8):268.
Crossref

 

Mendes KF, Martins BAB, Reis FC, Dias ACR, Tornisielo VL (2017). Methodologies to study the behavior of herbicides on plants and the soil using radioisotopes. Planta Daninha 35:1-21.
Crossref

 

Mendes KF, Reis MR, Inoue MH, Pimpinato RF, Tornisielo VL (2016b). Sorption and desorption of mesotrione alone and mixed with S-metolachlor+ terbuthylazine in Brazilian soils. Geoderma 280:22-28.
Crossref

 

Organisation for Economic Co-operation and Development (OECD) (2000). OECD guidelines for the testing of chemicals. Test number 106, Adsorption – Desorption Using a Batch Equilibrium Method. Paris: OECD, P 44.

 

Oliveira Júnior RS, Regitano JB (2009). Dinâmica de pesticidas no solo. In: Melo VF, Alleoni LRF, ed. Química e mineralogia do solo: parte II, aplicações. Viçosa: Sociedade Brasileira de Ciência do Solo pp. 187-248.

 

Pateiro-Moure M, Arias-Estévez M, Simal-Gándara J (2010). Competitive and non-competitive adsorption/desorption of paraquat, diquat and difenzoquat in vineyard-devoted soils. Journal of hazardous materials 178(1-3):194-201.
Crossref

 

Pesticide Properties Database (PPDB) (2018). Agriculture & Environment Research Unit (AERU). University of Hertfordshire. List of Pesticide Active Ingredients. 

View

 

Reddy KS, Gambrell RP (1987). Factors affecting the adsorption of 2,4-D and methyl parathion in soils and sediments. Agriculture, Ecosystems and Environment 18:231-241.
Crossref

 

Rocha PRR, Faria AT, Borges LGFC, Silva LOC, Silva AA, Ferreira EA (2013). Sorção e dessorção do diuron em quatro latossolos brasileiros. Planta Daninha 31(1):231-238.
Crossref

 

Rodrigues BN, Almeida FS (2011). Guia de herbicidas. 6th. ed. Londrina: IAPAR 697 p.

 

Smernik RJ, Kookana RS (2015). The effects of organic matter–mineral interactions and organic matter chemistry on diuron sorption across a diverse range of soils. Chemosphere 119:99-104.
Crossref

 

Sousa G, Pereira GAM, Teixeira MFF, Faria AT, Paiva MCG, Silva AA (2018). Sorption and desorption of diuron, hexazinone and mix (diuron+ hexazinone) in soils with different attributes. Planta Daninha 36:1-18.
Crossref

 

Umali BP, Oliver DP, Ostendorf B, Forrester S, Chittleborough DJ, Hutson JL, Kookana RS (2012). Spatial distribution of diuron sorption affinity as affected by soil, terrain and management practices in an intensively managed apple orchard. Journal of hazardous materials 217:398-405.
Crossref

 

Wang P, Keller AA (2009) Sorption and desorption of atrazine and diuron onto water dispersible soil primary size fractions. Water Research 43:1448-1456.
Crossref