31. Vilmin L, Aissa-Grouz N, Garnier J et al (2015) Impact of hydro-sedimentary processes on the
dynamics of soluble reactive phosphorus in the Seine River. Biogeochemistry 122:229–251.
https://doi.org/10.1007/s10533-014-0038-3
32. Flipo N, Even S, Poulin M et al (2004) Biogeochemical modelling at the river scale: plankton
and Periphyton dynamics - Grand Morin case study, France. Ecol Model 176:333–347
33. Thouvenot-Korppoo M, Billen G, Garnier J (2009) Modelling benthic denitrification processes
over a whole drainage network. J Hydrol 379:239–250. https://doi.org/10.1016/j.jhydrol.2009.
10.005
34. Marescaux A, Thieu V, Borges AV, Garnier J (2018) Seasonal and spatial variability of the
partial pressure of carbon dioxide in the human-impacted Seine River in France. Sci Rep
8:13961. https://doi.org/10.1038/s41598-018-32332-2
35. Garnier J, Billen G, Hannon E et al (2002) Modeling transfer and retention of nutrients in the
drainage network of the Danube River. Estuar Coast Shelf 54:285–308
36. Le TPQ, Billen G, Garnier J, Chau VM (2014) Long-term biogeochemical functioning of the
Red River (Vietnam): past and present situations. Reg Environ Chang 15:329–339. https://doi.
org/10.1007/s10113-014-0646-4
37. Sferratore A, Garnier J, Billen G et al (2006) Diffuse and point sources of silica in the Seine
River watershed. Environ Sci Technol 40:6630–6635. https://doi.org/10.1021/es060710q
38. Even S, Poulin M, Mouchel J-M et al (2004) Modelling oxygen deficits in the Seine River
downstream of combined sewer overflows. Ecol Model 173:177–196
39. Even S, Mouchel J-M, Servais P et al (2007) Modeling the impacts of combined sewer
overflows on the river Seine water quality. Sci Total Environ 375:140–151. https://doi.org/10.
1016/j.scitotenv.2006.12.007
40. Even S, Poulin M, Garnier J et al (1998) River ecosystem modelling: application of the ProSe
model to the Seine river (France). Hydrobiologia 373:27–37
41. Vilmin L, Flipo N, Escoffier N et al (2016) Carbon fate in a large temperate human-impacted
river system: focus on benthic dynamics. Glob Biogeochem Cycles 30:1086–1104. https://doi.
org/10.1002/2015GB005271
42. Vilmin L, Flipo N, Escoffier N, Groleau A (2018) Estimation of the water quality of a large
urbanized river as defined by the European WFD: what is the optimal sampling frequency?
Environ Sci Pollut Res 25:23485–23501. https://doi.org/10.1007/s11356-016-7109-z
43. Polus E, Flipo N, de Fouquet C, Poulin M (2011) Geostatistics for assessing the efficiency of
distributed physically-based water quality model. Application to nitrates in the Seine River.
Hydrol Process 25:217–233. https://doi.org/10.1002/hyp.7838
44. Vilmin L, Flipo N, De Fouquet C, Poulin M (2015) Pluri-annual sediment budget in a navigated
river system: The Seine River (France). Sci Total Environ 502:48–59. https://doi.org/10.1016/j.
scitotenv.2014.08.110
45. Eckhardt N (2008) A comparison of baseflow indices, which were calculated with seven
different baseflow separation methods. J Hydrol 352:168–173
46. Billen G, Garnier J (2000) Nitrogen transfers through the Seine drainage network: a budget
based on the application of the “Riverstrahler” model. Hydrobiologia 410:139–150
47. Garnier J, Némery J, Billen G, Théry S (2005) Nutrient dynamics and control of eutrophication
in the Marne River system: modelling the role of exchangeable phosphorus. J Hydrol
304:397–412
48. Thieu V, Billen G, Garnier J (2009) Nutrient transfer in three contrasting NW European
watersheds: the Seine, Somme, and Scheldt Rivers. A comparative application of the
Seneque/Riverstrahler model. Water Res 43:1740–1754. https://doi.org/10.1016/j.watres.
2009.01.014
49. Billen G, Garnier J, Némery J et al (2007) A long-term view of nutrient transfers through the
Seine River continuum. Sci Total Environ 375:80–97. https://doi.org/10.1016/j.scitotenv.2006.
12.005
50. Passy P, Gypens N, Billen G et al (2013) A model reconstruction of riverine nutrient fluxes and
eutrophication in the Belgian Coastal Zone since 1984. J Mar Syst 128:106–122
Ecological Functioning of the Seine River: From Long-Term Modelling. . .
