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Environment / Atmosphere / Environmental chemistry / Ozone depletion / Building biology / Volatile organic compound / Air pollution / Ozone / NOx / Chemistry / Pollutants / Smog


Geosci. Model Dev., 8, 99–114, 2015 www.geosci-model-dev.netdoi:gmd © Author(sCC Attribution 3.0 License. Photochemical grid model implementation and application of VOC,
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Document Date: 2015-01-29 09:12:39


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City

Denver / Los Angeles / Receptor / Sacramento / /

Company

Russell / /

Country

Jordan / United States / Mexico / /

/

Event

Natural Disaster / /

Facility

Port of Los Angeles / Harvard University / /

IndustryTerm

gas phase chemistry module / chemical production terms / incremental chemical time / electricity / chemical algorithms / chemical mass balance / chemical mechanism / linear algorithms / chemical reaction rates / nonlinear systems / chemical regimes / non-electricity / source apportionment algorithm / ozone chemical formation regime / chemical sensitivity approach / numerical chemistry algorithm / linear systems / matrix solution / physical and chemical processes / chemical destruction / chemical regime / /

NaturalFeature

San Francisco Bay / /

Organization

European Geosciences Union / United States Environmental Protection Agency / National Research Council / Harvard University / U.S. Environmental Protection Agency / California Air Resources Board / /

Person

ETHA ETOH FORM IOLE ISOP / Krishnan / Dev / Ying / Foley / /

Position

Model / General / Porter / /

ProvinceOrState

Ohio / North Carolina / California / Colorado / /

Technology

source apportionment algorithm / radiation / numerical chemistry algorithm / simulation / same algorithm / O3 source apportionment algorithm / /

URL

www.geosci-model-dev.net/8/99/2015 / /

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