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Journal of Environmental Science and Health, Part B
Pesticides, Food Contaminants, and Agricultural Wastes
Volume 53, 2018 - Issue 7
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Articles

An integrated approach for assessing the migration behavior of chlorpyrifos and carbaryl in the unsaturated soil zone

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Pages 469-475 | Received 17 Oct 2017, Accepted 28 Feb 2018, Published online: 06 Apr 2018

References

  • Boivin, A.; Cherrier, R.; Schiavon, M. A Comparison of Five Pesticides Adsorption and Desorption Processes in Thirteen Contrasting Field Soils. Chemosphere. 2005, 61(5), 668–676. DOI: 10.1016/j.chemosphere.2005.03.024.
  • Wauchope, R. D.; Yeh, S.; Linders, J. B. H. J.; Kloskowski, R.; Tanaka, K.; Rubin, B.; Katayama, A.; Kördel, W.; Gerstl, Z.; Lane, M.; et al. Pesticide Soil Sorption Parameters: Theory, Measurement, Uses, Limitations and Reliability. Pest Manag. Sci. 2002, 58(5), 419–445. DOI: 10.1002/ps.489.
  • Smernik, R. J.; Kookana, R. S. The Effects of Organic Matter–Mineral Interactions and Organic Matter Chemistry on Diuron Sorption Across a Diverse Range of Soils. Chemosphere. 2015, 119, 99–104. DOI: 10.1016/j.chemosphere.2014.05.066.
  • Loague, K.; Lloyd, D.; Nguyen, A.; Davis, S. N.; Abrams, R. H. A Case Study Simulation of DBCP Groundwater Contamination in Fresno County, California 1. Leaching Through the Unsaturated Subsurface. J. Contam. Hydrol. 1998, 29(2), 109–136. DOI: 10.1016/S0169-7722(97)00027-2.
  • Srinivasan, P.; Sarmah, A. K. Assessing the Sorption and Leaching Behaviour of Three Sulfonamides in Pasture Soils Through Batch and Column Studies. Sci. Total Environ. 2014, 493, 535–543. DOI: 10.1016/j.scitotenv.2014.06.034.
  • Tahir, M.; Hassan, A. U.; Magbool, S.; Barber, B.; Koskinen, W. C.; Nen, W. C.; Peng, X.; Mulla, D. J. Sorption and Leaching Potential of Isoproturon and Atrazine in Low Organic Carbon Soil of Pakistan Under a Wheat-Maize Rotation. Pedosphere. 2016, 26(5), 687–698. DOI: 10.1016/S1002-0160(15)60077-7.
  • Grondona, S. I.; Gonzalez, M.; Martínez, D. E.; Massone, H. E.; Miglioranza, K. S. B. Endosulfan Leaching from Typic Argiudolls in Soybean Tillage Areas and Groundwater Pollution Implications. Sci. Total Environ. 2014, 484(1), 146–153. DOI: 10.1016/j.scitotenv.2014.03.016.
  • Reddy, S. N.; Gupta, S.; Gajbhiye, V. T. Adsorption-Desorption and Leaching of Pyraclostrobin in Indian Soils. J. Environ. Sci. Heal. Part B. 2013, 48(11), 948–959. DOI: 10.1080/03601234.2013.816600.
  • Guzzella, L.; Capri, E.; Corcia, A. Di; Barra Caracciolo, A.; Giuliano, G. Fate of Diuron and Linuron in a Field Lysimeter Experiment. J. Environ. Qual. 2006, 35(1), 312. DOI: 10.2134/jeq2004.0025.
  • Vereecken, H.; Vanderborght, J.; Kasteel, R.; Spiteller, M.; Schäffer, A.; Close, M. Do Lab-Derived Distribution Coefficient Values of Pesticides Match Distribution Coefficient Values Determined from Column and Field-Scale Experiments? A Critical Analysis of Relevant Literature. J. Environ. Qual. 2011, 40(3), 879. DOI: 10.2134/jeq2010.0404.
  • Zhang, Y. L.; Lin, S. S.; Dai, C. M.; Shi, L.; Zhou, X. F. Sorption-Desorption and Transport of Trimethoprim and Sulfonamide Antibiotics in Agricultural Soil: Effect of Soil Type, Dissolved Organic Matter, and pH. Environ. Sci. Pollut. Res. 2014, 21(9), 5827–5835. DOI: 10.1007/s11356-014-2493-8.
