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The New Phytologist|July 7, 2015
The role of stoichiometric flexibility in modelling forest ecosystem responses to nitrogen fertilizationJohannes Meyerholt, Sönke ZaehleGlobal Change Biology|April 15, 2020
Ensemble projections elucidate effects of uncertainty in terrestrial nitrogen limitation on future carbon uptakeJohannes Meyerholt, Kerstin Sickel, Sönke ZaehleThe New Phytologist|November 19, 2019
Whole-plant optimality predicts changes in leaf nitrogen under variable CO2 and nutrient availabilitySilvia Caldararu, Tea Thum, Lin Yu, et al.Plos One|August 15, 2018
Bigleaf-An R package for the calculation of physical and physiological ecosystem properties from eddy covariance dataJürgen Knauer, Tarek S El-Madany, Sönke Zaehle, et al.Global Change Biology|May 6, 2015
Does the growth response of woody plants to elevated CO2 increase with temperature? A model-oriented meta-analysisSofia Baig, Belinda E Medlyn, Lina M Mercado, et al.Global Change Biology|July 20, 2026
Simulated CO2 Fertilization Drives Progressive Phosphorus Limitation via Accelerated Organic Cycling in Amazonian ForestsKatrin Fleischer, Lin Yu, Lucia Fuchslueger, et al.Global Change Biology|June 8, 2013
Global patterns of nitrogen limitation: confronting two global biogeochemical models with observationsR Quinn Thomas, Sönke Zaehle, Pamela H Templer, et al.The New Phytologist|January 20, 2019
Towards a more physiological representation of vegetation phosphorus processes in land surface modelsMingkai Jiang, Silvia Caldararu, Sönke Zaehle, et al.Global Change Biology|October 13, 2021
Long-term ecosystem nitrogen limitation from foliar δ15 N data and a land surface modelSilvia Caldararu, Tea Thum, Lin Yu, et al.The Plant Journal : for Cell and Molecular Biology|October 30, 2019
Mesophyll conductance in land surface models: effects on photosynthesis and transpirationJürgen Knauer, Sönke Zaehle, Martin G De Kauwe, et al.Pageof 6