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Beyond-thermal-equilibrium" conversion of methane to acetylene and hydrogen under pulsed corona discharge 被引量:2

Beyond-thermal-equilibrium" conversion of methane to acetylene and hydrogen under pulsed corona discharge
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摘要 At ambient temperature and pressure, C2H2 and H2 are the dominating products from pure methane conversion under pulsed corona discharge (PCD). When the energy density of 194-1788 kJ/mol was applied, 7%-30% of C2H2 yield and 6%-35% of H2 yield per pass have been obtained. These results are higher than the maximum thermodynamic yield of C2H2 (5.1%) and H2 (3.8%) at 100 kPa and 1100 K, respectively. Thereby, pulsed corona discharge is a very effective tool for “beyond-thermal-equilibrium” conversion of methane to C2H2 and H2 at ambient temperature and pressure. In the PCD energy density range of 339-822 kJ/mol, the carbon distribution of the methane conversion products is found to be: C2H2 86%-89%, C2H2 4%-6%, C2H4 4%-6%, C3 ~2%, C4 ~1%. Through comparison of the product from pure methane, ethane and ethylene conversion at the same discharge conditions, it can be concluded that three pathways may be responsible for the C2H2 formation via CHX radicals produced from the collisions of CH4 molecules with energized electrons in the PCD plasma: (i) C2H2 is formed directly from free radical reactions, (ii) C2H2 is formed through the dehydrogenation of C2H4, which is formed via free radical reactions primarily, and (iii) C2H6 is the primary product and then dehydrogenates to C2H4 (secondary product) and followed by C2H4 dehydrogenation to C2H2. At ambient temperature and pressure, C2H2 and H2 are the dominating products from pure methane conversion under pulsed corona discharge (PCD). When the energy density of 194-1788 kJ/mol was applied, 7%-30% of C2H2 yield and 6%-35% of H2 yield per pass have been obtained. These results are higher than the maximum thermodynamic yield of C2H2 (5.1%) and H2 (3.8%) at 100 kPa and 1100 K, respectively. Thereby, pulsed corona discharge is a very effective tool for 'beyond-thermal-equilibrium' conversion of methane to C2H2 and H2 at ambient temperature and pressure. In the PCD energy density range of 339-822 kJ/mol, the carbon distribution of the methane conversion products is found to be: C2H2 86%-89%, C2H6 4%-6%, C2H4 4%-6%, C3 -2%, C4 -1%. Through comparison of the product from pure methane, ethane and ethylene conversion at the same discharge conditions, it can be concluded that three pathways may be responsible for the C2H2 formation via CHx radicals produced from the collisions of CH4 molecules with
出处 《Science China Chemistry》 SCIE EI CAS 2002年第4期426-434,共9页 中国科学(化学英文版)
基金 This work was supported by the National Natural Science Foundation of China (Grant No. 20106003).
关键词 METHANE CONVERSION pulsed CORONA DISCHARGE plasma ACETYLENE hydrogen. methane conversion pulsed corona discharge plasma acetylene hydrogen
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  • 1Aimin Zhu,Weimin Gong,Xiuling Zhang,Baoan Zhang.Coupling of methane under pulse corona plasma (I)[J].Science in China Series B: Chemistry.2000(2)
  • 2Lien-Te Hsieh,Wen-Jhy Lee,Chuh-Yung Chen,Moo-Been Chang,Huei-Chuau Chang.Converting Methane by Using an RF Plasma Reactor[J].Plasma Chemistry and Plasma Processing.1998(2)

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