A086
Atmospheric Oxidation Capacity Constraints: Laboratory Investigations, Field and Remote Sensing Observations, and Modeling Studies II Posters

Thursday, 10 December 2020: 04:00-20:59
Poster
Primary Convener:  Yasin F Elshorbany, University of South Florida St. Petersburg, St Petersburg, FL, United States
Conveners:  Thomas F Hanisco, NASA GSFC, Greenbelt, MD, United States and Philip S Stevens, Indiana University, O'Neill School of Public and Environmental Affairs, Bloomington, IN, United States
Primary Liaison:  Yasin F Elshorbany, University of South Florida, Atmospheric Chemistry and Climate Laboratory, College of Arts and Sciences, St. Petersberg, FL, United States
Chairs:  Yasin F Elshorbany, University of South Florida, Atmospheric Chemistry and Climate Laboratory, College of Arts and Sciences, St. Petersberg, FL, United States, Thomas F Hanisco, NASA GSFC, Greenbelt, MD, United States and Philip S Stevens, Indiana University, O'Neill School of Public and Environmental Affairs, Bloomington, IN, United States
OSPA Liaison:  Yasin F Elshorbany, University of South Florida, Atmospheric Chemistry and Climate Laboratory, College of Arts and Sciences, St. Petersberg, FL, United States
 
Use of Photochemical Box Modeling and Field Data to Investigate the Impact of VOC and NOx on Photochemical Ozone (667299)
Buddhadeb Ghosh, Phillips 66 Company, Bartlesville, OK, United States
 
New Observations to Better Constrain NOx (NO + NO2) Concentrations on the Antarctic Plateau and to Resolve the Ambiguity in the NO2:NO Ratio. (674199)
Albane Barbero, Roberto Grilli, Camille Blouzon, Nicolas Caillon and Joël Savarino, Univ. Grenoble Alpes, CNRS, IRD, Grenoble INP, IGE, 38000 Grenoble, France, Grenoble, France
 
Constraining long-term NOx emissions over the United States and Europe to improve model simulations of tropospheric ozone (684214)
Amy Christiansen, University of Montana, Missoula, MT, United States, Loretta J. Mickley, Harvard University, School of Engineering and Applied Sciences, Cambridge, MA, United States and Lu Hu, University of Montana, Chemistry and Biochemistry, Missoula, MT, United States
 
Discerning Trends in Wintertime Reactive Chlorine Chemistry And Air Quality (684426)
Andrea A Angelucci, Trevor C VandenBoer and Cora Young, York University, Chemistry, Toronto, ON, Canada
 
The impact of volatile organic compounds on ozone formation in the suburban area of Shanghai (689887)
Kun Zhang1, Li Li2, Ling Huang1, Yangjun Wang1, Juntao Huo UOP3, Yusen Duan3, Yuhang Wang4 and Qingyan Fu3, (1)Shanghai University, Shanghai, China, (2)Pennsylvania State University, Civil Engineering, State College, PA, United States, (3)Shanghai Environmental Monitoring Center, Shanghai, China, (4)Georgia Institute of Technology, School of Earth and Atmospheric Sciences, Atlanta, GA, United States
 
Synthesis analysis of multi-dimensional ozone lidar measurements in coastal environments toward improving ozone simulations (707888)
Claudia Bernier1, Yuxuan Wang2, Guillaume Gronoff3 and Timothy Berkoff3, (1)University of Houston, Houston, TX, United States, (2)University of Houston, Department of Earth and Atmospheric Sciences, Houston, TX, United States, (3)NASA Langley Research Center, Hampton, VA, United States
 
