A146
Atmospheric Chemistry in Highly Polluted Environments I Posters

Monday, 14 December 2020: 04:00-20:59
Poster
Primary Convener:  Jianlin Hu, NUIST Nanjing University of Information Science and Technology, Nanjing, China
Conveners:  Sri Harsha Kota, Indian Institute of Technology Delhi, Civil Engineering, New Delhi, India, Hongliang Zhang, Department of Environmental Science and Engineering, Fudan University, Baton Rouge, United States and Song Guo, Peking University, State Key Joint Laboratory of Environmental Simulation and Pollution Control, College of Environmental Sciences and Engineering, Beijing, China
Primary Liaison:  Jianlin Hu, NUIST Nanjing University of Information Science and Technology, Nanjing, China
Chairs:  Jianlin Hu, NUIST Nanjing University of Information Science and Technology, Nanjing, China and Sri Harsha Kota, Indian Institute of Technology Delhi, Civil Engineering, New Delhi, India
OSPA Liaison:  Song Guo, Peking University, State Key Joint Laboratory of Environmental Simulation and Pollution Control, College of Environmental Sciences and Engineering, Beijing, China
 
Adjoint Sensitivity Analysis to Determine Potential and Existing Precursor Contributions to Ozone Burdens Under Different Synoptic Events (685263)
Ling Jin, Lawrence Berkeley National Laboratory, Berkeley, CA, United States, Yuhan Wang, University of California at Berkeley, Berkeley, CA, United States, Quentin Mayemba, Insa Lyon, Lyon, France, Lucas Bastien, Lawrence Berkeley Nat. Lab. + UCB, Berkeley, CA, United States, Tin Ho, Lawrence Berkeley National Laboratory, Berkeley, United States, Nancy J Brown, Lawrence Berkeley Natl Lab, Berkeley, CA, United States and Robert Harley, University of California, Berkeley, Berkeley, CA, United States
 
Contributions of α-Dicarbonyls to Secondary Organic Aerosol Formation From Photo-oxidation of Toluene (717125)
Yixin Li1, Jiayun Zhao1 and Renyi Zhang2, (1)Texas A&M University, Chemistry, College Station, TX, United States, (2)Texas A & M Univ, College Station, TX, United States
 
Global importance of hydroxymethanesulfonate in ambient particulate matter: Implications for air quality (672885)
Jonathan Moch1, Eleni Dovrou2, Loretta J. Mickley3, Frank N Keutsch4, Zirui Liu5, Yuesi Wang6, Tracy L Dombek7, Mikinori Kuwata8, Sri Hapsari Budisulistiorini9, Liudongqing Yang10, Stefano Decesari11, Marco Paglione12, Becky Alexander13, Jingyuan Shao14, J William Munger1 and Daniel Jacob1, (1)Harvard University, Cambridge, MA, United States, (2)Harvard University, John A. Paulson School of Engineering and Applied Sciences, Cambridge, MA, United States, (3)Harvard University, School of Engineering and Applied Sciences, Cambridge, MA, United States, (4)Harvard University, School of Engineering and Applied Sciences, Department of Chemistry and Chemical Biology and Department of Earth and Planetary Sciences, Cambridge, MA, United States, (5)IAP, CAS, Beijing, China, (6)Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China, (7)RTI International, Research Triangle Park, United States, (8)Peking University, Beijing, China, (9)University of York, Wolfson Atmospheric Chemistry Laboratories, York, YO10, United Kingdom, (10)Nanyang Technological University, Singapore, Singapore, (11)National Research Council (CNR), Institute of Atmospheric Sciences and Climate (ISAC), Bologna, Italy, (12)CNR Institute of Atmospheric Sciences and Climate, Bologna, Italy, (13)University of Washington, Department of Atmospheric Sciences, Seattle, WA, United States, (14)University of Washington, Seattle, United States
 
