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Cites:

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Information Journal Paper

Title

CONVERSION OF METHANE TO HIGHER HYDROCARBONS USING A CORONA DISCHARGE REACTOR

Pages

  215-228

Abstract

 Non-catalytic conversion of METHANE to ethylene and ethane was studied using nonequilibrium positive corona discharge at atmospheric pressure. The total selectivity for C2 hydrocarbons was more than 87% with a yield of 4.8% ethylene. The effect of voltage, temperature, and the ratio of METHANE to oxygen on METHANE conversion and selectivity of products at different levels are investigated. The experimental results indicate that the METHANE conversion increases with increasing the voltage applied to the electrodes. The METHANE conversion up to 300°C increases but above this temperature depend on feed ratio, it may increase or decrease. The highest METHANE conversion and C yield occurs at CH4/O2 = 4/1.In a few experimets smale amounts of COx also was produced.

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  • Cite

    APA: Copy

    KHODA GHOLI, M.A., & SEYED MATIN, N.. (2003). CONVERSION OF METHANE TO HIGHER HYDROCARBONS USING A CORONA DISCHARGE REACTOR. JOURNAL OF SCIENCE (KHARAZMI UNIVERSITY), 3(1-2), 215-228. SID. https://sid.ir/paper/43969/en

    Vancouver: Copy

    KHODA GHOLI M.A., SEYED MATIN N.. CONVERSION OF METHANE TO HIGHER HYDROCARBONS USING A CORONA DISCHARGE REACTOR. JOURNAL OF SCIENCE (KHARAZMI UNIVERSITY)[Internet]. 2003;3(1-2):215-228. Available from: https://sid.ir/paper/43969/en

    IEEE: Copy

    M.A. KHODA GHOLI, and N. SEYED MATIN, “CONVERSION OF METHANE TO HIGHER HYDROCARBONS USING A CORONA DISCHARGE REACTOR,” JOURNAL OF SCIENCE (KHARAZMI UNIVERSITY), vol. 3, no. 1-2, pp. 215–228, 2003, [Online]. Available: https://sid.ir/paper/43969/en

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