Chemical Patterns Controlling Tropospheric Ozone and Methane: The ATom Dataset (710096)
Hao Guo1, Clare Marie Flynn2, Michael J Prather3, Sarah Strode4, Stephen D Steenrod4, Louisa K Emmons5, Forrest Lacey6, Arlene M Fiore7, Gustavo J P Correa7, Lee T Murray8, Glenn M Wolfe4, Michelle J Kim9, John D Crounse9, Glenn S Diskin10, Joshua P DiGangi11, Bruce C Daube12, Roisin Commane13, Kathryn McKain14,15, Thomas B Ryerson16, Chelsea R Thompson17, Thomas F Hanisco18, Donald Ray Blake19, Nicola J Blake19, Eric C Apel5, Rebecca S Hornbrook5, James W Elkins20, Eric J Hintsa21, Fred L Moore20 and Steven C Wofsy12, (1)University of California Irvine, Earth System Science Department, Irvine, CA, United States, (2)University of California, Irvine, Department of Earth System Science, Irvine, CA, United States, (3)Univ California Irvine, Irvine, CA, United States, (4)NASA Goddard Space Flight Center, Greenbelt, MD, United States, (5)National Center for Atmospheric Research, Boulder, CO, United States, (6)University of Colorado at Boulder, Boulder, CO, United States, (7)Columbia University, Palisades, NY, United States, (8)University of Rochester, Department of Earth and Environmental Sciences, Rochester, NY, United States, (9)California Institute of Technology, Division of Geological and Planetary Sciences, Pasadena, CA, United States, (10)NASA Langley Research Ctr, Hampton, VA, United States, (11)NASA Langley Research Center, Hampton, VA, United States, (12)Harvard University, John A. Paulson School of Engineering and Applied Sciences, Cambridge, MA, United States, (13)Columbia University in the City of New York, New York, NY, United States, (14)NOAA ESRL Global Monitoring Division, Boulder, CO, United States, (15)NOAA, Earth System Research Laboratory, Boulder, CO, United States, (16)NOAA ESRL Chemical Sciences Division, Boulder, CO, United States, (17)Institute for Arctic and Alpine Research, Boulder, CO, United States, (18)NASA GSFC, Greenbelt, MD, United States, (19)University of California Irvine, Irvine, CA, United States, (20)NOAA, Boulder, CO, United States, (21)Cooperative Institute for Research in Environmental Sciences, NOAA/ESRL Global Monitoring Division, Boulder, CO, United States
 
The Role of Hydrates, Competing Chemical Constituents, and Aerosol Surface Composition on ClNO2 Formation from Dusts (713706)
Haley Royer1, Dhruv Mitroo1,2, Sarah M Hayes3, Savannah Haas4,5, Kerri Pratt4, Patricia L Blackwelder6, Thomas E Gill7 and Cassandra Gaston1, (1)University of Miami, Department of Atmospheric Sciences, Miami, FL, United States, (2)Washington University in St Louis, Department of Energy, Environmental, and Chemical Engineering, St. Louis, MO, United States, (3)USGS, Reston, VA, United States, (4)University of Michigan Ann Arbor, Department of Chemistry and Department of Earth & Environmental Sciences, Ann Arbor, MI, United States, (5)University of California Davis, Department of Land, Air, and Water Resources, Davis, CA, United States, (6)Nova Southeastern University, Miami, FL, United States, (7)University of Texas at El Paso, Geological Sciences / Environmental Science and Engineering Program, El Paso, TX, United States
 
Global simulation of tropospheric halogen chemistry (716125)
Xuan Wang1, Daniel Jacob2, Shuting Zhai3, William Downs4, Lei Zhu5, Viral Shah2, Christopher D Holmes6, Becky Alexander3, Tomás Sherwen7, Mathew J Evans8 and J A Neuman9, (1)City University of Hong Kong, Hong Kong, Hong Kong, (2)Harvard University, Cambridge, MA, United States, (3)University of Washington, Department of Atmospheric Sciences, Seattle, WA, United States, (4)Harvard University, Cambridge, United States, (5)Harvard University, John A. Paulson School of Engineering and Applied Sciences, Cambridge, MA, United States, (6)Florida State University, Tallahassee, FL, United States, (7)University of York, Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, York, United Kingdom, (8)Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, University of York, York, United Kingdom, (9)Cooperative Institute for Research in Environmental Sciences (CIRES), NOAA ESRL, Chemical Sciences Laboratory, Boulder, CO, United States
 
