Influence of Reactive Volatile Organic Compounds on Ozone Production in Houston-Galveston-Brazoria Area
نویسندگان
چکیده
منابع مشابه
Emissions Modeling of Specific Highly Reactive Volatile Organic Compounds (HRVOC) in the Houston-Galveston-Brazoria Ozone Nonattainment Area
The 2006 Texas Air Quality Study (TexAQS II) confirmed many of the results from the 2000 Texas Air Quality Study (TexAQS 2000). Both of these studies rank among the most extensive and comprehensive studies of their kind undertaken to date. Chief among many important findings was the discovery of the role played by certain light olefins in the rapid, intense formation of ozone in the Houston-Gal...
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[1] An episodic simulation is conducted to characterize ozone (O3) formation and to investigate the dependence of O3 formation on precursors in the Houston-Galveston (HG) area using a regional chemical transport model (CTM). The simulated net photochemical O3 production rates, P(O3), in the Houston area are higher than those in most other U.S. urban cities, reaching 20–40 ppb hr 1 for the dayti...
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Methods for ranking photochemical ozone formation reactivities of volatile organic compounds (VOCs) are discussed. Photochemical mechanisms for the atmospheric reactions of 118 VOCs were used to calculate their effects on ozone formation under various NOx conditions in model scenarios representing 39 different urban areas. Their effects on ozone were used to derive 18 different ozone reactivity...
متن کاملEnhancing Mobility in the Houston-galveston Region
................................................................................................................................... ii ACKNOWLEDGEMENTS ............................................................................................................ ii OVERVIEW ...............................................................................................................................
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ژورنال
عنوان ژورنال: Journal of Environmental Protection
سال: 2015
ISSN: 2152-2197,2152-2219
DOI: 10.4236/jep.2015.64039