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1

R, MacKenzie A., ed. Air pollution by photochemical oxidants. Amsterdam [The Netherlands]: Elsevier, 1994.

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2

Hozenka, Kanagawa-ken (Japan) Taiki. Kanagawa-ken ni okeru kōkagaku taiki osen no genjō to taisaku. [Yokohama-shi]: Kanagawa-ken Kankyōbu, 1986.

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3

Hozenka, Kanagawa-ken (Japan) Taiki. Kanagawa-ken ni okeru kōkagaku taiki osen no genjō to taisaku. Yokohama-shi: Kanagawa-ken, 1996.

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4

Hozenka, Kanagawa-ken (Japan) Taiki. Kanagawa-ken ni okeru kōkagaku taiki osen no genjō to taisaku. Yokohama-shi: Kanagawa-ken, 1988.

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5

Hozenkyoku, Tokyo (Japan) Kankyō. Konka ni okeru kōkagaku sumoggu ni tsuite. Tōkyō: Tōkyō-to Kankyō Hozenkyoku, 1986.

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6

Shafer, Toby B. Evaluation of chemical reaction mechanisms for photochemical smog. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laboratory, 1985.

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7

Control, US/FRG/EC Workshop on Photochemical Ozone Problem and Its. Fourth US/FRG/EC Workshop on Photochemical Ozone Problem and Its Control: Proceedings : urban, regional, and global scale : issues and studies in the 1990s, Marriott Hotel, Charleston, SC, USA, Jine 13-17, 1994. Research Triangle Park, NC: Atmospheric Research and Exposure Assessment Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1995.

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8

Kankyōbu, Chiba-ken (Japan). Kōkagaku sumoggu no hassei jōkyō: Shōwa 63-nendo. Chiba-shi: Chiba-ken Kankyōbu, 1988.

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9

Gardner, Edward P. The primary photochemical processes of acrolein. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laboratory, 1986.

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10

Hull, L. A. Analysis of aldehydes and ketones in the gas phase. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laboratory, 1985.

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11

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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12

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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13

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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14

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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15

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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16

Holmes, David. A Study of photochemical smog episodes in the U.K. and the Netherlands. Wolverhampton: University of Wolverhampton, 1993.

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17

Harley, Robert A., and Dev E. Millstein. Impact of climate change on photochemical air pollution in southern California: Final paper. Sacramento, Calif.]: California Energy Commission, 2009.

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18

Whitten, G. Z. Development of a chemical kinetic mechanism for the U.S. EPA regional oxidant model. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laboratory, 1985.

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19

Perego, Silvan. Ein numerisches Modell zur Simulation des Sommersmogs. Bern: Geographisches Institut der Universität Bern, 1996.

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20

Cass, Glen Rowan. Protection of works of art from photochemical smog: Final report submitted to the Getty Conservation Institute. Pasadena, Calif: Environmental Quality Laboratory, California Institute of Technology, 1988.

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21

Haney, Jay L. Evaluation and application of the urban airshed model in the Philadelphia air quality control region. Research Triangle Park, NC: U.S. Environmental Protection Agency, Office of Air and Radiation, Office of Air Quality Planning and Standards, 1985.

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22

E, Tulupov P., ed. Khimii͡a︡ peroksinitratov-komponentov fotokhimicheskogo smoga. Moskva: "Nauka", 1989.

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23

Fishman, Jack. Ozone, tropospheric. [Washington, D.C: National Aeronautics and Space Administration, 1995.

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24

Everett, Steven Albert. Formation and properties of perthiyl radicals as studied by photochemical and radiation chemical methods. [S.l: The author], 1992.

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25

Peake, Eric. Nitric acid, peroxyacetyl nitrate (PAN), and particulate nitrate in the atmosphere of the City of Edmonton. Edmonton: Research Management Division, Alberta Environment, 1985.

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26

Heisei 19-nen no kōkagaku sumoggu no hassei jōkyō. Tōkyō: Tōkyō-to Kankyōkyoku, 2007.

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27

Kankyōbu, Saitama-ken (Japan), ed. Saitama-ken ni okeru kōkagaku sumoggu no hassei jōkyō: Shōwa 59-nendo. [Urawa-shi]: Saitama-ken Kankyōbu, 1985.

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28

Organsiation for Economic Co-operation and Development., ed. Control strategies for photochemical oxidants across Europe. Paris: Organisation for Economic Co-operation and Development, 1990.