Impact of HO2 Heterogeneous Aerosol Uptake on Ozone Formation During Haze Events in Central Beijing (724930)
Dwayne E Heard1, Eloise Slater2, Lisa Whalley1, Robert Woodward-Massey3, Chunxiang Ye4, James D Lee5, Freya Anne Squires5, James R Hopkins5, Rachel Dunmore5, Marvin Shaw6, Jacqueline Hamilton5, Alastair C Lewis6, Leigh Crilley7, Louisa J Kramer8, William Bloss8, Tuan Vu9, Yele Sun10, Weiqi Xu11, Pingqing Fu12, Siyao Yue10, Lujie Ren12, W. Joe F. Acton13, C Nick Hewitt13 and Xinming Wang14, (1)University of Leeds, School of Chemistry, Leeds, LS2, United Kingdom, (2)University of Leeds, School of Chemistry, Leeds, United Kingdom, (3)Peking University, College of Environmental Sciences and Engineering, Beijing, China, (4)Peking University, Beijing, China, (5)University of York, Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, York, United Kingdom, (6)Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, University of York, York, United Kingdom, (7)York University, Chemistry, Toronto, ON, Canada, (8)University of Birmingham, School of Geography, Earth and Environmental Sciences, Birmingham, United Kingdom, (9)University of Birmingham, Birmingham, United Kingdom, (10)Institute of Atmospheric Physics, Chinese Academy of Sciences, State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Beijing, China, (11)Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China, (12)Institute of Surface-Earth System Science, Tianjin University, Tianjin, China, (13)University of Lancaster, Lancaster Environment Centre, Lancaster, United Kingdom, (14)Chinese Academy Of Sciences, Guangzhou, China
 
Using Satellite-Derived Photolysis Rates (SatJ) to Evaluate Constraints on Atmospheric Oxidants Based on Photolysis Mechanisms in Chemistry Models (726194)
Jason Ducker, Florida State University, Earth, Ocean, and Atmospheric Science, Tallahassee, FL, United States, Christopher D Holmes, Florida State University, Tallahassee, FL, United States and Seiji Kato, NASA Langley Research Ctr, Hampton, VA, United States
 
Hydrogen Peroxide in Gas, Liquid and Aerosol Phases over Beijing (727931)
Zhongming Chen, Xiaoning Xuan, Yiwei Gong, Hengqing Shen and Shiyi Chen, Peking University, College of Environmental Sciences and Engineering, Beijing, China
 
Exploring the Reactive Chlorine Budget in the Polluted Marine Boundary Layer During the Halifax Fog and Air Quality Study (HaliFAQS) Field Campaign (730861)
Teles Furlani1, Alexander Moravek2, Cameron Nicholas Eugene Power3, Aldona Wiacek4, Rachel Chang5, Trevor C VandenBoer6 and Cora Young6, (1)York University, Toronto, ON, Canada, (2)York University, Toronto, Canada, (3)Saint Mary's University, Astronomy & Physics, Halifax, Canada, (4)Saint Mary's University, Environmental Science, Astronomy & Physics, Halifax, NS, Canada, (5)Dalhousie University, Physics & Atmospheric Science, Halifax, NS, Canada, (6)York University, Chemistry, Toronto, ON, Canada
 
Quantifying the Role of Hydroxyl-Driven Loss in Recent Methane Trends (732297)
Thomas Walker1, Kevin W Bowman2 and Kazuyuki Miyazaki2, (1)Carleton University, Department of Civil and Environmental Engineering, Ottawa, ON, Canada, (2)Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, United States
 
Fossil vs. non-fossil CO sources in the US: New airborne constraints from ACT-America and GEM (748914)
Andres Gonzalez1, Dylan B Millet2, Xueying Yu1, Bianca Baier3, Joshua P DiGangi4, Alexander Gvakharia5, Eric A Kort5, Kathryn McKain3 and Genevieve Plant5, (1)University of Minnesota Twin Cities, Department of Soil, Water, and Climate, Minneapolis, MN, United States, (2)University of Minnesota Twin Cities, St Paul, MN, United States, (3)NOAA ESRL Global Monitoring Division, Boulder, CO, United States, (4)NASA Langley Research Center, Hampton, VA, United States, (5)University of Michigan Ann Arbor, Climate and Space Sciences and Engineering, Ann Arbor, MI, United States
 
Development of cavity enhanced absorption spectrometer for nocturnal NOx sink quantification (769643)
Woohui Nam and Kyung-Eun Min, Gwangju Institute of Science and Technology, School of Earth Sciences and Environmental Engineering, Gwangju, South Korea
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