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Pure Appl. Chem., 1998, Vol. 70, No. 7, pp. 1327-1334

Gas-phase degradation of organic compounds in the troposphere

R. Atkinson

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  • Marotta Ester, Schiorlin Milko, Rea Massimo, Paradisi Cristina: Products and mechanisms of the oxidation of organic compounds in atmospheric air plasmas. J Phys D Appl Phys 2010, 43, 124011. <>
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  • Sax Mirjam, Zenobi Renato, Baltensperger Urs, Kalberer Markus: Time Resolved Infrared Spectroscopic Analysis of Aerosol Formed by Photo-Oxidation of 1,3,5-Trimethylbenzene and α-Pinene. Aerosol Sci and Technol 2005, 39, 822. <>
  • Clemitshaw Kevin: A Review of Instrumentation and Measurement Techniques for Ground-Based and Airborne Field Studies of Gas-Phase Tropospheric Chemistry. REV ENVIRON SCI TECHNOL 2004, 34, 1. <>
  • Protczak Agnieszka, Trzeszczynski Jerzy: Studies on reactions of ozone with alkenes. Env Sci Poll Res Int 2002, 9, 377. <>
  • E. Jenkin Michael, Shallcross Dudley E, Harvey Jeremy N: Development and application of a possible mechanism for the generation of cis-pinic acid from the ozonolysis of α- and β-pinene. Atmosphere Environment 2000, 34, 2837. <>
  • Jenkin Michael E., Clemitshaw Kevin C.: Ozone and other secondary photochemical pollutants: chemical processes governing their formation in the planetary boundary layer. Atmosphere Environment 2000, 34, 2499. <>
  • Ariya Parisa A., Sander Rolf, Crutzen Paul J.: Significance of HOx and peroxides production due to alkene ozonolysis during fall and winter: A modeling study. J. Geophys. Res. 2000, 105, 17721. <>
  • Azad K., Andino J. M.: Products of the gas-phase photooxidation reactions of 1-propanol with OH radicals. Int J Chem Kinet 1999, 31, 810. <<810::AID-JCK8>3.0.CO;2-W>