PPT-Quantification of anthropogenic emissions from an urban reg
Author : karlyn-bohler | Published Date : 2016-04-20
First results of timeintegrated flask samples from the Indianapolis Flux Project INFLUX Jocelyn Turnbull Colm Sweeney Doug Guenther Pieter Tans NOAAESRL
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Quantification of anthropogenic emissions from an urban reg: Transcript
First results of timeintegrated flask samples from the Indianapolis Flux Project INFLUX Jocelyn Turnbull Colm Sweeney Doug Guenther Pieter Tans NOAAESRL and CIRES University of Colorado. . 18. th. WMO/IAEA Meeting on Carbon Dioxide, Other Greenhouse Gases and Related Measurement Techniques (GGMT), Sept 2015. N. Miles, S. Richardson. , . T. . Lauvaux. , K. Davis, A.J. Deng. , D. Martins, . Quantification of Atmospheric Boundary Layer Greenhouse Gas Dry Mole Fraction Enhancements from Urban Emissions: Results from INFLUX. . . NOAA GMD Annual Meeting, May 2015. Natasha Miles, Scott Richardson. G. reenhouse Gas Emissions: Ground-based results from the INFLUX Experiment. Map of road emissions from Hestia with . atmospheric . modeled CO2 concentration using the WRF-FDDA system (1km) on Oct 7th, 2011 at 5pm (LST). 2. Columns, NO. x. Emissions, and Air Quality in North America. Tiger Team Update. David Streets, Greg Carmichael, Dan Cohan, Ben de Foy, Bryan Duncan, Arlene Fiore, . Tracey Holloway, and Zifeng Lu. Michael Clarkson and Fred B. Schneider. Cornell University. RADICAL. May 10, 2010. Goal. Information-theoretic. Quantification of. programs’ impact on. Integrity. of Information. (relationship to database privacy). .. urban . NO. x. emissions . from . Ozone Monitoring Instrument (OMI) satellite retrievals. Zifeng Lu, David G. Streets. Decision and Information Sciences Division. Argonne National Laboratory. Presented . contributions . to the decadal . variations of stratospheric aerosol. Mian Chin. , NASA Goddard Space Flight Center. Plus:. Thomas . Diehl, . Qian. Tan, . Huisheng. . Bian. , John Burrows, . Nickolay. Ozone Level. L. u . X. u. Xiaoxi. Liu. Benjamin . Sheyko. Overview. 1. Introduction. 2. Long-term changes in surface O. 3. of global scale. - N.H. and S.H.. 3. Long-term . changes in surface O. Climate Change. Major Anthropogenic Sources. CO. 2. Aerosols. Cement manufacturing. Land use. Ozone depletion. Animal agriculture. Deforestation. CO. 2 . emissions. Fossil Fuel combustion and other human activities emit 30 . Overpredictions. of NO. 2. and PM. 2.5. Concentrations. Michael Moran. 1. , . Qiong Zheng. 1. , . Junhua. Zhang. 1. , . Radenko Pavlovic. 2. , . and . David Niemi. 3. 1. Air Quality Research Division, Environment Canada, Toronto, Ontario, Canada . Overpredictions. of NO. 2. and PM. 2.5. Concentrations. Michael Moran. 1. , . Qiong Zheng. 1. , . Junhua. Zhang. 1. , . Radenko Pavlovic. 2. , . and . David Niemi. 3. 1. Air Quality Research Division, Environment Canada, Toronto, Ontario, Canada . Nitrous . Oxide (N. 2. O). : The Dominant Ozone-Depleting Substance Emitted in the 21. st. . Century, A. . R. . Ravishankara, John S. Daniel, and Robert W. . Portmann, . SCIENCE. , . Vol. . 326, Pages: 123-125, 2009 (OCT 2. Lester Kwiatkowski. SO. 4. PM. 10. PM. 2.5. Talk summary. The AMO, aerosols and Caribbean coral growth. Using GCMs & statistical models to resolve proximate drivers of historical AMO-coral growth correlations. Granier. NOAA ESRL/Chemical Sciences Division and CIRES, University of Colorado. Boulder, CO, USA. and. Laboratoire. . d’Aérologie. , Toulouse, France. With contributions from colleagues from. CAMS, GEIA and AMIGO.
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