Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Atmospheric chemistry and aerosols, Atmospheric and Environmental Gas Dynamics, Atmospheric Ozone and Climate, and Air Quality Monitoring and Forecasting.
Parameterizations of US wildfire and prescribed fire emission ratios and emission factors based on FIREX-AQ aircraft measurements
Airborne observations of upper troposphere and lower stratosphere composition change in active convection producing above-anvil cirrus plumes
Parameterizations of US wildfire and prescribed fire emission ratios and emission factors based on FIREX-AQ aircraft measurements
Fire Influence on Regional to Global Environments and Air Quality (FIREX‐AQ)
Airborne Emission Rate Measurements Validate Remote Sensing Observations and Emission Inventories of Western U.S. Wildfires
Comparison of airborne measurements of NO, NO <sub>2</sub> , HONO, NO <sub> <i>y</i> </sub> , and CO during FIREX-AQ
Comparison of airborne measurements of NO, NO <sub>2</sub> , HONO, NO <sub>y</sub> and CO during FIREX-AQ
Ozone chemistry in western U.S. wildfire plumes
Secondary organic aerosols from anthropogenic volatile organic compounds contribute substantially to air pollution mortality
Formaldehyde evolution in US wildfire plumes during the Fire Influence on Regional to Global Environments and Air Quality experiment (FIREX-AQ)
Formaldehyde evolution in U.S. wildfire plumes during FIREX-AQ
A machine learning examination of hydroxyl radical differences among model simulations for CCMI-1
Vertical Transport, Entrainment, and Scavenging Processes Affecting Trace Gases in a Modeled and Observed SEAC<sup>4</sup>RS Case Study
Mapping hydroxyl variability throughout the global remote troposphere via synthesis of airborne and satellite formaldehyde observations
Atmospheric oxidation in the presence of clouds during the Deep Convective Clouds and Chemistry (DC3) study
Glyoxal yield from isoprene oxidation and relation to formaldehyde: chemical mechanism, constraints from SENEX aircraft observations, and interpretation of OMI satellite data
BrO and inferred Br <sub> <i>y</i> </sub> profiles over the western Pacific: relevance of inorganic bromine sources and a Br <sub> <i>y</i> </sub> minimum in the aged tropical tropopause layer
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
Formaldehyde production from isoprene oxidation across NO <sub> <i>x</i> </sub> regimes
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
The Convective Transport of Active Species in the Tropics (CONTRAST) Experiment
A pervasive role for biomass burning in tropical high ozone/low water structures
An observationally constrained evaluation of the oxidative capacity in the tropical western Pacific troposphere
Airborne measurements of BrO and the sum of HOBr and Br<sub>2</sub> over the Tropical West Pacific from 1 to 15 km during the CONvective TRansport of Active Species in the Tropics (CONTRAST) experiment