A036
Atmospheric Aerosols and Their Interactions with Clouds, Radiation, and Climate on Regional Scales VI Posters

Tuesday, 8 December 2020: 04:00-20:59
Poster
Primary Convener:  Bin Zhao, Pacific Northwest National Laboratory, Richland, WA, United States
Conveners:  Yu Gu, University of California Los Angeles, Joint Institute for Regional Earth System Science and Engineering, Los Angeles, CA, United States, Hong Liao, Nanjing University of Information Science & Technology, Nanjing, China and Chuanfeng Zhao, Beijing Normal University, College of Global Change and Earth System Science, Beijing, China
Primary Liaison:  Bin Zhao, Pacific Northwest National Laboratory, Richland, WA, United States
Chairs:  Bin Zhao, Pacific Northwest National Laboratory, Richland, WA, United States, Yu Gu, UCLA 405 Hilgard Ave, Los Angeles, CA, United States, Hong Liao, Chinese Academy of Sciences, Beijing, China and Chuanfeng Zhao, Beijing Normal University, College of Global Change and Earth System Science, Beijing, China
OSPA Liaison:  Tianhao Zhang, Wuhan University, State Key Laboratory of Information Engineering in Surveying, Mapping, and Remote Sensing, Wuhan, China
 
Aerosol Hygroscopic Properties Extended to 600 nm in the Urban Environment (732386)
Chuanyang Shen and Chunsheng Zhao, Peking University, Beijing, China
 
Aerosols Reduction during the COVID-19 Pandemic Substantially Increased Diurnal Temperature Range in China (772660)
Shijie Hu1, Jie Wu2, Dashan Wang3, Zhenzhong Zeng1 and Alan D. Ziegler4, (1)Southern University of Science and Technology, School of Environmental Science and Engineering, Shenzhen, China, (2)Southern University of Science and Technology, Shenzhen, China, (3)Sun Yat-Sen University, Guangzhou, China, (4)National University of Singapore, Singapore, Singapore
 
Beyond SOX reductions from shipping: Assessing the impact of NOX and carbonaceous-particle controls on human health and climate (731358)
Kelsey Bilsback1, Deanna Kerry2, Betty Croft3, Bonne Ford1, Ellison Carter4, Randall V Martin5 and Jeffrey R Pierce6, (1)Colorado State University, Atmospheric Science, Fort Collins, CO, United States, (2)Dalhousie University, Physics and Atmospheric Science, Halifax, Canada, (3)Dalhousie University, Physics and Atmospheric Science, Halifax, NS, Canada, (4)Colorado State University, Civil and Environmental Engineering, Fort Collins, CO, United States, (5)Washington University in St Louis, Energy, Environmental & Chemical Engineering, St. Louis, United States, (6)Colorado State University, Department of Atmospheric Science, Fort Collins, CO, United States
 
Cloud condensation nuclei (CCN) activity and water adsorption of model insoluble atmospheric aerosols: Application of Adsorption Activation Theory (765191)
Courtney Dyan Hatch, Julia Dick, Adam De Groodt, Olivia Eddings, Hanna Detar, Aubrey Brink, Rebecca Parham and Bang-Gaio Nguyen, Hendrix College, Chemistry, Conway, AR, United States
 
Comparison of real time measurements by FIGAERO CIMS and AMS from biogenic SOA formation in the CLOUD chamber. (760689)
Brandon Lopez1, Mingyi Wang2, Victoria Hofbauer1, Houssni Lamkaddam3, Lee Mauldin4, Imad El-Haddad5, Neil McPherson Donahue2 and CLOUD consortium, (1)Carnegie Mellon University, Center for Atmospheric Particle Studies, Pittsburgh, United States, (2)Carnegie Mellon University, Center for Atmospheric Particle Studies, Pittsburgh, PA, United States, (3)Paul Scherrer Institute, Villingen, Switzerland, (4)University of Colorado, Boulder, Department of Atmospheric and Oceanic Sciences, Boulder, CO, United States, (5)Paul Scherrer Institute, Laboratory of Atmospheric Chemistry, Villigen, Switzerland
 