  • Gustafson, D. I. Groundwater Ubiquity Score: A Simple Method for Assessing Pesticide Leachability. Environ. Toxicol. Chem. 1989, 8(4), 339–357. DOI: 10.1002/etc.5620080411.
  • https://riunet.upv.es/handle/10251/62587 (Accessed Nov. 2017).
  • Rosenbom, A. E.; Olsen, P.; Plauborg, F.; Grant, R.; Juhler, R. K.; Brüsch, W.; Kjær, J. Pesticide Leaching Through Sandy and Loamy Fields – Long-Term Lessons Learnt from the Danish Pesticide Leaching Assessment Programme. Environ. Pollut. 2015, 201, 75–90. DOI: 10.1016/j.envpol.2015.03.002.
  • Oliveira, R. S.; Alonso, D. G.; Koskinen, W. C.; Papiernik, S. K. Comparative Sorption, Desorption and Leaching Potential of Aminocyclopyrachlor and Picloram. J. Environ. Sci. Health, Part B. 2013, 48(12), 1049–1057. DOI: 10.1080/03601234.2013.824291.
  • Azcarate, M. P.; Montoya, J. C.; Koskinen, W. C. Sorption, Desorption and Leaching Potential of Sulfonylurea Herbicides in Argentinean Soils. J. Environ. Sci. Heal. – Part B Pestic. Food Contam. Agric. Wastes. 2015, 50(4), 229–237. DOI: 10.1080/03601234.2015.999583.
  • Gupta, S.; Gajbhiye, V. T. Adsorption-Desorption, Persistence and Leaching Behavior of Thifluzamide in Alluvial Soil. Chemosphere. 2004, 57(6), 471–480. DOI: 10.1016/j.chemosphere.2004.06.033.
  • Maszkowska, J.; Kołodziejska, M.; Białk-Bielińska, A.; Mrozik, W.; Kumirska, J.; Stepnowski, P.; Palavinskas, R.; Krüger, O.; Kalbe, U. Column and Batch Tests of Sulfonamide Leaching from Different Types of Soil. J. Hazard. Mater. 2013, 260, 468–474. DOI: 10.1016/j.jhazmat.2013.05.053.
  • Goss, M. J.; Ehlers, W.; Unc, A. The Role of Lysimeters in the Development of Our Understanding of Processes in the Vadose Zone Relevant to Contamination of Groundwater Aquifers. Phys. Chem. Earth. 2010, 35(15–18), 913–926. DOI: 10.1016/j.pce.2010.06.004.
  • Martins, E. L.; Weber, O. L. S.; Dores, E. F. G. C.; Spadotto, C. A. Leaching of Seven Pesticides Currently Used in Cotton Crop in Mato Grosso State—Brazil. J. Environ. Sci. Health,. Part B. 2007, 42(8), 877–882. DOI: 10.1080/03601230701623217.
  • Katagi, T. Soil Column Leaching of Pesticides. Rev. Environ. Contam. Toxicol. 2013, 221, 1–105.
  • Dufilho, A. C.; Monza, L. B.; Loewy, R. M. In Simulación de la influencia de prácticas agrícolas en la lixiviación de plaguicidas al acuífero libre del Río Neuquén-Patagonia, Proceedings of the XI Congreso Latinoameriano de Hidrología, Metrología y Estudios Ambientales, Aug 19–24, 2012; Cartagena de Indias, Colombia; Asociación Latinoamericana de Hidrología Subterránea para el desarrollo ALHSUD.
  • World Health Organization. The WHO Recommended Classification of Pesticides By Hazard and Guidelines To Classification 2009. World Heal. Organ. 2010, 44(8), 1–60.
  • Cichón, L.; Araque, L.; Garrido, S. Residuos y Tolerancias de Insecticidas Para el Control de Plagas de Frutales de Pepita. www.cafi.org.ar/wp-content/uploads/2014/09/INTA_Residuos-y-tolerancias-de-insecticidas.pdf (accessed Nov. 2015).
  • Chlorpyrifos. http://sitem.herts.ac.uk/aeru/footprint/es/Reports/154.htm (accessed Oct. 2017).
  • Carbaryl. http://sitem.herts.ac.uk/aeru/footprint/es/Reports/115.htm (accessed Oct. 2017).
  • Shareef, K.; Shaw, G. Sorption Kinetics of 2,4-D and Carbaryl in Selected Agricultural Soils of Northern Iraq: Application of a Dual-Rate Model. Chemosphere. 2008, 72(1), 8–15. DOI: 10.1016/j.chemosphere.2008.02.056.
