Area of research
Ecology, Evolution, Behavior and Systematics · Global and Planetary Change
Research interest
Research interests include Climate change impacts on agriculture, Climate variability and models, Plant responses to elevated CO2, and Crop Yield and Soil Fertility.
A systematic review of sustainable food systems identifies socio-economic pathways driving food systems transformations
Mixed farming systems: potentials and barriers for climate change adaptation in food systems
Research trends and gaps in climate change impacts and adaptation potentials in major crops
Modelling adaptation and transformative adaptation in cropping systems: recent advances and future directions
A global dataset for the projected impacts of climate change on four major crops
Global irrigation contribution to wheat and maize yield
Strong regional influence of climatic forcing datasets on global crop model ensembles
Narrowing uncertainties in the effects of elevated CO2 on crops
Modelling climate change impacts on maize yields under low nitrogen input conditions in sub‐Saharan Africa
State-of-the-art global models underestimate impacts from climate extremes
The Global Gridded Crop Model Intercomparison phase 1 simulation dataset
Parameterization-induced uncertainties and impacts of crop management harmonization in a global gridded crop model ensemble
Crop productivity changes in 1.5 °C and 2 °C worlds under climate sensitivity uncertainty
Evapotranspiration simulations in ISIMIP2a—Evaluation of spatio-temporal characteristics with a comprehensive ensemble of independent datasets
Global patterns of crop yield stability under additional nutrient and water inputs
Assessing the impacts of 1.5 °C global warming – simulation protocol of the Inter-Sectoral Impact Model Intercomparison Project (ISIMIP2b)
Consistent negative response of US crops to high temperatures in observations and crop models
Global gridded crop model evaluation: benchmarking, skills, deficiencies and implications
Understanding the weather signal in national crop‐yield variability
Ten key short-term sectoral benchmarks to limit warming to 1.5°C
Similar estimates of temperature impacts on global wheat yield by three independent methods
Regional disparities in the beneficial effects of rising CO2 concentrations on crop water productivity
Climate analogues suggest limited potential for intensification of production on current croplands under climate change
Spatial and temporal uncertainty of crop yield aggregations
Uncertainties in global crop model frameworks: effects of cultivar distribution, crop management and soil handling on crop yield estimates
Assessing the impacts of 1.5 °C global warming – simulation protocol of the Inter-Sectoral Impact Model Intercomparison Project (ISIMIP2b)
Assessing the impacts of 1.5°C of global warming – The Inter-Sectoral Impact Model Intercomparison Project (ISIMIP) approach
2016cited by 3position: middle
Climate and southern Africa's water–energy–food nexus
The Global Gridded Crop Model Intercomparison: data and modeling protocols for Phase 1 (v1.0)
Implications of climate mitigation for future agricultural production