Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research focused on Isoprene and NOx, with related work in Troposphere, Aerosol, Environmental science. Notable publications include 'Why do models overestimate surface ozone in the Southeast United States?', 'The role of chlorine in global tropospheric chemistry', and 'Aqueous-phase mechanism for secondary organic aerosol formation from isoprene: application to the southeast United States and co-benefit of SO 2 emission controls'.
Aura Ozone Monitoring Instrument (OMI) Collection 4 Formaldehyde Products
Carbon dioxide emissions from global overseas coal-fired power plants
Convolutional Neural Networks Facilitate Process Understanding of Megacity Ozone Temporal Variability
Bayesian inversion of HFC-134a emissions in southern China from a new AGAGE site: Results from an observing system simulation experiment
Impact of Ship Emissions on Air Quality in the Greater Bay Area in China under the Latest Global Marine Fuel Regulation
Role of Organic and Conservation Agriculture in Ammonia Emissions and Crop Productivity in China
Absorption Enhancement of Black Carbon Aerosols Constrained by Mixing-State Heterogeneity
Global tropospheric halogen (Cl, Br, I) chemistry and its impact on oxidants
Global Significant Changes in Formaldehyde (HCHO) Columns Observed From Space at the Early Stage of the COVID‐19 Pandemic
Global tropospheric halogen (Cl, Br, I) chemistry and its impact on oxidants
The role of chlorine in global tropospheric chemistry
Effect of sea salt aerosol on tropospheric bromine chemistry
High-resolution inversion of OMI formaldehyde columns to quantify isoprene emission on ecosystem-relevant scales: application to the southeast US
Unprecedented NH 3 emissions detected in the high-Arctic from the 2017 Canadian wildfires
Dépôt institutionnel de l'Université libre de Bruxelles (Université Libre de Bruxelles) 2018cited by 1position: middle
Formaldehyde (HCHO) As a Hazardous Air Pollutant: Mapping Surface Air Concentrations from Satellite and Inferring Cancer Risks in the United States
Glyoxal yield from isoprene oxidation and relation to formaldehyde: chemical mechanism, constraints from SENEX aircraft observations, and interpretation of OMI satellite data
High-resolution inversion of OMI formaldehyde columns to quantify isoprene emission on ecosystem-relevant scales: application to the Southeast US
Why do models overestimate surface ozone in the Southeast United States?
Aqueous-phase mechanism for secondary organic aerosol formation from isoprene: application to the southeast United States and co-benefit of SO <sub>2</sub> emission controls
Organic nitrate chemistry and its implications for nitrogen budgets in an isoprene- and monoterpene-rich atmosphere: constraints from aircraft (SEAC <sup>4</sup> RS) and ground-based (SOAS) observations in the Southeast US
Observing atmospheric formaldehyde (HCHO) from space: validation andintercomparison of six retrievals from four satellites (OMI, GOME2A, GOME2B,OMPS) with SEAC <sup>4</sup> RS aircraft observations over the southeast US
Sensitivity to grid resolution in the ability of a chemical transport model to simulate observed oxidant chemistry under high-isoprene conditions
NO <sub>x</sub> emissions, isoprene oxidation pathways, vertical mixing, and implications for surface ozone in the Southeast United States
Sources, seasonality, and trends of southeast US aerosol: an integrated analysis of surface, aircraft, and satellite observations with the GEOS-Chem chemical transport model