31. Chevreuil M, Chesterikoff A (1979) Movement of pesticides in a watershed of the Brie region:
methods and balance sheet studies. Comptes Rendus Séances Acad Agric France 65:835–845
32. Chevreuil M, Garmouma M, Fauchon N (1999) Variability of herbicides (triazines,
phenylureas) and tentative mass balance as a function of stream order, in the river Marne
basin (France) – Triazine and phenylurea flux and stream order. Hydrobiologia 410:349–355
33. Blanchoud H, Garban B, Ollivon D, Chevreuil M (2002) Herbicides and nitrogen in precipitation: progression from west to east and contribution to the Marne River (France). Chemosphere
47(9):1025–1031
34. Blanchoud H, Barriuso E, Nicola L, Schott C, Roose-Amsaleg C, Tournebize J (2013) La
contamination de l’Orgeval par les pesticides. Dans “L’observation long terme en
environnement, exemple du bassin versant de l’Orgeval”. Versailles, éd QUAE, pp 159–174
35. Queyrel W (2014) Modélisation du devenir des pesticides dans les sols à partir d’un modèle
agronomique: évaluation sur le long terme. PhD thesis, Université Pierre et Marie Curie. ED
GRN, p 284
36. Tournebize J, Passeport E, Chaumont C, Fesneau C, Guenne A, Vincent B (2013) Pesticide
de-contamination of surface waters as a wetland ecosystem service in agricultural landscapes.
Ecol Eng 56:51–59
37. Blanchoud H, Bergheaud V, Nicola L, Vilain G, Bardet S, Tallec G, Botta F, Barriusio E,
Schott C, Laverman A, Habets F, Ansart P, Desportes A, Chevreuil M (2010) Transfert de
pesticides dans le système sol-nappe-rivière: Etude du comportement de l’atrazine et de
l’isoproturon dans le bassin versant de l’Orgeval. RA 2009 PIREN-Seine, p 18
38. Thorsten P (2018) Non-parametric trend tests and change-point detection. R package
39. Chen NX, Valdes D, Marlin C, Blanchoud H, Guerin R, Rouelle M, Ribstein P (2019) Water,
nitrate and atrazine transfer through the unsaturated zone of the Chalk aquifer in Northern
France. Sci Total Environ 652:927–938
40. Brisson N, Mary B, Ripoche D et al (1998) STICS: a generic model for the simulation of crops
and their water and nitrogen balances: theory and parametrization applied to wheat and corn.
Agronomie 18(5–6):311–346
41. Queyrel W, Habets F, Blanchoud H, Ripoche D, Launay M (2016) Pesticide fate modeling in
soils with the crop model STICS: feasibility for assessment of agricultural practices. Sci Total
Environ 542:787–802. https://doi.org/10.1016/j.scitotenv.2015.10.066
42. Der Ploeg V, Rienk R, Ringe H, Machulla G (1995) Late fall site-specific soil nitrate upper
limits for groundwater protection purposes. J Environ Qual 24(4):725–733
43. Larocque M, Banton O, Lafrance P (1998) Simulation par le modèle AgriFlux du devenir de
l’atrazine et du dééthylatrazine dans un sol du Québec sous maïs sucré. Rev Sci L’eau 11
(2):191–208. http://www.erudit.org/revue/rseau/1998/v11/n2/705303ar.html
44. Xing B, Pignatello JJ, Gigliotti B (1996) Competitive sorption between atrazine and other
organic compounds in soils and model sorbents. Environ Sci Technol 30(8):2432–2440
45. Xing B, Pignatello JJ (1997) Dual-mode sorption of low-polarity compounds in glassy poly
(vinyl chloride) and soil organic matter. Environ Sci Technol 31(3):792–799
46. Laroche B (2012) Base de Donnees Géographique Des Sols de France. INRA, Orléans. www.
gissol.fr/programme/bdgsf/bdgsf.php
47. Billy C, Billen G, Sebilo M, Birgand F, Tournebize J (2010) Nitrogen isotopic composition of
leached nitrate and soil organic matter as an indicator of denitrification in a sloping drained
agricultural plot and adjacent uncultivated riparian buffer strips. Soil Biol Biochem 42
(1):108–117. https://doi.org/10.1016/j.soilbio.2009.09.026
48. PPDB (2013) The Pesticide Propertiezs DataBase (PPDB) developed by the Agriculture &
Environment Research Unit (AERU). University of Hertfordshire, Hertfordshire. http://www.
eu-footprint.org/ppdb.html
49. Baer U, Calvet R (1997) Simulation and prediction of dissipation kinetics of two herbicides in
different pedo-climatic situations. Int J Environ Anal Chem 68(2):213–237. https://doi.org/10.
1080/03067319708030492
50. Rat A, Ledoux E, Viennot P (2006) Transferts de Pesticides Vers Les Eaux Souterraines,
Modélisation À L’échelle D’un Bassin Versant (Cas D’étude Du Bassin Amont de La Vesle).
