• Title of article

    Photochemical processes on Titan: Irradiation of mixtures of gases that simulate Titanʹs atmosphere

  • Author/Authors

    Tran، نويسنده , , Buu N. and Joseph، نويسنده , , Jeffrey C. and Force، نويسنده , , Michael A. Briggs، نويسنده , , Robert G. and Vuitton، نويسنده , , Veronique and Ferris، نويسنده , , James P.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    10
  • From page
    106
  • To page
    115
  • Abstract
    Photochemical reaction pathways in Titanʹs atmosphere were investigated by irradiation of the individual components and the mixture containing nitrogen, methane, hydrogen, acetylene, ethylene, and cyanoacetylene. The quantum yields for the loss of the reactants and the formation of products were determined. Photolysis of ethylene yields mainly saturated compounds (ethane, propane, and butane) while photolysis of acetylene yields the same saturated compounds as well as ethylene and diacetylene. Irradiation of cyanoacetylene yields mainly hydrogen cyanide and small amounts of acetonitrile. When an amount of methane corresponding to its mixing ratio on Titan was added to these mixtures the quantum yields for the loss of reactants decreased and the quantum yields for hydrocarbon formation increased indicative of a hydrogen atom abstraction from methane by the photochemically generated radicals. GC/MS analysis of the products formed by irradiation of mixtures of all these gases generated over 120 compounds which were mainly aliphatic hydrocarbons containing double and triple bonds along with much smaller amounts of aromatic compounds like benzene, toluene and phenylacetylene. The reaction pathways were investigated by the use of 13C acetylene in these gas mixtures. No polycyclic aromatic compounds were detected. Vapor pressures of these compounds under conditions present in Titanʹs atmosphere were calculated. The low molecular weight compounds likely to be present in the atmosphere and aerosols of Titan as a result of photochemical processes are proposed.
  • Keywords
    photochemistry , Titan , Atmosphere composition , organic chemistry , Abundances atmosphere
  • Journal title
    Icarus
  • Serial Year
    2005
  • Journal title
    Icarus
  • Record number

    2373610