213
dynamics of soluble reactive phosphorus in the Seine River. Biogeochemistry 122:229–251.
https://doi.org/10.1007/s10533-014-0038-3
32. Flipo N, Even S, Poulin M et al (2004) Biogeochemical modelling at the river scale: plankton
and Periphyton dynamics - Grand Morin case study, France. Ecol Model 176:333–347
33. Thouvenot-Korppoo M, Billen G, Garnier J (2009) Modelling benthic denitrification processes
over a whole drainage network. J Hydrol 379:239–250. https://doi.org/10.1016/j.jhydrol.2009.
10.005
34. Marescaux A, Thieu V, Borges AV, Garnier J (2018) Seasonal and spatial variability of the
partial pressure of carbon dioxide in the human-impacted Seine River in France. Sci Rep
8:13961. https://doi.org/10.1038/s41598-018-32332-2
35. Garnier J, Billen G, Hannon E et al (2002) Modeling transfer and retention of nutrients in the
drainage network of the Danube River. Estuar Coast Shelf 54:285–308
36. Le TPQ, Billen G, Garnier J, Chau VM (2014) Long-term biogeochemical functioning of the
Red River (Vietnam): past and present situations. Reg Environ Chang 15:329–339. https://doi.
org/10.1007/s10113-014-0646-4
37. Sferratore A, Garnier J, Billen G et al (2006) Diffuse and point sources of silica in the Seine
River watershed. Environ Sci Technol 40:6630–6635. https://doi.org/10.1021/es060710q
38. Even S, Poulin M, Mouchel J-M et al (2004) Modelling oxygen deficits in the Seine River
downstream of combined sewer overflows. Ecol Model 173:177–196
39. Even S, Mouchel J-M, Servais P et al (2007) Modeling the impacts of combined sewer
overflows on the river Seine water quality. Sci Total Environ 375:140–151. https://doi.org/10.
1016/j.scitotenv.2006.12.007
40. Even S, Poulin M, Garnier J et al (1998) River ecosystem modelling: application of the ProSe
model to the Seine river (France). Hydrobiologia 373:27–37
41. Vilmin L, Flipo N, Escoffier N et al (2016) Carbon fate in a large temperate human-impacted
river system: focus on benthic dynamics. Glob Biogeochem Cycles 30:1086–1104. https://doi.
org/10.1002/2015GB005271
42. Vilmin L, Flipo N, Escoffier N, Groleau A (2018) Estimation of the water quality of a large
urbanized river as defined by the European WFD: what is the optimal sampling frequency?
Environ Sci Pollut Res 25:23485–23501. https://doi.org/10.1007/s11356-016-7109-z
43. Polus E, Flipo N, de Fouquet C, Poulin M (2011) Geostatistics for assessing the efficiency of
distributed physically-based water quality model. Application to nitrates in the Seine River.
Hydrol Process 25:217–233. https://doi.org/10.1002/hyp.7838
44. Vilmin L, Flipo N, De Fouquet C, Poulin M (2015) Pluri-annual sediment budget in a navigated
river system: The Seine River (France). Sci Total Environ 502:48–59. https://doi.org/10.1016/j.
scitotenv.2014.08.110
45. Eckhardt N (2008) A comparison of baseflow indices, which were calculated with seven
different baseflow separation methods. J Hydrol 352:168–173
46. Billen G, Garnier J (2000) Nitrogen transfers through the Seine drainage network: a budget
based on the application of the “Riverstrahler” model. Hydrobiologia 410:139–150
47. Garnier J, Némery J, Billen G, Théry S (2005) Nutrient dynamics and control of eutrophication
in the Marne River system: modelling the role of exchangeable phosphorus. J Hydrol
304:397–412
48. Thieu V, Billen G, Garnier J (2009) Nutrient transfer in three contrasting NW European
watersheds: the Seine, Somme, and Scheldt Rivers. A comparative application of the
Seneque/Riverstrahler model. Water Res 43:1740–1754. https://doi.org/10.1016/j.watres.
2009.01.014
49. Billen G, Garnier J, Némery J et al (2007) A long-term view of nutrient transfers through the
Seine River continuum. Sci Total Environ 375:80–97. https://doi.org/10.1016/j.scitotenv.2006.
12.005
50. Passy P, Gypens N, Billen G et al (2013) A model reconstruction of riverine nutrient fluxes and
eutrophication in the Belgian Coastal Zone since 1984. J Mar Syst 128:106–122
Ecological Functioning of the Seine River: From Long-Term Modelling. . .
213
