Area of research
Global and Planetary Change · Soil Science
Research interest
Research interests include Soil Carbon and Nitrogen Dynamics, Plant Water Relations and Carbon Dynamics, Atmospheric and Environmental Gas Dynamics, and Peatlands and Wetlands Ecology.
Preliminary Environmental and Economic Assessment of Mineral Carbonation of Steel Slags as a Carbon Capture, Utilization and Storage Technology
A trade-off between plant and soil carbon storage under elevated CO2
Soil properties as key predictors of global grassland production: Have we overlooked micronutrients?
Rainfall manipulation experiments as simulated by terrestrial biosphere models: Where do we stand?
Author Correction: Nitrogen and phosphorus constrain the CO2 fertilization of global plant biomass
A meta-analysis of 1,119 manipulative experiments on terrestrial carbon-cycling responses to global change
Nitrogen and phosphorus constrain the CO2 fertilization of global plant biomass
The handbook for standardized field and laboratory measurements in terrestrial climate change experiments and observational studies (ClimEx)
Global vegetation biomass production efficiency constrained by models and observations
Asymmetric responses of primary productivity to altered precipitation simulated by ecosystem models across three long-term grassland sites
Using research networks to create the comprehensive datasets needed to assess nutrient availability as a key determinant of terrestrial carbon cycling
Asymmetric Responses of Primary Productivity to Altered Precipitation Simulated by Ecosystem Models across Three Longterm Grassland Sites
Ecosystem responses to elevated <scp>CO</scp><sub>2</sub> governed by plant–soil interactions and the cost of nitrogen acquisition
Atmospheric deposition, CO2, and change in the land carbon sink
Global patterns and substrate‐based mechanisms of the terrestrial nitrogen cycle
Few multiyear precipitation–reduction experiments find a shift in the productivity–precipitation relationship
Terrestrial nitrogen cycling in Earth system models revisited
Effects of climate extremes on the terrestrial carbon cycle: concepts, processes and potential future impacts
Leaf onset in the northern hemisphere triggered by daytime temperature
Seasonally different response of photosynthetic activity to daytime and night‐time warming in the Northern Hemisphere
Asymmetric effects of daytime and night-time warming on Northern Hemisphere vegetation
Simple additive effects are rare: a quantitative review of plant biomass and soil process responses to combined manipulations of <scp> <scp> CO <sub>2</sub> </scp> </scp> and temperature