Identifying the Transport and Evolution of Oxidized Organic Aerosol across the Urban Core of San Antonio (681971)
Fangzhou Guo1, Alex Bui1, Edward Fortner2, Sujan Shrestha3, Subin Yoon4, Rebecca J Sheesley3, Sascha Usenko3, Tara Irene Yacovitch2, Scott C. Herndon2, James Flynn4 and Robert J Griffin5, (1)Rice University, Civil and Environmental Engineering, Houston, TX, United States, (2)Aerodyne Research Inc., Billerica, MA, United States, (3)Baylor University, Environmental Science, Waco, TX, United States, (4)University of Houston, Department of Earth and Atmospheric Sciences, Houston, TX, United States, (5)Rice University, Department of Civil and Environmental Engineering, Houston, TX, United States
 
Investigation of α-Pinene atmospheric oxidation using ambient perturbation experiments (713201)
Jean Rivera-Rios, Georgia Institute of Technology Main Campus, School of Chemical and Biomolecular Engineering, Atlanta, GA, United States, Adam T Wright, Georgia Institute of Technology Main Campus, Atlanta, United States, Zijing Zhang, Peking University, Beijing, China, Jennifer Kaiser, Georgia Institute of Technology Main Campus, School of Civil and Environmental Engineering, School of Earth and Atmospheric Sciences, Atlanta, GA, United States and Nga Lee Ng, Georgia Institute of Technology Main Campus, School of Chemical and Biomolecular Engineering, School of Civil and Environmental Engineering, School of Earth and Atmospheric Sciences, Atlanta, GA, United States
 
Is oxidation of atmospheric mercury controlled by different mechanisms in the polluted continental boundary layer vs. remote marine boundary layer? (668974)
Maor Gabay, Hebrew University of Jerusalem, Soil & Water Sciences, Jerusalem, Israel, Shira Raveh-Rubin, Weizmann Institute of Science, Rehovot, Israel, Mordechai Peleg, Hebrew University of Jerusalem, Institute of Earth Sciences, Jerusalem, Israel, Erick Fredj, The Jerusalem College of Technology, Jerusalem, Israel and Eran Tas, Hebrew University of Jerusalem, Soil and Water Sciences, Rehovot, Israel
 
Isoprene secondary organic aerosol in summertime Beijing: the effect of anthropogenic emissions on organosulfate and nitrooxy organosulfate formation (692877)
Daniel Bryant1, James R Hopkins2, Rachel Dunmore2, Kelly Louise Pereira1, Pete Edwards3, Marvin Shaw3, Freya Anne Squires2, Tom Bannan4, Archit Mehra4, Stephen D Worrall5, Asan Bacak6, Hugh Coe7, Carl Percival8, Lisa Whalley9, Dwayne E Heard9, Eloise Slater10, Bin Ouyang11, Tianqu Cui12, Jason D Surratt13, Di Liu14, Zongbo Shi15, Roy M Harrison16, Yele Sun17, Weiqi Xu18, Claire Reeves19, Graham Mills20, Sue B Grimmond21, Alastair C Lewis3, James D Lee22, Andrew R Rickard23 and Jacqueline Hamilton2, (1)University of York, York, United Kingdom, (2)University of York, Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, York, United Kingdom, (3)Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, University of York, York, United Kingdom, (4)University of Manchester, Manchester, United Kingdom, (5)Aston University, Chemical Engineering and Applied Chemistry, Birmingham, United Kingdom, (6)University of Manchester, Centre for Atmospheric Science, School of Earth, Atmospheric and Environmental Sciences, Manchester, United Kingdom, (7)Department of Earth and Environmental Sciences, University of Manchester, Manchester, United Kingdom, (8)NASA Jet Propulsion Laboratory, Pasadena, CA, United States, (9)University of Leeds, School of Chemistry, Leeds, LS2, United Kingdom, (10)University of Leeds, School of Chemsitry, Leeds, AL, United Kingdom, (11)University of Cambridge, Cambridge, United Kingdom, (12)University of North Carolina at Chapel Hill, Chapel Hill, NC, United States, (13)UNC-Environment Sci & Eng, Chapel Hill, NC, United States, (14)State Key Laboratory of Organic Geochemistry and Guangdong Provincial Key Laboratory of Environmental Protection and Resources Utilization, Guangzhou, China, (15)Institute of Surface-Earth System Science, Tianjin University, Tianjin, China, (16)University of Birmingham, School of Geography, Earth and Environmental Sciences, Birmingham, United Kingdom, (17)Institute of Atmospheric Physics, Chinese Academy of Sciences, State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Beijing, China, (18)Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China, (19)National Centre for Atmospheric Science, Leeds, United Kingdom, (20)University of East Anglia, Norwich, United Kingdom, (21)University of Reading, Meteorology, Reading, RG6, United Kingdom, (22)National Centre for Atmospheric Science, University of York, York, United Kingdom, (23)National Centre for Atmospheric Science, York, United Kingdom
 
