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Methane Conversion Using Dielectric Barrier Discharge: Comparison with Thermal Process and Catalyst Effects 被引量:4

Methane Conversion Using Dielectric Barrier Discharge: Comparison with Thermal Process and Catalyst Effects
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摘要 The direct conversion of methane using a dielectric barrier discharge has been experimentally studied. Experiments with different values of flow rates and discharge voltages have been performed to investigate the effects on the conversion and reaction products both qualitatively and quantitatively. Experimental results indicate that the maximum conversion of methane has been 80% at an input flow rate of 5 ml/min and a discharge voltage of 4 kV. Experimental results also show that the optimum condition has occurred at a high discharge voltage and higher input flow rate. In terms of product distribution, a higher flow rate or shorter residence time can increase the selectivity for higher hydrocarbons. No hydrocarbon product was detected using the thermal method, except hydrogen and carbon. Increasing selectivity for ethane was found when Pt and Ru catalysts presented in the plasma reaction. Hydrogenation of acetylene in the catalyst surface could have been the reason for this phenomenon as the selectivity for acetylene in the products was decreasing. The direct conversion of methane using a dielectric barrier discharge has been experimentally studied. Experiments with different values of flow rates and discharge voltages have been performed to investigate the effects on the conversion and reaction products both qualitatively and quantitatively. Experimental results indicate that the maximum conversion of methane has been 80% at an input flow rate of 5 ml/min and a discharge voltage of 4 kV. Experimental results also show that the optimum condition has occurred at a high discharge voltage and higher input flow rate. In terms of product distribution, a higher flow rate or shorter residence time can increase the selectivity for higher hydrocarbons. No hydrocarbon product was detected using the thermal method, except hydrogen and carbon. Increasing selectivity for ethane was found when Pt and Ru catalysts presented in the plasma reaction. Hydrogenation of acetylene in the catalyst surface could have been the reason for this phenomenon as the selectivity for acetylene in the products was decreasing.
出处 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2006年第2期87-92,共6页 天然气化学杂志(英文版)
关键词 PLASMA dielectric barrier discharge thermal process methane conversion CATALYST plasma dielectric barrier discharge thermal process methane conversion catalyst
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参考文献4

  • 1Hyung Keun Song,Hwaung Lee,Jae-Wook Choi,Byung-ki Na.Effect of Electrical Pulse Forms on the CO2 Reforming of Methane Using Atmospheric Dielectric Barrier Discharge[J].Plasma Chemistry and Plasma Processing.2004(1)
  • 2Seung-Soo Kim,Hwaung Lee,Byung-Ki Na,Hyung Keun Song.Reaction pathways of methane conversion in dielectric-barrier discharge[J].Korean Journal of Chemical Engineering.2003(5)
  • 3Bae-Bok Hwang,Yeong-Koo Yeo,Byung-Ki Na.Conversion of CH4 and CO2 to syngas and higher hydrocarbons using dielectric barrier discharge[J].Korean Journal of Chemical Engineering.2003(4)
  • 4L. M. Zhou,B. Xue,U. Kogelschatz,B. Eliasson.Partial Oxidation of Methane to Methanol with Oxygen or Air in a Nonequilibrium Discharge Plasma[J].Plasma Chemistry and Plasma Processing.1998(3)

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