Page 261 - Modelisation du devenir des pesticides...
P. 261

BIBLIOGRAPHIE



                  behaviour in a drained heavy clay soil : 2. persistence and transport. Journal of
                  Hydrology, 163(3), 217–231.
               [Juraske et al., 2009] Juraske, R., Castells, F., Vijay, A., Muñoz, P., & Antón, A.
                  (2009). Uptake and persistence of pesticides in plants : Measurements and model

                  estimates for imidacloprid after foliar and soil application. Journal of Hazardous
                  Materials, 165(1-3), 683–689.
               [Kah et al., 2007] Kah, M., Beulke, S., & Brown, C. D. (2007). Factors influencing
                  degradation of pesticides in soil. Journal of Agricultural and Food Chemistry,
                  55(11), 4487–4492.
               [Kaliop, 2014] Kaliop (2014). eaufrance.
               [Katagi, 2008] Katagi, T. (2008). Surfactant effects on environmental behavior of

                  pesticides. In D. M. Whitacre (Ed.), Reviews of Environmental Contamination
                  and Toxicology, number 194 in Reviews of Environmental Contamination and
                  Toxicology (pp. 71–177). Springer New York.
               [Klein et al., 2000] Klein, M., Hosang, J., Schäfer, H., Erzgräber, B., & Resseler,
                  H. (2000). Comparing and evaluating pesticide leaching models : results of
                  simulations with PELMO. Agricultural Water Management, 44(1), 263–281.
               [Klein et al., 1997] Klein, M., Müller, M., Dust, M., Görlitz, G., Gottesbüren, B.,
                  Hassink, J., Kloskowski, R., Kubiak, R., Resseler, H., & Schäfer, H. (1997).
                  Validation of the pesticide leaching model PELMO using lysimeter studies per-
                  formed for registration. Chemosphere, 35(11), 2563–2587.
               [Koskinen et al., 2001] Koskinen, W., Cox, L., & Yen, P. (2001). Changes in sorp-
                  tion bioavailability of imidacloprid metabolites in soil with incubation time.
                  Biology and Fertility of Soils, 33(6), 546–550.

               [Koskinen et al., 2006] Koskinen, W. C., Calderon, M. J., Rice, P. J., & Cornejo,
                  J. (2006). Sorption–desorption of flucarbazone and propoxycarbazone and their
                  benzenesulfonamide and triazolinone metabolites in two soils. Pest Management
                  Science, 62(7), 598–602.
               [Koskinen et al., 2002] Koskinen, W. C., Rice, P. J., Anhalt, J. A., Sakaliene, O.,
                  Moorman, T. B., & Arthur, E. L. (2002). Sorption desorption of aged sulfony-

                  laminocarbonyltriazolinon herbicides in soil. Journal of Agricultural and Food
                  Chemistry, 50(19), 5368–5372.
               [Kočárek et al., 2005] Kočárek, M., Kodešová, R., Kozák, J., Drábek, O., & Vacek,
                  O. (2005). Chlortoluron behavior in five different soil types. 7(51), 304–309.
               [Krutz et al., 2008] Krutz, L. J., Burke, I. C., Reddy, K. N., & Zablotowicz, R. M.
                  (2008). Evidence for cross-adaptation between s -triazine herbicides resulting
                  in reduced efficacy under field conditions. Pest Management Science, 64(10),
                  1024–1030.




                                                                                               249
   256   257   258   259   260   261   262   263   264   265   266