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Fitton, N.Bindi, M.Brilli, L.Cichota, R.Dibari, C.Fuchs, K.Huguenin-Elie, O.Klumpp, K.Lieffering, M.Lüscher, A.Martin, R.McAuliffe, R.Merbold, LutzNewton, P.Rees, M.R.Smith, P.Topp, F.E.C.Snow, V.[Modelling biological N fixation and grass-legume dynamics with process-based biogeochemical models of varying complexity]Modelling biological N fixation and grass-legume dynamics with process-based biogeochemical models of varying complexity

Simulation models are extensively used to predict agricultural productivity and greenhouse gas emissions. However, the uncertainties of (reduced) model ensemble simulations have not been assessed systematically for variables affecting food security and climate change mitigation, within multi‐spec...


Ehrhardt, F.Soussana, J.F.Bellocchi, G.Grace, P.McAuliffe, R.Recous, S.Sándor, R.Smith, P.Snow, V.Merbold, Lutz[Assessing uncertainties in crop and pasture ensemble model simulations of productivity and N2O emissions]Assessing uncertainties in crop and pasture ensemble model simulations of productivity and N2O emissions

Simulation models quantify the impacts on carbon (C) and nitrogen (N) cycling in grasslandsystems caused by changes in management practices. To support agricultural policies, it is however important to contrast the responses of alternative models, which can differ greatly in their treatment of ke...


Sándor, R.Ehrhardt, F.Brilli, L.Carozzi, M.Recous, S.Smith, P.Snow, V.Soussana, J.-F.Dorich, C.D.Fuchs, K.Fitton, N.Gongadze, K.Klumpp, K.Liebig, M.Martin, R.Merbold, LutzNewton, Paul C.D.Rees, R.M.Rolinski, S.Bellocchi, G.[The use of biogeochemical models to evaluate mitigation of greenhouse gas emissions from managed grasslands]The use of biogeochemical models to evaluate mitigation of greenhouse gas emissions from managed grasslands

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