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In this paper new multi-temperature models for rate coefficients of non-equilibrium chemical reactions in mixtures containing CO2 molecules are derived on the basis of the kinetic theory. The models are obtained by averaging of state-dependent reaction rate coefficients, found previously, over multi-temperature vibrational distributions. Five-temperature, three-temperature and two-temperature non-equilibrium distributions are considered and comparison of reaction rate coefficients derived using these distributions as well as the thermal equilibrium one-temperature model is presented. The proposed rate coefficients are used in the governing equations for vibrational and chemical relaxation in the five-component mixture CO2/CO/O2/C/O. The solution of these equations is obtained in the five-temperature, three-temperature, two-temperature and one-temperature approaches. Finally, the influence of chemical reaction models on macroscopic mixture parameters is discussed in the paper.
Язык оригиналаанглийский
Номер статьи110718
Число страниц9
ЖурналChemical Physics
Том533
Дата раннего онлайн-доступа21 фев 2020
DOI
СостояниеОпубликовано - 1 мая 2020

    Области исследований

  • Thermochemical non-equilibrium, Chemical reactions, Carbon dioxide

    Предметные области Scopus

  • Физика и астрономия (все)
  • Физическая и теоретическая химия

ID: 51826022