Ice nucleation propensity of Long-range Transport Free tropospheric aerosols over the North Atlantic (699996)
Nurun Nahar Lata1, Bo Zhang2, Simeon K Schum1, Lynn R Mazzoleni1, Claudio Mazzoleni3 and Swarup China4, (1)Michigan Technological University, Houghton, MI, United States, (2)National Institute of Aerospace, Hampton, VA, United States, (3)Michigan Technological University, Physics, Houghton, MI, United States, (4)Pacific Northwest National Laboratory, Richland, WA, United States
 
Impact of transported dust aerosols on precipitation over the central Himalayas using convection permitting WRF-Chem Simulation (738817)
Pramod Adhikari, University of Nevada Reno, Reno, NV, United States and John Mejia, Desert Research Institute, Reno, NV, United States
 
Investigating Wintertime Sources of Organic Aerosols in Cape Cod, Massachusetts (739940)
McKenzie Larson, University of Colorado at Boulder, Atmospheric and Oceanic Sciences, Boulder, CO, United States and Eleanor C Browne, University of Colorado at Boulder, Department of Chemistry and Cooperative Institute for Research in Environmental Sciences, Boulder, CO, United States
 
Long- and Short-Term Temporal Variability in Cloud Condensation Nuclei Spectra in the Southern Great Plains (736671)
Russell Perkins, Colorado State University, Fort Collins, CO, United States, Peter James Marinescu, Colorado State University, Department of Atmospheric Science, Fort Collins, CO, United States, Ezra JT Levin, Handix Scientific, Boulder, CO, United States, Don Collins, University of California Riverside, Riverside, United States and Sonia M Kreidenweis, Colorado State University, Atmospheric Science, Fort Collins, CO, United States
 
Long-Range Transported Continental Aerosols Increase Observed Cloud Condensation Nuclei in the Eastern North Atlantic (710933)
Francesca Gallo1, Uin Janek2, Connor Joseph Flynn3, Stephen R. Springston2, Rob Wood4, Eduardo Brito de Azevedo5, Fan Mei6, Chongai Kuang7 and Allison C Aiken1, (1)Los Alamos National Laboratory, Los Alamos, NM, United States, (2)Brookhaven National Laboratory, Upton, NY, United States, (3)PNNL, Richland, VA, United States, (4)University of Washington Seattle Campus, Seattle, WA, United States, (5)University of Azores, Angra do Heroismo, Portugal, (6)Pacific Northwest National Laboratory, Richland, WA, United States, (7)Brookhaven National Laboratory, Environmental and Climate Sciences Department, Upton, NY, United States
 
Microphysics effects of anthropogenic aerosols on urban heavy precipitation over the Pearl River Delta, China (730276)
Qimin Cao, Sun Yat-Sen University, Guangzhou, China and WenShi Lin, Sun Yat-Sen University, School of Atmospheric Sciences, Guangzhou, China
 
