A184
Inside Out: Interactions Between Indoor and Outdoor Emissions and Air Quality II Posters

Tuesday, 15 December 2020: 04:00-20:59
Poster
Primary Convener:  Anna Hodshire, Colorado State University, Department of Atmospheric Science, Fort Collins, CO, United States
Conveners:  Matthew Mitchell Coggon, CIRES and NOAA ESRL, Chemical Sciences Laboratory, Boulder, CO, United States, Brian C McDonald, Chemical Sciences Division, NOAA Earth System Research Laboratory, Boulder, CO, United States and Allen H Goldstein, University of California Berkeley, Berkeley, CA, United States
Primary Liaison:  Anna Hodshire, Colorado State University, Department of Atmospheric Science, Fort Collins, CO, United States
Chairs:  Brian C McDonald, Chemical Sciences Division, NOAA Earth System Research Laboratory, Boulder, CO, United States and Matthew Mitchell Coggon, California Institute of Technology, Department of Chemical Engineering, Pasadena, CA, United States
OSPA Liaison:  Matthew Mitchell Coggon, California Institute of Technology, Department of Chemical Engineering, Pasadena, CA, United States
 
An instrument to measure and fractionate the total reactive nitrogen budget (713124)
Leigh Crilley, Melodie Lao, Seyed Danial Nodeh Farahani, Leyla Salehpoor and Trevor C VandenBoer, York University, Chemistry, Toronto, ON, Canada
 
Behavior of nitrous acid (HONO) and isocyanic acid (HNCO) in a test house (755872)
Chen Wang1, Brandon Bottorff2, Emily Reidy2, Colleen Marciel Fontelera Rosales3, Douglas Collins1,4, Atila Novoselac5, Delphine Farmer6, Marina Vance7, Philip S Stevens2,3 and Jonathan Abbatt1, (1)University of Toronto, Department of Chemistry, Toronto, ON, Canada, (2)Indiana University Bloomington, Chemistry, Bloomington, IN, United States, (3)Indiana University, O'Neill School of Public and Environmental Affairs, Bloomington, IN, United States, (4)Bucknell University, Chemistry, Lewisburg, United States, (5)University of Texas, Austin, Austin, United States, (6)Department of Chemistry, Colorado State University, Fort Collins, CO, United States, (7)University of Colorado, Boulder, CO, United States
 
Evaluating Chemical Mechanisms to Improve Understanding of Ozone Formation in Urban Regions (730060)
Anna Wilson1,2, Matthew Mitchell Coggon3, Rebecca Schwantes4, Brian C McDonald5, Georgios Gkatzelis6,7, Jessica Gilman8, Jeff Peischl3 and Carsten Warneke3, (1)NOAA Chemical Sciences Laboratory, Boulder, CO, United States, (2)University of Kansas, Lawrence, KS, United States, (3)CIRES and NOAA ESRL, Chemical Sciences Laboratory, Boulder, CO, United States, (4)Cooperative Institute for Research in Environmental Sciences (CIRES) University of Colorado and NOAA ESRL Chemical Sciences Laboratory, Boulder, CO, United States, (5)Chemical Sciences Division, NOAA Earth System Research Laboratory, Boulder, CO, United States, (6)Cooperative Institute for Research in Environmental Sciences, Boulder, United States, (7)NOAA Earth Systems Research Laboratory, Chemical Sciences Division, Boulder, United States, (8)NOAA ESRL Chemical Sciences Division, Boulder, CO, United States
 
From the Desk to the Sky: Emissions of Indoor-Generated VOCs from a Mechanically Ventilated Office Building to the Urban Atmosphere (771022)
Brandon Boor1, Tianren Wu1, Antonios Tasoglou2, Heinz J Huber2 and Philip S Stevens3, (1)Purdue University, Lyles School of Civil Engineering, West Lafayette, IN, United States, (2)RJ Lee Group Inc., Monroeville, PA, United States, (3)Indiana University, O'Neill School of Public and Environmental Affairs, Bloomington, IN, United States
 
How Do Indoor Activities Affect Indoor and Outdoor Air Quality? (665787)
Freja F Oesterstroem, University of York, Environment and Geography, York, YO10, United Kingdom and Nicola Carslaw, University of York, York, United Kingdom
 
