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Information Journal Paper

Title

An Equilibrium Thermodynamics Investigation on Influence of Magnetic Field Work on Molar Fraction of Main Products of Methane– Air Reaction

Pages

  171-178

Abstract

 The effect of magnetic fields on Combustion is a well-known fact. In presence of magnetic field, the paramagnetic species change kinetics and equilibrium properties of chemical reaction in Combustion. Because NO and O2 are paramagnetic species and other elements and Methane are diamagnetic, applying a magnetic field on Combustion cause to change its chemical reactions. In this study, the effects of Uniform magnetic field on one stage Methane Combustion reaction has been studied numerically by means of Gibbs free energy minimization. The results suggest that the Uniform magnetic field has significant effects on paramagnetic species and their production is influenced, dramatically. Methane Combustion reaction with Uniform magnetic field leads CO molar fraction to be increased and CO2 concentration to be decrease. The results indicate that the NO pollutant formation also can be decreased while the temperature is increased. Increasing the Uniform magnetic field from 0. 06 to 0. 08 causes molar fraction of this pollutant to decrease by 88. 2%.

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    APA: Copy

    SAEEDI, A., KHADEM, J., & Raznahan, H.. (2019). An Equilibrium Thermodynamics Investigation on Influence of Magnetic Field Work on Molar Fraction of Main Products of Methane– Air Reaction. JOURNAL OF MECHANICAL ENGINEERING, 48(4 (85) ), 171-178. SID. https://sid.ir/paper/269909/en

    Vancouver: Copy

    SAEEDI A., KHADEM J., Raznahan H.. An Equilibrium Thermodynamics Investigation on Influence of Magnetic Field Work on Molar Fraction of Main Products of Methane– Air Reaction. JOURNAL OF MECHANICAL ENGINEERING[Internet]. 2019;48(4 (85) ):171-178. Available from: https://sid.ir/paper/269909/en

    IEEE: Copy

    A. SAEEDI, J. KHADEM, and H. Raznahan, “An Equilibrium Thermodynamics Investigation on Influence of Magnetic Field Work on Molar Fraction of Main Products of Methane– Air Reaction,” JOURNAL OF MECHANICAL ENGINEERING, vol. 48, no. 4 (85) , pp. 171–178, 2019, [Online]. Available: https://sid.ir/paper/269909/en

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