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29

Atmospheric Research and Exposure Assessment Laboratory (U.S.), ed. The role of biogenic organics in the Southeast ozone problem: Preliminary assessments and implications : project summary. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Research and Exposure Assessment Laboratory, 1990.

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30

Atmospheric Research and Exposure Assessment Laboratory (U.S.), ed. The role of biogenic organics in the Southeast ozone problem: Preliminary assessments and implications : project summary. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Research and Exposure Assessment Laboratory, 1990.

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31

Hozenka, Kanagawa-ken (Japan) Taiki, ed. Kōkagaku taiki osen no genjō to taisaku. [Yokohama-shi]: Kanagawa-ken Kankyōbu, 1985.

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32

Rye, Peter. Modelling the meteorology of Perth photochemical smog events (Technical series). Department of Environmental Protection, 1996.

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33

E, Jeffries H., and Atmospheric Sciences Research Laboratory, eds. Outdoor smog chamber experiments to test photochemical models: Phase II. Research Triangle Park, NC: U.S. Environmental Protection Agency, Atmospheric Sciences Research Laboratory, 1985.

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34

Atmospheric Research and Exposure Assessment Laboratory (U.S.), ed. Proceedings, Fourth US/FRG/EC Workshop on Photochemical Ozone Problem and Its Control: Urban, regional, and global scale : issues and studies in the 1990s : Marriott Hotel, Charleston, SC, USA, June 13-17, 1994. Research Triangle Park, NC: Atmospheric Research and Exposure Assessment Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1995.

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35

Guderian, Robert. Air Pollution by Photochemical Oxidants: Formation, Transport, Control, and Effects on Plants. Brand: Springer, 2011.

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36

Robert, Guderian, and Becker K. H, eds. Air pollution by photochemical oxidants: Formation, transport, control, and effects on plants. Berlin: Springer-Verlag, 1985.

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37

Guderian, Robert. Air Pollution by Photochemical Oxidants: Formation, Transport, Control, and Effects on Plants (Ecological Studies). Springer, 1985.

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38

(Contributor), K. H. Becker, W. Fricke (Contributor), R. Guderian (Contributor), J. L. Löbeö (Contributor), R. Rabe (Contributor), U. Schurath (Contributor), D. T. Tingey (Contributor), and Robert Guderian (Editor), eds. Air Pollution by Photochemical Oxidants: Formation, Transport, Control, and Effects on Plants (Ecological Studies). Springer, 1985.

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39

Derwent, R. G., and A. M. Hough. The Impact of Possible Future Emission Control Regulations on Photochemical Ozone Formation in Europe: The Luxembourg Agreement and Diesel Emissions. AEA Technology Plc, 1988.

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40

R, Leone Stephen, and United States. National Aeronautics and Space Administration., eds. Rate coefficients for reactions of ethynyl radical (C₂H) with HCN and CH₃CN: Implications for the formation of complex nitriles on Titan. [Washington, DC: National Aeronautics and Space Administration, 1997.

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41

Calvert, Jack, Abdelwahid Mellouki, John Orlando, Michael Pilling, and Timothy Wallington. Mechanisms of Atmospheric Oxidation of the Oxygenates. Oxford University Press, 2011. http://dx.doi.org/10.1093/oso/9780199767076.001.0001.

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Abstract:
Prepared by an international team of eminent atmospheric scientists, Mechanisms of Atmospheric Oxidation of the Oxygenates is an authoritative source of information on the role of oxygenates in the chemistry of the atmosphere. The oxygenates, including the many different alcohols, ethers, aldehydes, ketones, acids, esters, and nitrogen-atom containing oxygenates, are of special interest today due to their increased use as alternative fuels and fuel additives. This book describes the physical properties of oxygenates, as well as the chemical and photochemical parameters that determine their reaction pathways in the atmosphere. Quantitative descriptions of the pathways of the oxygenates from release or formation in the atmosphere to final products are provided, as is a comprehensive review and evaluation of the extensive kinetic literature on the atmospheric chemistry of the different oxygenates and their many halogen-atom substituted analogues. This book will be of interest to modelers of atmospheric chemistry, environmental scientists and engineers, and air quality planning agencies as a useful input for development of realistic modules designed to simulate the atmospheric chemistry of the oxygenates, their major oxidation products, and their influence on ozone and other trace gases within the troposhere.
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