Human Ammonia Emission Rates under Various Indoor Environmental Conditions (662497)
Mengze Li1, Charles J Weschler2,3, Gabriel Bekö3, Pawel Wargocki3, Gregor Lucic4 and Jonathan Williams5, (1)Max Planck Institute for Chemistry, Mainz, Germany, (2)Rutgers University New Brunswick, Environmental & Occupational Health Sciences Institute, New Brunswick, NJ, United States, (3)International Centre for Indoor Environment and Energy, Department of Civil Engineering, Technical University of Denmark, Lyngby, Denmark, (4)Picarro, Inc., Santa Clara, CA, United States, (5)Max Planck Institute for Chemistry, Atmospheric Chemistry Department, Mainz, Germany
 
Identifying and Quantifying Volatile Chemical Product (VCP) Species During an Indoor Surface Refinishing Event (748081)
Keri Nauman, Damien Ketcherside and Lu Hu, University of Montana, Chemistry and Biochemistry, Missoula, MT, United States
 
Low Secondary Organic Aerosol Production from Oxygenated Volatile Chemical Products (706904)
Mackenzie Humes1, Mingyi Wang2, Sunhye Kim3, Jo Machesky4, Drew R Gentner4, Neil McPherson Donahue2 and Albert Presto1, (1)Carnegie Mellon University, Pittsburgh, PA, United States, (2)Carnegie Mellon University, Center for Atmospheric Particle Studies, Pittsburgh, PA, United States, (3)Carnegie Mellon University, Mechanical Engineering, Pittsburgh, PA, United States, (4)Yale University, Department of Chemical and Environmental Engineering, New Haven, CT, United States
 
Magnetic properties, concentration of PM1 and carbonaceous aerosols in primary schools (729191)
Aruã Leite1, Sonia Rousse2, Jean-François Leon3, Loïc Drigo4, Ricardo IF Trindade5 and Melina Macouin4, (1)Geosciences Environnement Toulouse, Toulouse, France, (2)GET, Géosciences Environnement Toulouse, Toulouse, France, (3)CNRS, Paris Cedex 16, France, (4)GET Géosciences Environnement Toulouse, Toulouse, France, (5)Universidade de São Paulo, Geophysics, São Paulo, Brazil
 
Modeling reactions of ozone with human skin and clothing to quantify formation of semivolatile organic compounds (705288)
Pascale Lakey1, Andreas Zuend2, Glenn Morrison3, Nijing WANG4, Nora Zannoni4, Jonathan Williams4, Youngbo Won5, Donghyun Rim5 and Manabu Shiraiwa6, (1)University of California Irvine, Department of Chemistry, Irvine, CA, United States, (2)McGill University, Department of Atmospheric and Oceanic Sciences, Montreal, QC, Canada, (3)University of North Carolina at Chapel Hill, Department of Environmental Sciences and Engineering, Chapel Hill, NC, United States, (4)Max Planck Institute for Chemistry, Atmospheric Chemistry Department, Mainz, Germany, (5)Pennsylvania State University Main Campus, Architectural Engineering Department, University Park, PA, United States, (6)University of California Irvine, Department of Chemistry, Irvine, United States
 
Nationwide Trends of Reactive Organic Carbon Emissions from Volatile Chemical Products (685325)
Karl Seltzer, Environmental Protection Agency, Research Triangle Park, NC, United States, Benjamin Murphy, Environmental Protection Agency Research Triangle Park, Research Triangle Park, NC, United States, Venkatesh Rao, Environmental Protection Agency Research Triangle Park, Research Triangle Park, United States, Elyse Pennington, California Institute of Technology, Pasadena, United States, Kristen Foley, EPA, Office of Research and Development, Durham, NC, United States and Havala Olson Taylor Pye, US EPA, Durham, United States
 
