Page 258 - Modelisation du devenir des pesticides...
P. 258

BIBLIOGRAPHIE



               [Guimont, 2005] Guimont, S. (2005). Devenir des pesticides dans les sols en fonc-
                  tion de l’état d’humidité et du mode de circulation de l’eau dans le sol. PhD
                  thesis, Institut National Polytechnique de Lorraine, Nancy.

               [Guivarc’h Blanchoud, 2001] Guivarc’h Blanchoud, H. (2001). Apport et transfert
                  de pesticides en milieux agricole et urbain sur le bassin versant de la Marne :
                  vers une evaluation globale. PhD thesis, Ecole Nationale des Ponts et Chaussées,
                  Paris.
               [Guo et al., 2000] Guo, L., Jury, W. A., Wagenet, R. J., & Flury, M. (2000). De-
                  pendence of pesticide degradation on sorption : nonequilibrium model and ap-
                  plication to soil reactors. Journal of Contaminant Hydrology, 43(1), 45–62.

               [Gutierrez & Baran, 2009] Gutierrez, A. & Baran, N. (2009). Long-term transfer
                  of diffuse pollution at catchment scale : Respective roles of soil, and the unsa-
                  turated and saturated zones (brévilles, france). Journal of Hydrology, 369(3–4),
                  381–391.
               [Gärdenäs et al., 2006] Gärdenäs, A. I., Šimůnek, J., Jarvis, N., & van Genuchten,
                  M. (2006). Two-dimensional modelling of preferential water flow and pesticide
                  transport from a tile-drained field. Journal of Hydrology, 329(3-4), 647–660.
               [Hall et al., 1991] Hall, J. K., Mumma, R. O., & Watts, D. W. (1991). Leaching
                  and runoff losses of herbicides in a tilled and untilled field. Agriculture, Ecosys-
                  tems & Environment, 37(4), 303–314.

               [Hansen et al., 2007] Hansen, J. R., Refsgaard, J. C., Hansen, S., & Ernstsen, V.
                  (2007). Problems with heterogeneity in physically based agricultural catchment
                  models. Journal of Hydrology, 342(1–2), 1–16.
               [Hansen et al., 2012] Hansen, S., Abrahamsen, P., Petersen, C. T., & Styczen, M.

                  (2012). DAISY MODEL USE, CALIBRATION, AND VALIDATION. Transac-
                  tions of the Asabe, 55(4), 1315–1333. WOS :000309089900017.
               [Hardy et al., 2002] Hardy,   A.,   Koepp,    H.,  Leskowiz,   J.,  Papadopoulou-
                  Mourkidou, Fernandez, S., Boesten, J. J. T. I., Carter, A. D., Hart, A., & Luttik,
                  R. (2002). Opinion of the Scientific Commitee on Plants on specific questions
                  from the Commission concerning the evaluation of atrazine in the context of
                  Council Directive 91/414/EEC. Technical Report scp/atrazine/002-final, Euro-
                  pean Council.
               [Henine et al., 2012] Henine, H., Chaumont, C., Tournebize, J., Augeard, B., Kao,
                  C., & Nedelec, Y. (2012). Le role des reseaux de drainage agricole dans le ra-
                  lentissement dynamique des crues : interpretation des donnees de l’observatoire
                  orgeval. 3, 16–23.
               [Heppell & Chapman, 2006] Heppell, C. M. & Chapman, A. S. (2006). Analysis
                  of a two-component hydrograph separation model to predict herbicide runoff in
                  drained soils. Agricultural Water Management, 79(2), 177–207.




               246
   253   254   255   256   257   258   259   260   261   262   263