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Wildfire Emissions and Their Interaction with Urban and Rural Pollution: Data and SimulationsIn recent years NASA has conducted a series of airborne campaigns (e. g. SEAC4RS*, ARCTAS, INTEX-A/B) over North America using an instrumented DC-8 aircraft equipped to measure a very large number of gaseous and aerosol constituents including several unique tracers. In these campaigns wild fires were extensively sampled near source as well as downwind after aging. The data provided detailed information on the composition and chemistry of fire emissions under a variety of atmospheric conditions as well as their interactions with rural and urban air pollution. Major fires studied including the California Rim fire in 2013 (SEAC4RS), the 2008 California wildfires (ARCTAS), and the Alaskan fires downwind over eastern US (INTEX-A). Although some fire plumes contained virtually no O3 enhancement, others showed significant ozone formation. Over Los Angeles, the highest O3 mixing ratios were observed in fire influenced urban air masses. Attempts to simulate these interactions using state of the art models were only minimally successful and indicated several shortcomings in simulating fire emission influences on urban smog formation. A variety of secondary oxidation products (e. g. O3, PAN, HCHO) were substantially underestimated. We will discuss the data collected in fire influenced air masses and their potential air quality implications.
Document ID
20140013282
Acquisition Source
Ames Research Center
Document Type
Abstract
Authors
Singh, H. B.
(NASA Ames Research Center Moffett Field, CA United States)
Date Acquired
November 3, 2014
Publication Date
September 22, 2014
Subject Category
Environment Pollution
Report/Patent Number
ARC-E-DAA-TN16583
Report Number: ARC-E-DAA-TN16583
Meeting Information
Meeting: Quadrennial ICACGP Symposium
Location: Natal
Country: Brazil
Start Date: September 22, 2014
End Date: September 26, 2014
Sponsors: Colorado Univ.
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Keywords
FIre Emissions
Pollution
Atmospheric Composition
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