Area of research
Global and Planetary Change · Plant Science
Research interest
Research interests include Atmospheric and Environmental Gas Dynamics, Plant Water Relations and Carbon Dynamics, Climate variability and models, and Plant responses to elevated CO2.
Ecological acclimation: A framework to integrate fast and slow responses to climate change
Trends and Drivers of Terrestrial Sources and Sinks of Carbon Dioxide: An Overview of the TRENDY Project
Synthesis of the land carbon fluxes of the Amazon region between 2010 and 2020
The key role of forest disturbance in reconciling estimates of the northern carbon sink
On the predictability of turbulent fluxes from land: PLUMBER2 MIP experimental description and preliminary results
On the predictability of turbulent fluxes from land: PLUMBER2 MIP experimental description and preliminary results
Global Carbon Budget 1800-2018 Loss of Additional Sink Capacity and Present Transient Difference
Harmonising the land-use flux estimates of global models and national inventories for 2000–2020
Global Carbon Budget 2022
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
The physiological basis for estimating photosynthesis from Chl<i>a</i> fluorescence
Global Carbon Budget 2022
Process Interactions Can Change Process Ranking in a Coupled Complex System Under Process Model and Parametric Uncertainty
Global variation in the fraction of leaf nitrogen allocated to photosynthesis
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
A reporting format for leaf-level gas exchange data and metadata
Modelled land use and land cover change emissions – A spatio-temporal comparison of different approaches
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?
AI-Constrained Bottom-Up Ecohydrology and Improved Prediction of Seasonal, Interannual, and Decadal Flood and Drought Risks
Global Carbon Budget 2020
Pervasive shifts in forest dynamics in a changing world
Integrating the evidence for a terrestrial carbon sink caused by increasing atmospheric CO <sub>2</sub>
Benchmarking and parameter sensitivity of physiological and vegetation dynamics using the Functionally Assembled Terrestrial Ecosystem Simulator (FATES) at Barro Colorado Island, Panama
Sources of Uncertainty in Regional and Global Terrestrial CO<sub>2</sub> Exchange Estimates
Stimulation of isoprene emissions and electron transport rates as key mechanisms of thermal tolerance in the tropical species <i>Vismia guianensis</i>