Lagrangian Analysis of Ozone Production in the Baltimore-Washington Metropolitan Area Based on Air Parcel Trajectories and In Situ Airborne Measurements from the 2011 DISCOVER-AQ Campaign (751130)
Heather Leigh Arkinson1, Lacey C Brent2, Hao He1, Christopher Loughner3, Jeff Stehr4, Andrew John Weinheimer5 and Russell R. Dickerson6, (1)University of Maryland College Park, Department of Atmospheric and Oceanic Science, College Park, MD, United States, (2)NIST, Gaithersburg, MD, United States, (3)University of Maryland College Park, Earth System Science Interdisciplinary Center, College Park, MD, United States, (4)University of Maryland College Park, College Park, MD, United States, (5)NCAR, Atmospheric Chemistry Observations and Modeling Laboratory, Boulder, CO, United States, (6)University of Maryland, College Park, United States
 
Quantifying Nitrate Formation Pathways in Highly Polluted Environments Using Observations of 17O excess (Δ17O) and an Air Quality Model (767018)
Yuk Chun Chan1, Christopher D Holmes2, Lyatt Jaegle1, Joel A Thornton1, Xuan Wang3, Zhouqing Xie4, Shuting Zhai1 and Becky Alexander1, (1)University of Washington, Department of Atmospheric Sciences, Seattle, WA, United States, (2)Florida State University, Tallahassee, FL, United States, (3)City University of Hong Kong, Hong Kong, Hong Kong, (4)Anhui Province Key Laboratory of Polar Environment and Global Change, School of Earth and Space Sciences, University of Science and Technology of China, Hefei, China
 
Rainforest-like Atmospheric Chemistry in a Polluted Megacity (725841)
Mike Newland1, Daniel Bryant2, Rachel Dunmore3, Tom Bannan4, W. Joe F. Acton5, Ben Langford6, James R Hopkins3, Freya Anne Squires3, William Dixon2, William S Drysdale3, Peter Ivatt7, Mathew J Evans7, Pete Edwards7, Lisa Whalley8, Dwayne E Heard8, Eloise Slater9,10, Robert Woodward-Massey11, Chunxiang Ye12, Archit Mehra4, Stephen D Worrall13, Asan Bacak14, Hugh Coe15, Carl Percival16, C Nick Hewitt5, James D Lee3, Tianqu Cui17, Jason D Surratt18, Xinming Wang19, Alistair C Lewis20, Andrew R Rickard21 and Jacqueline Hamilton3, (1)University of York, York, YO10, United Kingdom, (2)University of York, York, United Kingdom, (3)University of York, Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, York, United Kingdom, (4)University of Manchester, Manchester, United Kingdom, (5)University of Lancaster, Lancaster Environment Centre, Lancaster, United Kingdom, (6)Centre for Ecology and Hydrology, Edinburgh, United Kingdom, (7)Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, University of York, York, United Kingdom, (8)University of Leeds, School of Chemistry, Leeds, LS2, United Kingdom, (9)University of Leeds, School of Chemsitry, Leeds, AL, United Kingdom, (10)University of Leeds, School of Chemistry, Leeds, United Kingdom, (11)Peking University, Beijing, China, (12)Wadsworth Center, Albany, United States, (13)Aston University, Chemical Engineering and Applied Chemistry, Birmingham, United Kingdom, (14)University of Manchester, Centre for Atmospheric Science, School of Earth, Atmospheric and Environmental Sciences, Manchester, United Kingdom, (15)Department of Earth and Environmental Sciences, University of Manchester, Manchester, United Kingdom, (16)NASA Jet Propulsion Laboratory, Pasadena, CA, United States, (17)University of North Carolina at Chapel Hill, Chapel Hill, NC, United States, (18)UNC-Environment Sci & Eng, Chapel Hill, NC, United States, (19)Chinese Academy Of Sciences, Guangzhou, China, (20)University of York, Wolfson Atmospheric Chemistry Laboratories, York, United Kingdom, (21)National Centre for Atmospheric Science, York, United Kingdom
 
