Coupling and Reforming of Methane with Carbon Dioxide in a Pulsed Plasma

Coupling and reforming of methane with carbon dioxide were studied at room temperature and 773 K in a pulsed plasma. Methane and carbon dioxide could be converted mainly to ethylene, carbon monoxide, and hydrogen at room temperature. At 773K, the main product was ethane at a low pulse frequency and...

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Published inKAGAKU KOGAKU RONBUNSHU Vol. 26; no. 5; pp. 731 - 733
Main Authors OUYANG, FENG, YAO, SHUILIANG, SUZUKI, EIJI, NAKAYAMA, AKIRA, MIZUNO, AKIRA, OKUMOTO, MAMORU
Format Journal Article
LanguageJapanese
Published The Society of Chemical Engineers, Japan 10.09.2000
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Online AccessGet full text
ISSN0386-216X
1349-9203
DOI10.1252/kakoronbunshu.26.731

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Abstract Coupling and reforming of methane with carbon dioxide were studied at room temperature and 773 K in a pulsed plasma. Methane and carbon dioxide could be converted mainly to ethylene, carbon monoxide, and hydrogen at room temperature. At 773K, the main product was ethane at a low pulse frequency and ethylene at a high pulse frequency. The energy efficiency can be significantly improved by using a high pulse frequency and high temperature.
AbstractList Coupling and reforming of methane with carbon dioxide were studied at room temperature and 773 K in a pulsed plasma. Methane and carbon dioxide could be converted mainly to ethylene, carbon monoxide, and hydrogen at room temperature. At 773K, the main product was ethane at a low pulse frequency and ethylene at a high pulse frequency. The energy efficiency can be significantly improved by using a high pulse frequency and high temperature.
Author SUZUKI, EIJI
OKUMOTO, MAMORU
OUYANG, FENG
NAKAYAMA, AKIRA
YAO, SHUILIANG
MIZUNO, AKIRA
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  fullname: OKUMOTO, MAMORU
  organization: Department of Ecological Engineering, Toyohashi University of Technology
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References Suib, S.L. and R.P. Zerger; “A Direct, Continuous, Low-Power Catalytic Conversion of Methane to Higher Hydrocarbons via Microwave Plasmas, ” J. Catal., 139, 383-391 (1993)
Yao, S.L., F. Ouyang, A. Nakayama, E. Suzuki, M. Okumoto and A. Mizuno; “Influences of Frequency on Methane Selective Oxidation in a Pulsed Plasma, ” J. Inst. Electrostat Jpn., 24, 163-64 (2000)
Liu, C., A. Marafee, R. Mallison and L. Lobban; “Methane Conversion to Higher Hydrocarbons in a Corona Discharge over Metal Oxide Catalysts with OH Groups, ” Appl. Catal. A, 164, 21-23 (1997)
Shepelev, S.S., H.D. Gesser, and N.R. Hunter; “Light Paraffin Oxidative Conversion in a Silent Electric Discharge, ” Plasma Chem. Plasma Proc., 13, 479-488 (1993)
Baulch, D.L., C.J. Cobos, R.A. Cox, P. Frank, G. Hayman, TH. Just, J.A. Kerr, T. Murrells, M.J. Pilling, J. Troe, R.W. Walker, and J. Warnatz; “Summary Table of Evaluated Kinetic Data for Combustion Modeling: Supplement 1, ” Combust. Flame, 98, 59-79 (1994)
Tominaga, H. and K. Yoshida; New Technology of Methanol Production, p.36, Science Forum, Tokyo, Japan (1987)
References_xml – reference: Tominaga, H. and K. Yoshida; New Technology of Methanol Production, p.36, Science Forum, Tokyo, Japan (1987)
– reference: Shepelev, S.S., H.D. Gesser, and N.R. Hunter; “Light Paraffin Oxidative Conversion in a Silent Electric Discharge, ” Plasma Chem. Plasma Proc., 13, 479-488 (1993)
– reference: Liu, C., A. Marafee, R. Mallison and L. Lobban; “Methane Conversion to Higher Hydrocarbons in a Corona Discharge over Metal Oxide Catalysts with OH Groups, ” Appl. Catal. A, 164, 21-23 (1997)
– reference: Suib, S.L. and R.P. Zerger; “A Direct, Continuous, Low-Power Catalytic Conversion of Methane to Higher Hydrocarbons via Microwave Plasmas, ” J. Catal., 139, 383-391 (1993)
– reference: Yao, S.L., F. Ouyang, A. Nakayama, E. Suzuki, M. Okumoto and A. Mizuno; “Influences of Frequency on Methane Selective Oxidation in a Pulsed Plasma, ” J. Inst. Electrostat Jpn., 24, 163-64 (2000)
– reference: Baulch, D.L., C.J. Cobos, R.A. Cox, P. Frank, G. Hayman, TH. Just, J.A. Kerr, T. Murrells, M.J. Pilling, J. Troe, R.W. Walker, and J. Warnatz; “Summary Table of Evaluated Kinetic Data for Combustion Modeling: Supplement 1, ” Combust. Flame, 98, 59-79 (1994)
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Snippet Coupling and reforming of methane with carbon dioxide were studied at room temperature and 773 K in a pulsed plasma. Methane and carbon dioxide could be...
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SubjectTerms carbon dioxide
ethylene production
methane coupling
methane reforming
Title Coupling and Reforming of Methane with Carbon Dioxide in a Pulsed Plasma
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