]*>","")" /> 电场增强低温等离子催化合成C_2烃

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电场增强低温等离子催化合成C_2烃

王保伟,许根慧,孙洪伟   

  1. 天津大学化工学院一碳化工国家重点实验室!天津300072,天津大学化工学院一碳化工国家重点实验室!天津300072,石油化工科学研究院!北京100083
  • 出版日期:2001-01-25 发布日期:2001-01-25

CONVERSION OF METHANE TO C_2 HYDROCARBONS THROUGH ELECTRIC FIELD ENHANCED LOW TEMPERATURE PLASMA CATALYSIS

WANG Baowei and Xu Genhui ( State Key Laboratory of C 1 Chemical Technology,School of Chemical Engineering, Tianjin University, Tianjin 300072,China)SUN Hongwei (Research Institute of Petroleum Processing, Beijing 100083,China)   

  • Online:2001-01-25 Published:2001-01-25

Abstract: Natural gas is not only playing an increasing important role in energy and chemicals supplies in 21st century but is also the second most important component of the greenhouse gases. Clean and direct conversion of methane to C 2 hydrocarbons (ethane, ethene and acetylene) through AC and DC plasma catalysis enhanced by electric field was studied at low temperature ranging from 50?℃ to 100?℃, atmospheric pressure and low power conditions. The influence of form of the electrode, distance between the electrodes, voltage, diameter of reactor, flow of inlet methane, N 2/CH 4(mole) and 20 catalysts were tested under low temperature plasma. The results indicated that best form of the electrode was plate; the better distance between the electrode was 5mm; the appropriate voltage was 38V(AC);the apparent diameter of reactor was 17mm, the likely flow range flux of inlet methane was 60—80?ml·min -1 , the suitable ratio of N 2/CH 4 (mole) was 0.5—1.0.The yield of C 2 hydrocarbons was the highest on V 2O 5,ZnO(5%)/ZSM-5-38 catalyst, the yield of ethene was the highest on La 0.8 Sr 0.2 CrO 3,ZnO catalyst. The results are better than those obtained through conventional reaction of oxidation coupling of methane.

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