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Information Journal Paper

Title

NON-CATALYTIC OXIDATIVE COUPLING OF METHANE KINETIC AND EFFECT OF STEAM

Pages

  189-201

Abstract

 The OXIDATIVE COUPLING OF METHANE (OCM) to higher hydrocarbons has been investigated in the absence of catalyst. The reaction was carried out in quartz tubalar reaction with volume of 16.3 ml, at atmospheric pressure and at 750 to 950°C. The total flow rate was 90 to 130 µ/min and the dilution ratio was 0.2 to 0.75. In the same experiments steam was used as a carrier gas in place of helium to study its effect on the reaction. At 850°C, the total flow rate 100 µ/min, methane to oxygen ratio equal 2 and dilution ratio 0.5, when helium and the steam were used as a carrier gas, the Cz yield was 8.4 and 9.5 respectively. The power law kinetic models (relations) as a function of methane and oxygen partial pressures was found for the rate of disappearance of methane and the rates of formations of ethane, ethylene and carbon oxides.

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  • Cite

    APA: Copy

    KHAKDAMAN, H.R., SEYED MATIN, N., & KHODAFARIN, R.. (2002). NON-CATALYTIC OXIDATIVE COUPLING OF METHANE KINETIC AND EFFECT OF STEAM. JOURNAL OF SCHOOL OF ENGINEERING, 14(2), 189-201. SID. https://sid.ir/paper/22616/en

    Vancouver: Copy

    KHAKDAMAN H.R., SEYED MATIN N., KHODAFARIN R.. NON-CATALYTIC OXIDATIVE COUPLING OF METHANE KINETIC AND EFFECT OF STEAM. JOURNAL OF SCHOOL OF ENGINEERING[Internet]. 2002;14(2):189-201. Available from: https://sid.ir/paper/22616/en

    IEEE: Copy

    H.R. KHAKDAMAN, N. SEYED MATIN, and R. KHODAFARIN, “NON-CATALYTIC OXIDATIVE COUPLING OF METHANE KINETIC AND EFFECT OF STEAM,” JOURNAL OF SCHOOL OF ENGINEERING, vol. 14, no. 2, pp. 189–201, 2002, [Online]. Available: https://sid.ir/paper/22616/en

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