Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Environmental science, Atmospheric sciences, Isoprene, Southern Hemisphere, NOx, and Troposphere.
Reply to the ‘Comment on “Assessing the atmospheric fate of trifluoroacetaldehyde (CF<sub>3</sub>CHO) and its potential as a new source of fluoroform (HFC-23) using the AtChem2 box model”’ by O. J. Nielsen, M. P. Sulbaek Andersen and J. Franklin, <i>Environ. Sci.: Atmos</i>., 2025, <b>5</b>, DOI: 10.1039/D4EA00123K
Sources, Sinks, and Oxidation Pathways of Phenolic Compounds in South Korea Constrained Using KORUS‐AQ Airborne Observations
Improved estimates of smoke exposure during Australia fire seasons: importance of quantifying plume injection heights
Fluoroform (CHF<sub>3</sub>) Production from CF<sub>3</sub>CHO Photolysis and Implications for the Decomposition of Hydrofluoroolefins and Hydrochlorofluoroolefins in the Atmosphere
Inferring changes to the global carbon cycle with WOMBAT v2.0, a hierarchical flux-inversion framework
Environmental drivers of tropospheric bromine and mercury variability in coastal East Antarctica
A synthesis of mercury research in the Southern Hemisphere, part 1: Natural processes
A synthesis of mercury research in the Southern Hemisphere, part 2: Anthropogenic perturbations
Assessing the atmospheric fate of trifluoroacetaldehyde (CF<sub>3</sub>CHO) and its potential as a new source of fluoroform (HFC-23) using the AtChem2 box model
A Coupled CH4, CO and CO2 Simulation for Improved Chemical Source Modeling
Improved estimates of smoke exposure during Australia fire seasons: Importance of quantifying plume injection heights
Key challenges for tropospheric chemistry in the Southern Hemisphere
Australian Fire Emissions of Carbon Monoxide Estimated by Global Biomass Burning Inventories: Variability and Observational Constraints
WOMBAT v1.0: a fully Bayesian global flux-inversion framework
Two decades of changing anthropogenic mercury emissions in Australia: inventory development, trends, and atmospheric implications
Evaluating the contribution of the unexplored photochemistry of aldehydes on the tropospheric levels of molecular hydrogen (H <sub>2</sub> )
Evaluating the contribution of the unexplored photochemistry of aldehydes on the tropospheric levels of molecular hydrogen (H <sub>2</sub> )
An improved carbon greenhouse gas simulation in GEOS-Chem version 12.1.1
Australian fire emissions of carbon monoxide estimated by global biomass burning inventories: variability and observational constraints
Measuring Mars Atmospheric Winds from Orbit
WOMBAT v1.0: A fully Bayesian global flux-inversion framework
GBD-MAPS-Global: GEOS-Chem_v12.1.0_EEM Source Code
Global inorganic nitrate production mechanisms: comparison of a global model with nitrate isotope observations
Detection and attribution of wildfire pollution in the Arctic and northern midlatitudes using a network of Fourier-transform infrared spectrometers and GEOS-Chem
Atmospheric mercury in Australia
geoschem/geos-chem: GEOS-Chem 12.9.0
Unprecedented Atmospheric Ammonia Concentrations Detected in the High Arctic From the 2017 Canadian Wildfires
Emissions of methane in Europe inferred by total column measurements
Global inorganic nitrate production mechanisms: Comparison of a global model with nitrate isotope observations
Simultaneous shipborne measurements of CO <sub>2</sub> , CH <sub>4</sub> and CO and their application to improving greenhouse-gas flux estimates in Australia