Publications
Using low-cost sensors to quantify the effects of air filtration on indoor and personal exposure relevant PM2.5 concentrations in Beijing, China." Aerosol and Air Quality Research 20, no. 2 (2020): 297-313.
"Using low-cost sensors to monitor indoor, outdoor, and personal ozone concentrations in Beijing, China." Environmental Science. Processes & Impacts 22, no. 1 (2020): 131-143.
"Using flow cytometry and light-induced fluorescence to characterize the variability and characteristics of bioaerosols in springtime in Metro Atlanta, Georgia." Atmospheric Chemistry and Physics 20, no. 3 (2020): 1817-1838.
"Urban aerosol radiative properties: Measurements during the 1999 Atlanta supersite experiment." Journal of Geophysical Research 108, no. 7 (2003).
"Toxic volatile organic compounds in 20 homes in Shanghai: Concentrations, inhalation health risks, and the impacts of household air cleaning." Building and Environment 157 (2019): 309-318.
"Temporal and spatial variability of snow accumulation in central Greenland." Journal of Geophysical Research 102, no. 25 (1997): 30059-30068.
"A summer time series of particulate carbon in the air and snow at Summit, Greenland." Journal of Geophysical Research 112, no. 21 (2007).
"Sources of volatile organic compounds in suburban homes in Shanghai, China, and the impact of air filtration on compound concentrations." Chemosphere 231 (2019): 256-268.
"Sources of volatile organic compounds in suburban homes in Shanghai, China, and the impact of air filtration on compound concentrations." Chemosphere 231 (2019): 256-268.
"Sources of excess urban carbonaceous aerosol in the Pearl River Delta Region, China." Atmospheric Environment 45, no. 5 (2011): 1175-1182.
"Source attribution of black and Brown carbon near-UV light absorption in Beijing, China and the impact of regional air-mass transport." The Science of the Total Environment 807, no. Pt 2 (2021).
"Source attribution of black and Brown carbon near-UV light absorption in Beijing, China and the impact of regional air-mass transport." The Science of the Total Environment 807, no. Pt 2 (2022).
"Source areas and chemical composition of fine particulate matter in the Pearl River Delta region of China." Atmospheric Environment 40, no. 20 (2006): 3802-3815.
"Source apportionment of carbonaceous fine particulate matter (PM2.5) in two contrasting cities across the Indo–Gangetic Plain." Atmospheric Pollution Research 6, no. 3 (2015): 398-405.
"Soluble acidic species in air and snow at Summit, Greenland." Geophysical Research Letters 21, no. 15 (1994): 1627-1630.
"Snow spectral albedo at Summit, Greenland: Measurements and numerical simulations based on physical and chemical properties of the snowpack." Cryosphere 7, no. 4 (2013): 1139-1160.
"Size-resolved, real-time measurement of water-insoluble aerosols in metropolitan Atlanta during the summer of 2004." Atmospheric Environment 41, no. 3 (2007): 519-531.
"Size-resolved, real-time measurement of water-insoluble aerosols in the Chamonix and Maurienne valleys of alpine France." Journal of Geophysical Research 111, no. 9 (2006).
"Size-resolved measurements of brown carbon in water and methanol extracts and estimates of their contribution to ambient fine-particle light absorption." Atmospheric Chemistry and Physics 13, no. 24 (2013): 12389-12404.
"Simultaneous measurements of particulate and gas-phase water-soluble organic carbon concentrations at remote and urban-influenced locations." Geophysical Research Letters 35, no. 13 (2008).
"A simple model to estimate atmospheric concentrations of aerosol chemical species based on snow core chemistry at Summit, Greenland." Geophysical Research Letters 22, no. 24 (1995): 3517-3520.
"Seasonality of aerosol optical properties in the Arctic." Atmospheric Chemistry and Physics 18, no. 16 (2018): 11599-11622.
"Seasonal photovoltaic soiling: Analysis of size and composition of deposited particulate matter." Solar Energy 227 (2021): 44-55.
"Role of endogenous melatonin in pathophysiologic and oxidative stress responses to personal air pollutant exposures in asthmatic children." The Science of the Total Environment 773 (2021).
"Role of endogenous melatonin in pathophysiologic and oxidative stress responses to personal air pollutant exposures in asthmatic children." The Science of the Total Environment 773 (2021).
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