PIREN-Seine. ENSMP. http://www.sisyphe.upmc.fr/piren/webfm_send/26
160
H. Blanchoud et al.
methods and balance sheet studies. Comptes Rendus Séances Acad Agric France 65:835–845
32. Chevreuil M, Garmouma M, Fauchon N (1999) Variability of herbicides (triazines,
phenylureas) and tentative mass balance as a function of stream order, in the river Marne
basin (France) – Triazine and phenylurea flux and stream order. Hydrobiologia 410:349–355
33. Blanchoud H, Garban B, Ollivon D, Chevreuil M (2002) Herbicides and nitrogen in precipitation: progression from west to east and contribution to the Marne River (France). Chemosphere
47(9):1025–1031
34. Blanchoud H, Barriuso E, Nicola L, Schott C, Roose-Amsaleg C, Tournebize J (2013) La
contamination de l’Orgeval par les pesticides. Dans “L’observation long terme en
environnement, exemple du bassin versant de l’Orgeval”. Versailles, éd QUAE, pp 159–174
35. Queyrel W (2014) Modélisation du devenir des pesticides dans les sols à partir d’un modèle
agronomique: évaluation sur le long terme. PhD thesis, Université Pierre et Marie Curie. ED
GRN, p 284
36. Tournebize J, Passeport E, Chaumont C, Fesneau C, Guenne A, Vincent B (2013) Pesticide
de-contamination of surface waters as a wetland ecosystem service in agricultural landscapes.
Ecol Eng 56:51–59
37. Blanchoud H, Bergheaud V, Nicola L, Vilain G, Bardet S, Tallec G, Botta F, Barriusio E,
Schott C, Laverman A, Habets F, Ansart P, Desportes A, Chevreuil M (2010) Transfert de
pesticides dans le système sol-nappe-rivière: Etude du comportement de l’atrazine et de
l’isoproturon dans le bassin versant de l’Orgeval. RA 2009 PIREN-Seine, p 18
38. Thorsten P (2018) Non-parametric trend tests and change-point detection. R package
39. Chen NX, Valdes D, Marlin C, Blanchoud H, Guerin R, Rouelle M, Ribstein P (2019) Water,
nitrate and atrazine transfer through the unsaturated zone of the Chalk aquifer in Northern
France. Sci Total Environ 652:927–938
40. Brisson N, Mary B, Ripoche D et al (1998) STICS: a generic model for the simulation of crops
and their water and nitrogen balances: theory and parametrization applied to wheat and corn.
Agronomie 18(5–6):311–346
41. Queyrel W, Habets F, Blanchoud H, Ripoche D, Launay M (2016) Pesticide fate modeling in
soils with the crop model STICS: feasibility for assessment of agricultural practices. Sci Total
Environ 542:787–802. https://doi.org/10.1016/j.scitotenv.2015.10.066
42. Der Ploeg V, Rienk R, Ringe H, Machulla G (1995) Late fall site-specific soil nitrate upper
limits for groundwater protection purposes. J Environ Qual 24(4):725–733
43. Larocque M, Banton O, Lafrance P (1998) Simulation par le modèle AgriFlux du devenir de
l’atrazine et du dééthylatrazine dans un sol du Québec sous maïs sucré. Rev Sci L’eau 11
(2):191–208. http://www.erudit.org/revue/rseau/1998/v11/n2/705303ar.html
44. Xing B, Pignatello JJ, Gigliotti B (1996) Competitive sorption between atrazine and other
organic compounds in soils and model sorbents. Environ Sci Technol 30(8):2432–2440
45. Xing B, Pignatello JJ (1997) Dual-mode sorption of low-polarity compounds in glassy poly
(vinyl chloride) and soil organic matter. Environ Sci Technol 31(3):792–799
46. Laroche B (2012) Base de Donnees Géographique Des Sols de France. INRA, Orléans. www.
gissol.fr/programme/bdgsf/bdgsf.php
47. Billy C, Billen G, Sebilo M, Birgand F, Tournebize J (2010) Nitrogen isotopic composition of
leached nitrate and soil organic matter as an indicator of denitrification in a sloping drained
agricultural plot and adjacent uncultivated riparian buffer strips. Soil Biol Biochem 42
(1):108–117. https://doi.org/10.1016/j.soilbio.2009.09.026
48. PPDB (2013) The Pesticide Propertiezs DataBase (PPDB) developed by the Agriculture &
Environment Research Unit (AERU). University of Hertfordshire, Hertfordshire. http://www.
eu-footprint.org/ppdb.html
49. Baer U, Calvet R (1997) Simulation and prediction of dissipation kinetics of two herbicides in
different pedo-climatic situations. Int J Environ Anal Chem 68(2):213–237. https://doi.org/10.
1080/03067319708030492
50. Rat A, Ledoux E, Viennot P (2006) Transferts de Pesticides Vers Les Eaux Souterraines,
Modélisation À L’échelle D’un Bassin Versant (Cas D’étude Du Bassin Amont de La Vesle).
PIREN-Seine. ENSMP. http://www.sisyphe.upmc.fr/piren/webfm_send/26
160
H. Blanchoud et al.