Models underestimate the increase of acidity with remoteness biasing radiative impact calculations (746418)
Benjamin Nault1,2, Pedro Campuzano-Jost3, Doug A Day3, Duseong Jo4, Jason Clay Schroder5, Hannah M Allen6, Roya Bahreini7, Huisheng Bian8, Donald Ray Blake9, Mian Chin10, Simon L Clegg11, Peter Richard Colarco12, John D Crounse13, Michael Cubison1, Peter DeCarlo14, Jack E Dibb15, Glenn S Diskin16, Alma Hodzic17, Weiwei Hu18, Joseph M Katich19, Michelle J Kim13, Jack Kodros20, Agnieszka Kupc21, Felipe Lopez-Hilfiker22, Eloise Ann Marais23, Ann Middlebrook24, J A Neuman25, John B Nowak26, Brett Palm27, Fabien Paulot28, Jeffrey R Pierce29, Gregory P Schill30, Eric M Scheuer31, Joel A Thornton32, Kostas Tsigaridis33, Paul O Wennberg13, Christina Williamson34 and Jose L Jimenez3, (1)Cooperative Institute for Research in Environmental Sciences, Boulder, CO, United States, (2)University of Colorado at Boulder, Department of Chemistry, Boulder, CO, United States, (3)University of Colorado at Boulder, Cooperative Institute for Research in Environmental Sciences (CIRES) and Department of Chemistry, Boulder, CO, United States, (4)University of Colorado at Boulder, Chemistry/CIRES, Boulder, CO, United States, (5)Colorado Department of Public Health and Environment, Denver, CO, United States, (6)California Institute of Technology, Pasadena, CA, United States, (7)University of California Riverside, Environmental Sciences, Riverside, CA, United States, (8)NASA Goddard Space Flight Ctr, Greenbelt, MD, United States, (9)University of California Irvine, Irvine, CA, United States, (10)NASA Goddard SFC, Greenbelt, MD, United States, (11)University of East Anglia, Norwich, United Kingdom, (12)NASA GSFC, Greenbelt, MD, United States, (13)California Institute of Technology, Division of Geological and Planetary Sciences, Pasadena, CA, United States, (14)Johns Hopkins University, Department of Environmental Health and Engineering, Balitmore, MD, United States, (15)University of New Hampshire, Institute for the Study of Earth, Oceans, and Space, Durham, NH, United States, (16)NASA Langley Research Ctr, Hampton, VA, United States, (17)National Center for Atmospheric Research, Boulder, CO, United States, (18)Chinese Academy of Sciences, Guangzhou, China, (19)University of Colorado Cooperative Institute for Research in Environmental Sciences (CIRES) at the NOAA Chemical Sciences Laboratory (CSL), Boulder, CO, United States, (20)Colorado State University, Atmospheric Science, Fort Collins, CO, United States, (21)University of Vienna, Faculty of Physics, Vienna, Austria, (22)University of Washington Seattle Campus, Seattle, WA, United States, (23)University of Leicester, Department of Physics and Astronomy, Leicester, United Kingdom, (24)NOAA Boulder, Boulder, CO, United States, (25)Cooperative Institute for Research in Environmental Sciences (CIRES), NOAA ESRL, Chemical Sciences Laboratory, Boulder, CO, United States, (26)NASA Langley Research Center, Hampton, VA, United States, (27)University of Washington Seattle Campus, Atmospheric Sciences, Seattle, United States, (28)NOAA Geophysical Fluid Dynamics Laboratory, Princeton, NJ, United States, (29)Colorado State University, Department of Atmospheric Science, Fort Collins, CO, United States, (30)NOAA/CIRES, Boulder, CO, United States, (31)University of New Hampshire, Institute for the Study of Earth, Ocean, and Space, Durham, NH, United States, (32)University of Washington, Department of Atmospheric Sciences, Seattle, WA, United States, (33)Columbia University, New York, NY, United States, (34)NOAA/CIRES, Boulder, United States
 
Negligible contribution from conventionally-recognized ambient secondary conversion to severe PM2.5 pollution in today’s China (718491)
Yanjie Shen1, He Meng2 and Xiaohong Yao1, (1)Ocean University of China, Qingdao, China, (2)Qingdao Environmental Monitoring Center, Qingdao, China
 
Potential relationship between aerosols and lightning in sichuan Basin and Western Sichuan Plateau, China (763342)
Pengguo Zhao, Chengdu University of Information Technology, Chengdu, China and Zhanqing Li, University of Maryland, Atmospheric and Oceanic Sciences Department, College Park, MD, United States
 
