Tytuł artykułu
Identyfikatory
Warianty tytułu
Reakcje metanu pod działaniem plazmy o różnych parametrach
Języki publikacji
Abstrakty
The methane conversion into C2 hydrocarbons, carbon black, and hydrogen has been studied under non-equilibrium plasma conditions, using dielectric barrier discharges (DBD) and gliding discharges (GD) at low and medium temperatures at atmospheric pressure. It has been found that ethane is the main product of the filamentary DBD action in the mixtures CH4+Ar and the reaction rate depends mainly on the concentration of high-energy components being able to initiate the chemical transformations of methane. Using GD, two processes are observed: the methane conversion into unsaturated hydrocarbons C2 (mainly acetylene) and into carbon black. The energy density of GD and the methane concentration in initial gas mixtures (CH4+H2 and CH4+Ar) are the main parameters influencing the methane conversion rate and the unit energy consumption.
Czasopismo
Rocznik
Tom
Strony
79--89
Opis fizyczny
Bibliogr. 25 poz., Tabl. 2, Rys. 7
Twórcy
autor
- Faculty of Chemistry, Warsaw University of Technology, Noakowskiego 3, 00-664 Warszawa, Poland
autor
- Industrial Chemistry Research Institute, Rydygiera 8, 01-793 Warszawa, Poland
autor
- Faculty of Chemistry, Warsaw University of Technology, Noakowskiego 3, 00-664 Warszawa, Poland
Bibliografia
- [1] K. Schmidt-Szałowski, T. Opalińska, J. Sentek, K. Krawczyk, J. Ruszniak, T. Zieliński and k. Radomyska, J.Adv.Oxid.Technol, 7, 39 (2004).
- [2] K. Onoe, A. Fudjie, T. Ymaguchi and Y. Hatamo, Fuel, 76, 281 (1997).
- [3] S.L. Yao, E. Suzuki and A. Nakayama, Plasma Chem. Plasma Process., 21, 651-663 (2001).
- [4] M. Deminsky, V. Jivotov, B. Potapkin and V. Rusanov, Pure Appl. Chem,, 74, 413-418 (2002).
- [5] L.M. Zhou, B. Xue, U. Kogelschatz and B. Eliasson, Plasma Chem. Plasma Process., 18,375-393 (1998).
- [6] C-J. Liu, B. Xue, B. Eliasson, F. He and G-H. Xu, Plasma Chem. Plasma Process., 21, 301-310 (2001).
- [7] C-J. Liu, B. Eliasson, B. Xue, Y. Li and Y. Wang, React. Kinet. Catal. Lett., 74, 71-77 (2001).
- [8] K.V. Kozlov, R Michel and H.-E. Wagner, Plasmas and Polymers, 5, 129-150 (2000).
- [9] J. Sentek, K. Radomyska and K. Schmidt-Szałowski, Acta Agrophysica, 80, 149-157 (2002).
- [10] Y. Zhang, Y. Li, Y. Wang, C. Liu and B. Eliasson, Fuel Processing Technol., 83, 101-109 (2003).
- [11] M. Okumoto and A. Mizuno, Catalysis Today, 71, 211-217 (2001).
- [12] T. Nozaki, A. Hattori, S. Kado and K. Okazaki, Proc. 16 ISPC, Taormina 2003, 451.
- [13] K. Okazaki and T. Nozaki, Pure Appl. Chem., 74, 447^52 (2002).
- [14] Y. Sekine, K. Urasaki, S. Kado, S. Asai and E. Kikuchi, Proc. 16 ISPC, Taormina 2003, 415.
- [15] S. Yao, A. Nakayama and E. Suzuki, Catal. Today, 71, 218-223 (2001).
- [16] S. Kado, K. Urasaki, Y. Sekine and K. Fujimoto, Fuel, 82, 1377-1385 (2003).
- [17] S. Kado, Y. Sekine, N. Muto, T. Nozaki and K. Okazaki, Proc 16 ISPC, Taormina 2003, 406.
- [18] A. Czernichowski, Oil Gas Sci. Technol.-Rev. IFP, 56(2), 181-198 (2001).
- [19] A. Fridman, S. Nester, L.A. Kennedy, A. Saveliev and O. Mutaf-Yardimci, Progr. Energy Comb. Sci., 25, 211-231 (1999).
- [20] A. Czernichowski, Pure & Appl Chem., 66, 1301-1310 (1994).
- [21] A. Czernichowski, H. Nassar, A. Ranaivosoloarimanana, A. Fridman, M. Simek, K. Musiol, E. Pawelec and L. Dittrichowa, Acta Phys. Polonica A, 89, 595-603 (1996).
- [22] O. Mustaf -Yardimci, A. Fridman, A.V. Saveliev and L.A. Kennedy, Proc. 14 ISPC, Praha 1999, 997-1002.
- [23] B. Eliasson, W. Egli and U. Kogelschatz, Pure Appl. Chem., 66, 1279-1286 (1994).
- [24] A. Holmen, O. Olvsik and O.A. Rokstad, Fuel Processing Technology, 42, 249 (1995).
- [25] T. Opalińska, T. Zieliński and K. Schmidt-Szałowski, Acta Agrophysica, 80, 159-166 (2002).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP1-0061-0043