Now we’re cooking: How do activities in the home impact exposure? (706812)
Anna Hodshire1, Andrew Abeleira2, Laura Ampollini3, Caleb Arata4, James Mattila5, Matson A Pothier6, Chen Wang7, Jonathan Abbatt8, Ellison Carter9, Peter DeCarlo10, Allen H Goldstein11, William W Nazaroff12, Marina Vance13, Delphine Farmer6 and HOMEChem Science Team , (1)Colorado State University, Department of Atmospheric Science, Fort Collins, CO, United States, (2)Colorado State University, Fort Collins, CO, United States, (3)Drexel University, Philadelphia, United States, (4)University of California Berkeley, Berkeley, United States, (5)Colorado State University, Fort Collins, United States, (6)Department of Chemistry, Colorado State University, Fort Collins, CO, United States, (7)University of Toronto, Toronto, ON, Canada, (8)University of Toronto, Department of Chemistry, Toronto, ON, Canada, (9)Colorado State University, Civil and Environmental Engineering, Fort Collins, CO, United States, (10)Johns Hopkins University, Department of Environmental Health and Engineering, Balitmore, MD, United States, (11)University of California Berkeley, Berkeley, CA, United States, (12)Univ California-Berkeley, Berkeley, CA, United States, (13)University of Colorado, Boulder, CO, United States
 
Quantifying the Sorptive Properties of Carpets with Regards to Indoor VOCs Through High-Resolution Chemical Ionization Mass Spectrometry (703991)
Melissa Morris1, Demetrios Pagonis2, Joost de Gouw3 and Jose L Jimenez2, (1)University of Colorado at Boulder, Department of Chemistry, Boulder, CO, United States, (2)University of Colorado at Boulder, Cooperative Institute for Research in Environmental Sciences (CIRES) and Department of Chemistry, Boulder, CO, United States, (3)University of Colorado at Boulder, Department of Chemistry, Boulder, United States
 
Sources of Gas-Phase Species in an Art Museum from Comprehensive Real-Time Measurements (773395)
Derek J. Price1, Doug A Day2, Demetrios Pagonis2, Harald Stark3, Anne V Handschy4, Lucas B Algrim3, Shelly Miller5, Joost A de Gouw6, Paul J Ziemann7, James Roberts8 and Jose L Jimenez2, (1)Cooperative Institute for Research in Environmental Sciences, Boulder, United States, (2)University of Colorado at Boulder, Cooperative Institute for Research in Environmental Sciences (CIRES) and Department of Chemistry, Boulder, CO, United States, (3)University of Colorado at Boulder, Department of Chemistry, Boulder, CO, United States, (4)University of Colorado at Boulder, Chemistry, Boulder, United States, (5)University of Colorado, Boulder, Department of Mechanical Engineering, Boulder, CO, United States, (6)University of Colorado, CIRES and Department of Chemistry, Boulder, CO, United States, (7)University of Colorado at Boulder, Chemistry and Biochemistry, Boulder, CO, United States, (8)NOAA ESRL, Chemical Sciences Laboratory, Boulder, CO, United States
 
The Effect of Portable Indoor Aerosol Filters on Indoor Air Quality (IAQ), Evidence from Different Sites in China (771600)
Weina Chen, Sun Yat-Sen University, Guangzhou, China and Jason Blake Cohen, Sun Yat-Sen University, School of Atmospheric Sciences, Guangzhou, China
 
Volatile Chemical Products Have a Major Impact on Air Quality in U.S. cities (733426)
Carsten Warneke, NOAA Boulder, Boulder, CO, United States, Georgios Gkatzelis, Forschungszentrum Jülich GmbH, Institute of Energy and Climate Research, IEK-8: Troposphere, Jülich 52428, Germany, Brian C McDonald, Chemical Sciences Division, NOAA Earth System Research Laboratory, Boulder, CO, United States, Jeff Peischl, CIRES and NOAA ESRL, Chemical Sciences Laboratory, Boulder, CO, United States, Kenneth C. Aikin, Cooperative Institute for Research in Environmental Sciences, University of Colorado, Boulder, CO, United States, Jessica Gilman, NOAA Earth System Research Laboratory, Chemical Sciences Laboratory, Boulder, CO, United States, Michael Trainer, Chemical Sciences Laboratory, NOAA Earth System Research Laboratories, Boulder, CO, United States and Matthew Mitchell Coggon, NOAA Earth System Research Laboratory, Chemical Sciences Division, Boulder, CO, United States
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