Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Environmental science, Aerosol, Oil sands, Chemistry, Environmental chemistry, and Atmospheric sciences.
Author Correction: Measured Canadian oil sands CO2 emissions are higher than estimates made using internationally recommended methods
Estimating 2010–2015 anthropogenic and natural methane emissions in Canada using ECCC surface and GOSAT satellite observations
New methodology shows short atmospheric lifetimes of oxidized sulfur and nitrogen due to dry deposition
Estimating 2010–2015 Anthropogenic and Natural Methane Emissions in Canada using ECCC Surface and GOSAT Satellite Observations
Supplementary material to "New Methodology Shows Short Atmospheric Lifetimes of Oxidized Sulfur and Nitrogen due to Dry Deposition"
New Methodology Shows Short Atmospheric Lifetimes of Oxidized Sulfur and Nitrogen due to Dry Deposition
Validation of MAX-DOAS retrievals of aerosol extinction, SO <sub>2</sub> , and NO <sub>2</sub> through comparison with lidar, sun photometer, active DOAS, and aircraft measurements in the Athabasca oil sands region
Recommendations for spectral fitting of SO <sub>2</sub> from miniature multi-axis differential optical absorption spectroscopy (MAX-DOAS) measurements
Enhanced NO2 and aerosol extinction observed in the tropospheric column behind lake-breeze fronts using MAX-DOAS
Recommendations for spectral fitting of SO <sub>2</sub> from MAX-DOAS measurements
Measured Canadian oil sands CO2 emissions are higher than estimates made using internationally recommended methods
Estimation of NO <sub> <i>x</i> </sub> and SO <sub>2</sub> emissions from Sarnia, Ontario, using a mobile MAX-DOAS (Multi-AXis Differential Optical Absorption Spectroscopy) and a NO <sub> <i>x</i> </sub> analyzer
Estimation of NO <sub> <i>x</i> </sub> and SO <sub>2</sub> Emissions from Sarnia, Ontario using Mobile-MAX-DOAS and a NO <sub> <i>x</i> </sub> -Analyzer
Validation of MAX-DOAS retrievals of aerosol extinction, SO <sub>2</sub> and NO <sub>2</sub> through comparison with lidar, sun photometer, Active-DOAS and aircraft measurements in the Athabasca Oil Sands Region
Quantification of methane sources in the Athabasca Oil Sands Region of Alberta by aircraft mass balance
Principal component analysis of summertime ground site measurements in the Athabasca oil sands with a focus on analytically unresolved intermediate-volatility organic compounds
Airborne lidar measurements of aerosol and ozone above the Canadian oil sands region
Principal component analysis of summertime ground site measurements in the Athabasca oil sands: Sources of IVOCs
Nitrate radicals and biogenic volatile organic compounds: oxidation, mechanisms, and organic aerosol
Differences between measured and reported volatile organic compound emissions from oil sands facilities in Alberta, Canada
Quantification of Methane Sources in the Athabasca Oil Sands Region of Alberta by Aircraft Mass-Balance
Airborne Lidar Measurements of Aerosol and Ozone Above the Canadian Oil Sands Region
Molecular Marker Study of Particulate Organic Matter in Southern Ontario Air
Supplementary material to "Quantification of Methane Sources in the Athabasca Oil Sands Region of Alberta by Aircraft Mass-Balance"
Reactive nitrogen partitioning and its relationship to winter ozone events in Utah
Nitrate radicals and biogenic volatile organic compounds: oxidation, mechanisms and organic aerosol
Separating refractory and non-refractory particulate chloride and estimating chloride depletion by aerosol mass spectrometry in a marine environment
Quantifying Sources of Methane in the Alberta Oil Sands
2015 AGU Fall Meeting 2015cited by 0position: last
Measurements of HONO in a Forested Region of Alberta Impacted by Oil Sands Processing Facilities
2015 AGU Fall Meeting 2015cited by 0position: first