  • Loewy, R. M.; Monza, L. B.; Kirs, V. E.; Savini, M. C. Pesticide Distribution in an Agricultural Environment in Argentina. J. Environ. Sci. Health. Part B. 2011, 46(8), 662–670.
  • Tiwari, M. K.; Guha, S. Role of Soil Organic Matter on the Sorption and Cosorption of Endosulfan and Chlorpyrifos on Agricultural Soils. J. Environ. Eng. 2012, 138(4), 426–435. DOI: 10.1061/(ASCE)EE.1943-7870.0000490.
  • Zhang, X.; Shen, Y.; Yu, X.; Liu, X. Dissipation of Chlorpyrifos and Residue Analysis in Rice, Soil and Water Under Paddy Field Conditions. Ecotoxicol. Environ. Saf. 2012, 78, 276–280. DOI: 10.1016/j.ecoenv.2011.11.036.
  • Qiu, Y.; Wu, M.; Jiang, J.; Li, L.; Daniel Sheng, G. Enhanced Irreversible Sorption of Carbaryl to Soils Amended with Crop-Residue-Derived Biochar. Chemosphere. 2013, 93(1), 69–74. DOI: 10.1016/j.chemosphere.2013.05.002.
  • Parolo, M. E.; Savini, M. C.; Loewy, R. M. Characterization of Soil Organic Matter by FT-IR Spectroscopy and Its Relationship with Chlorpyrifos Sorption. J. Environ. Manage. 2017, 196, 316–322. DOI: 10.1016/j.jenvman.2017.03.018.
  • Fernandes De Oliveira, M.; Johnston, C. T.; Premachandra, G. S.; Teppen, B. J.; Li, H.; Laird, D. A.; Zhu, D.; Boyd, S. A. Spectroscopic Study of Carbaryl Sorption on Smectite from Aqueous Suspension. Environ. Sci. Technol. 2005, 39(23), 9123–9129. DOI: 10.1021/es048108s.
  • Rogers, M. R.; Stringfellow, W. T. Partitioning of Chlorpyrifos to Soil and Plants in Vegetated Agricultural Drainage Ditches. Chemosphere. 2009, 75(1), 109–114. DOI: 10.1016/j.chemosphere.2008.11.036.
  • Flury, M. Experimental Evidence of Transport of Pesticides through Field Soils—A Review. J. Environ. Qual. 1996, 25(1), 25. DOI: 10.2134/jeq1996.00472425002500010005x.
  • Stumm, W.; Sigg, L.; Sulzberger, B. Chemistry of the solid-water interface : processes at the mineral-water and particle-water interface in natural systems. Wiley: New York, 1992; p. 428.
  • Bonfleur, E. J.; Kookana, R. S.; Tornisielo, V. L.; Regitano, J. B. Organomineral Interactions and Herbicide Sorption in Brazilian Tropical and Subtropical Oxisols under No-Tillage. J. Agric. Food Chem. 2015, 64(20), acs.jafc.5b04616.
  • Savini, M. C.; Loewy, R. M.; Nicotra, V. E.; Parolo, M. E. Contribution of Soil Components on the Sorption of Chlorpyrifos. Water, Air, Soil Pollut. 2017, 228(1), 36. DOI: 10.1007/s11270-016-3153-z.
  • Yang, Y.; Sheng, G. Enhanced Pesticide Sorption by Soils Containing Particulate Matter from Crop Residue Burns. Environ. Sci. Technol. 2003, 37(16), 3635–3639. DOI: 10.1021/es034006a.
  • Gebremariam, S. Y.; Beutel, M. W.; Flury, M.; Harsh, J. B.; Yonge, D. R. Nonsingular Adsorption/Desorption of Chlorpyrifos in Soils and Sediments: Experimental Results and Modeling. Environ. Sci. Technol. 2012, 46(2), 869–875. DOI: 10.1021/es203341b.
  • Mondal, N. K.; Chattoraj, S.; Sadhukhan, B.; Das, B. Evaluation of Carbaryl Sorption in Alluvial Soil. Songklanakarin J. Sci. Technol. 2013, 35(6), 727–738.
  • Starrett, S..; Christians, N..; Austin, T. A. Movement of Herbicides Under Two Irrigation Regimes Applied to Turfgrass. Adv. Environ. Res. 2000, 4(2), 169–176. DOI: 10.1016/S1093-0191(00)00020-4.
  • Kazemi, H. V.; Anderson, S. H.; Goyne, K. W.; Gantzer, C. J. Aldicarb and Carbofuran Transport in a Hapludalf Influenced by Differential Antecedent Soil Water Content and Irrigation Delay. Chemosphere. 2009, 74(2), 265–273. DOI: 10.1016/j.chemosphere.2008.09.015.

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