Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Atmospheric and Environmental Gas Dynamics, Climate variability and models, Plant Water Relations and Carbon Dynamics, and Atmospheric chemistry and aerosols.
The global hydrogen budget
Trends and Drivers of Terrestrial Sources and Sinks of Carbon Dioxide: An Overview of the TRENDY Project
Harmonising the land-use flux estimates of global models and national inventories for 2000–2020
Soil respiration–driven CO <sub>2</sub> pulses dominate Australia’s flux variability
Global Carbon Budget 2021
Are Terrestrial Biosphere Models Fit for Simulating the Global Land Carbon Sink?
Process-oriented analysis of dominant sources of uncertainty in the land carbon sink
Assessing Model Predictions of Carbon Dynamics in Global Drylands
Investigating the response of leaf area index to droughts in southern African vegetation using observations and model simulations
Respiration driven CO2 pulses dominate Australia's flux variability
Global and regional drivers of land-use emissions in 1961–2017
Slowdown of the greening trend in natural vegetation with further rise in atmospheric CO <sub>2</sub>
Response of global land evapotranspiration to climate change, elevated CO2, and land use change
Global Carbon Budget 2021
Modelled land use and land cover change emissions – a spatio-temporal comparison of different approaches
Dynamic global vegetation models underestimate net CO<sub>2</sub> flux mean and inter-annual variability in dryland ecosystems
Linking global terrestrial CO <sub>2</sub> fluxes and environmental drivers: inferences from the Orbiting Carbon Observatory 2 satellite and terrestrial biospheric models
Five years of variability in the global carbon cycle: comparing an estimate from the Orbiting Carbon Observatory-2 and process-based models
Modelled land use and land cover change emissions – A spatio-temporal comparison of different approaches
Slowdown of the greening trend in natural vegetation with further rise in atmospheric CO2
Are terrestrial biosphere models fit for simulating the global land carbon sink?
Are terrestrial biosphere models fit for simulating the global land carbon sink?
Are terrestrial biosphere models fit for simulating the global land carbon sink?
Global Carbon Budget 2020
Evaluation of global terrestrial evapotranspiration using state-of-the-art approaches in remote sensing, machine learning and land surface modeling
Increased control of vegetation on global terrestrial energy fluxes
Sources of Uncertainty in Regional and Global Terrestrial CO<sub>2</sub> Exchange Estimates