Quantifying speciated aerosol removal in the remote troposphere: Constraints on physical and chemical removal of organic aerosol (OA) provided by the ATom mission. (739872)
Pedro Campuzano Jost1,2, Benjamin A Nault3, Jason Clay Schroder4, Duseong Jo5, Alma Hodzic6, Doug A Day3, Jose L Jimenez3, Joseph M Katich7, Joshua Peter Schwarz8, Gregory P Schill9, Karl D Froyd9, Louisa K Emmons6, Simone Tilmes10, Nicola J Blake11, Donald Ray Blake11, Bruce C Daube12, Roisin Commane13, Steven C Wofsy14, Huisheng Bian15, Peter Richard Colarco16, Mian Chin17, Pengfei Yu18, Eric A Ray19, Karen Hepler Rosenlof20, Paul A. Newman21, Jack Kodros22, Anna Lily Hodshire23 and Jeffrey R Pierce24, (1)University of Colorado at Boulder, Department of Chemistry, Boulder, CO, United States, (2)Cooperative Institute for Research in Environmental Sciences, Boulder, CO, United States, (3)University of Colorado at Boulder, Cooperative Institute for Research in Environmental Sciences (CIRES) and Department of Chemistry, Boulder, CO, United States, (4)Colorado Department of Public Health and Environment, Denver, CO, United States, (5)University of Colorado at Boulder, Chemistry/CIRES, Boulder, CO, United States, (6)National Center for Atmospheric Research, Boulder, CO, United States, (7)University of Colorado Cooperative Institute for Research in Environmental Sciences (CIRES) at the NOAA Chemical Sciences Laboratory (CSL), Boulder, CO, United States, (8)NOAA Chemical Sciences Laboratory (CSL), Boulder, CO, United States, (9)NOAA/CIRES, Boulder, CO, United States, (10)National Center for Atmospheric Research, Atmospheric Chemistry, Observations, and Modeling Laboratory, Boulder, CO, United States, (11)University of California Irvine, Irvine, CA, 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)Harvard Univ, Cambridge, MA, United States, (15)NASA Goddard Space Flight Ctr, Greenbelt, MD, United States, (16)NASA GSFC, Greenbelt, MD, United States, (17)NASA Goddard SFC, Greenbelt, MD, United States, (18)CIRES, Boulder, CO, United States, (19)NOAA/CIRES, Boulder, United States, (20)NOAA Earth System Research Laboratory, Chemical Sciences Division, Boulder, CO, United States, (21)NASA GSFC, Code 610, Greenbelt, MD, United States, (22)Colorado State University, Atmospheric Science, Fort Collins, CO, United States, (23)Colorado State University, Chemistry, Fort Collins, CO, United States, (24)Colorado State University, Department of Atmospheric Science, Fort Collins, CO, United States
 
Significant contribution of organics to aerosol liquid water content in winter in Beijing, China (767843)
Xiaoai Jin, Beijing Normal University, Beijing, China
 
The Aerosol Cloud Meteorology Interactions over the Western Atlantic Experiment (ACTIVATE): Concept and First Results (687070)
Armin Sorooshian, University of Arizona, Department of Hydrology and Atmospheric Sciences, Tucson, AZ, United States and The ACTIVATE Science Team
 
WRF-Chem/Crop modeling system for large-scale cultivation facilities in Korea (722276)
Su-Jung Lee, National Center for AgroMeteorology, Seoul, Korea, Republic of (South), Seung-Jae Lee, National Center for AgroMeteorology, Seoul National University, Seoul, South Korea, Hyo-Jung Lee, Pusan National University, Korea, Busan, South Korea, Hyun-Young Jo, Pusan National University, Busan, South Korea, Eun-Mi Hong, Kangwon National University, Korea, Kangwon, South Korea and Jae-Han Lee, National Institute of Agricultural Sciences, Jeonju, South Korea
 
Modeling Study of the Impact of COVID-19 on Air Quality in Southern California (720191)
Zhe Jiang, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China, Hongrong Shi, Institute of Atmospheric Physics, Beijing, China, Bin Zhao, Pacific Northwest National Laboratory, Richland, WA, United States, Yu Gu, UCLA 405 Hilgard Ave, Los Angeles, CA, United States and Kuo-Nan Liou, University of California Los Angeles, Joint Institute for Regional Earth System Science and Engineering, Los Angeles, CA, United States
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