Relationships between chemical composition and size distribution of submicron aerosol particles in São Paulo, Brazil. (760802)
Djacinto Monteiro dos Santos Jr, University of Sao Paulo, Physics Institute, Sao Paulo, United States, Luciana Varanda Rizzo, Universidade Federal de São Paulo, Departamento de Ciências Exatas e da Terra, Diadema, Brazil, Samara Carbone, Federal University of Uberlândia, Uberlândia, Brazil, Patrick Schlag, University of Sao Paulo, Physics Institute, São Paulo, Brazil and Paulo Artaxo, University of São Paulo, Physics Institute, São Paulo, Brazil
 
Sensitivity of the simulated PM2.5 concentrations over Northeast Asia to different secondary aerosol modules during KORUS-AQ (769457)
Hyo-Jung Lee1, Hyun-Young Jo2, Yu-Jin Jo2, Shin-Young Park1 and Cheol-Hee Kim1, (1)Pusan National University, Busan, Korea, Republic of (South), (2)Pusan National University, Busan, South Korea
 
The effect of the interannual variability of clouds on photolysis rates and composition in highly polluted regions (695118)
Sunil Varma, Imperial College London, Department of Physics, London, United Kingdom and Apostolos Voulgarakis, Imperial College London, Physics, London, United Kingdom
 
The Impact of Meteorology on Air Pollution in the Lower Atmosphere over the North China Plain in Spring 2016 (758482)
Sarah Elizabeth Elizabeth Benish, University of Maryland College Park, College Park, MD, United States, Xinrong Ren, NOAA Science Center, College Park, MD, United States, Hao He, University of Maryland College Park, Department of Atmospheric and Oceanic Science, College Park, MD, United States, Ross J Salawitch, University of Maryland, AOSC and Chemistry, College Park, MD, United States and Russell R. Dickerson, University of Maryland, College Park, United States
 
TROPOMI based emission estimate for East Asia (692895)
Hao Kong1, Jintai Lin1, Mengyao Liu1 and Hongjian Weng, (1)Peking University, Beijing, China
 
Understanding in-situ ozone production in Delhi, India (726343)
Beth Nelson1, Gareth Stewart1, Will Stephen Drysdale1, Mike Newland1, Adam Vaughan2, Rachel Dunmore2, Jacqueline Hamilton2, James R Hopkins2,3, Andrew R Rickard2,3, James D Lee2,3, W. Joe F. Acton4, C Nick Hewitt4, Leigh Crilley5, Mohammed Salim Alam5, William Bloss5, Lisa Whalley6, Eiko Nemitz7 and Ranu Gadi8, (1)University of York, Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, York, YO10, United Kingdom, (2)University of York, Wolfson Atmospheric Chemistry Laboratories, Department of Chemistry, York, United Kingdom, (3)National Centre for Atmospheric Science, York, United Kingdom, (4)University of Lancaster, Lancaster Environment Centre, Lancaster, United Kingdom, (5)University of Birmingham, School of Geography, Earth and Environmental Sciences, Birmingham, United Kingdom, (6)University of Leeds, School of Chemistry, Leeds, LS2, United Kingdom, (7)Centre for Ecology and Hydrology, Edinburgh, United Kingdom, (8)Indira Gandhi Delhi Technical University for Women, Applied Sciences & Humanities, Delhi, India
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