Nitrate retention at the river–watershed interface: a new conceptual modeling approach

Author:

Billen GillesORCID,Ramarson Antsiva,Thieu Vincent,Théry Sylvain,Silvestre Marie,Pasquier Catherine,Hénault Catherine,Garnier Josette

Funder

ADEME

Agence Nationale de la Recherche

Publisher

Springer Science and Business Media LLC

Subject

Earth-Surface Processes,Water Science and Technology,Environmental Chemistry

Reference96 articles.

1. Alexander RB, Smith RA, Schwarz GE, Preston SD, Brakebill JW, Srinivasan R, Pacheco PA (2001) Atmospheric nitrogen flux from the watersheds of major estuaries of the United States: an application of the SPARROW watershed model. In: Valigura R, Alexander R, Castro M, Meyers T, Paerl H, Stacey P, Turner RE (Eds) Nitrogen loading in coastal water bodies: an atmospheric perspective. American Geophysical Union Monograph, vol 57, pp 119–170

2. Ambus P (1993) Control of denitrification enzyme activity in a streamside soil. FEMS Lett 102:225–234

3. Anderson TR, Goodale CL, Groffman PM, Walter MT (2014) Assessing denitrification from seasonally saturated soils in an agricultural landscape: a farm scale mass-balance approach. Agr Ecosyst Environ 189:60–69

4. Anglade J (2015) Agriculture biologique et qualité des ressources en eau dans le bassin de la Seine. Caractérisation des pratiques et applications territorialisées. Thèse de l’UPMC. Chapitre 5: du surplus à la lixiviation

5. Anglade J, Billen G, Garnier J (2015) Relationships for estimating N2 fixation in legumes: incidence for N balance of legume-based cropping systems in Europe. Ecosphere 3:37. https://doi.org/10.1890/ES14-00353.1

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