Conversion of natural gas to C2 hydrocarbons via cold plasma technology

被引:25
|
作者
Lue, Jing [1 ]
Li, Zhenhua [1 ]
机构
[1] Tianjin Univ, Sch Chem Engn & Technol, Minist Educ, Key Lab Green Chem Technol, Tianjin 300072, Peoples R China
来源
JOURNAL OF NATURAL GAS CHEMISTRY | 2010年 / 19卷 / 04期
关键词
methane; C-2; hydrocarbons; plasma; METHANE CONVERSION; REACTOR;
D O I
10.1016/S1003-9953(09)60082-7
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
The plasma technology served as a tool in unconventional catalysis has been used in natural gas conversion, because the traditional catalytic methane oxidative coupling reaction must be performed at high temperature on account of the stability of methane molecule. The focus of this research is to develop a process of converting methane to C-2 hydrocarbons with non-equilibrium plasma technology at room temperature and atmospheric pressure. It was found that methane conversion increased and the selectivity of C-2 hydrocarbons decreased with the voltage. The optimum input voltage range was 40-80 V corresponding to high yield of C-2 hydrocarbons. Methane conversion decreased and the selectivity of C-2 hydrocarbons increased with the inlet flow rate of methane. The proper methane flow rate was 20-40 ml/min (corresponding residence time 10-20 s). The experimental results show that methane conversion was 47% and the selectivity of C-2 hydrocarbons was 40% under the proper condition using atmospheric DBD cold plasma technology. It was found that the breakdown voltage of methane V-B was determined by the type of electrode and the discharge gap width in this glow discharge reactor. The breakdown voltage of methane V-B,(min) derived from the Paschen law equation was established.
引用
收藏
页码:375 / 379
页数:5
相关论文
共 50 条
  • [41] Oxidative conversion of methane/natural gas into higher hydrocarbons
    Choudhary, VR
    Uphade, BS
    CATALYSIS SURVEYS FROM ASIA, 2004, 8 (01) : 15 - 25
  • [42] Direct conversion of natural gas to higher hydrocarbons:A review
    Sachchit Majhi
    Pravakar Mohanty
    Hui Wang
    KKPant
    Journal of Energy Chemistry, 2013, 22 (04) : 543 - 554
  • [43] Direct conversion of natural gas to higher hydrocarbons:A review
    Sachchit Majhi
    Pravakar Mohanty
    Hui Wang
    K.K.Pant
    Journal of Energy Chemistry , 2013, (04) : 543 - 554
  • [44] Direct conversion of natural gas to higher hydrocarbons: A review
    Majhi, Sachchit
    Mohanty, Pravakar
    Wang, Hui
    Pant, K. K.
    JOURNAL OF ENERGY CHEMISTRY, 2013, 22 (04) : 543 - 554
  • [45] Oxidative Conversion of Methane/Natural Gas into Higher Hydrocarbons
    Vasant R. Choudhary
    Balu S. Uphade
    Catalysis Surveys from Asia, 2004, 8 : 15 - 25
  • [46] C1∼C2 hydrocarbons generation and mutual conversion behavior in coal pyrolysis process
    Xiong, Xiaohe
    Miao, Yang
    Lu, Xuchao
    Tan, Houzhang
    Rahman, Zia Ur
    Li, Peng
    FUEL, 2022, 308
  • [47] Conversion of Gaseous Hydrocarbons in Cold Electron-Beam Plasma
    R. G. Sharafutdinov
    V. O. Konstantinov
    V. I. Fedoseev
    V. G. Shchukin
    S. A. Gorodetskii
    Petroleum Chemistry, 2019, 59 : S45 - S52
  • [48] Conversion of Gaseous Hydrocarbons in Cold Electron-Beam Plasma
    Sharafutdinov, R. G.
    Konstantinov, V. O.
    Fedoseev, V. I.
    Shchukin, V. G.
    Gorodetskii, S. A.
    PETROLEUM CHEMISTRY, 2019, 59 (SUPPL 1) : S45 - S52
  • [49] Upgrading of C1 and C2 hydrocarbons
    Villa, PL
    Rapagna, S
    CATALYTIC ACTIVATION AND FUNCTIONALISATION OF LIGHT ALKANES: ADVANCES AND CHALLENGES, 1998, 44 : 3 - 34
  • [50] Efficient reduction of CO2 to C2 hydrocarbons by tandem nonthermal plasma and photocatalysis
    Li, He
    Xia, Mengyang
    Wang, Xiaxin
    Chong, Ben
    Ou, Honghui
    Lin, Bo
    Yang, Guidong
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2024, 342