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Catalytic transformations of gaseous products of plasma treatment of solid wastes and hydrocarbon raw materials

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Abstract

The layout of a technological process including catalytic steam and carbon dioxide reforming and Fischer-Tropsch hydrocarbon synthesis is presented. The inclusion of catalytic stages in plasma technologies provides the possibility to intensify conversion processes, enhance their depth, and obtain various gaseous and solid products.

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References

  1. Tang, H.S., Proc. Solid & Hazardous Waste Management Conf., Singapore, February 26–27, 2003, p. 1.

  2. Lilijelind, P., Unsworth, J., Maaskant, O., and Marklund, S., Chemosphere, 2001, vol. 42, p. 615.

    Article  Google Scholar 

  3. Maaskant, O.L. and Miggelbrink, M., Proc. Conf. on NOx/NO2 Control Techniques, Paris, March 21–22, 2001, p. 1.

  4. Maaskant, O.L., Presentation in Vrije Universiteit, Brussel, November 14, 2000, p. 1.

  5. Woldhuis, A.F., Unswoth, J.F., and Maaskant, O.L., ADEME Seminar on Dioxins and POPs, Paris, March 10–11, 2004, p. 1.

  6. Maaskant, O.L., Proc. 3 Int. Symp. on Incineration and Flue Gas Treatment Technologies, Brussels, July 2–4, 2001, p. 1.

  7. RF Patent on Application 2009105472/007342, 2010, F23G 5/027.

  8. RF Patent no. 2345948, 2005, V01J 3/02.

  9. RF Patent no. 2342318, 2008, B01J 8/04.

  10. RF Patent no. 2354607, 2009, V01J 3/02.

  11. RF Patent no. 2354608, 2009, V01J 3/02.

  12. RF Patent no. 921621, 1982, B01J 8/02.

  13. RF Patent no. 1431825 A1, 1988, B01J 8/02.

  14. RF Patent no. 2350386 S1, 2009, V01J 3/02.

  15. Khasin, A.A., Sipatrov, A.G., and Parmon, V.N., Membrany.

  16. Tarakanov, D.A., Sineva, L.V., and Krylova, A.Yu., Katal. Prom-sti, 2006, no. 3, p. 18.

  17. Lapidus, A.L., Budtsov, V.S., Eliseev, O.L., and Tsapkina, M.V., Khim. Tverd. Topliva, 2008, no. 1, p. 19.

  18. Lapidus, A.L., Eliseev, O.L., Volkov, A.S., et al., Ibid., 2007, no. 3, p. 16.

  19. Lapidus, A.L., Budtsov, V.S., Eliseev, O.L., et al., Ibid., 2008, no. 6, p. 35.

  20. Lapidus, A.L., Krylova, A.Yu., and Potapova, S.N., Ibid., 2008, no. 2, p. 29.

  21. Khasin, A.A., Gazokhimiya, 2008, nos. 11–12, p. 38.

  22. Jager, B., Dry, M.E., Shingles, T., and Steynberg, A.P., Catal. Lett, 1990, vol. 7, p. 293.

    Article  CAS  Google Scholar 

  23. Sie, S.T., Chem. Eng., 1998, vol. 14, p. 109.

    CAS  Google Scholar 

  24. Iglesia, E., Soleol, S.L., Baumgarther, J.E., and Reyes, S.C., Ibid., 1995, vol. 128, p. 108.

    Google Scholar 

  25. Iglesia, E., Appl. Catal. A.: General, 1997, vol. 161, p. 59.

    Article  CAS  Google Scholar 

  26. Galarraga, C., Peluso, E., and de Lasa, H., Stud. Surf. Sci. Catal., 2000, vol. 130A, p. 395.

    Article  CAS  Google Scholar 

  27. Galarraga, C., Peluso, E., and de Lasa, H., Chem. Eng. J., 2001, vol. 82, p. 13.

    Article  CAS  Google Scholar 

  28. RF Patent no. 2381062 S2, 2010, B01J 19/24.

  29. Ramachadran, P.A. and Chaudhari, R.V., Three-Phase Catalytic Reactors, New York: Gordon and Breach, 1992.

    Google Scholar 

  30. Chaudhary, R.V. and Ramachadran, P.A., AIChE J., 1980, vol. 26, no. 2, p. 177.

    Article  Google Scholar 

  31. Kirillov, V.A., Reaktory s uchastiem gaza, zhidkosti i tverdogo katalizatora (Reactions Involving Gases, Liquids, and Solid Catalysts), Novosibirsk: Institut kataliza SO RAN, 1997.

    Google Scholar 

  32. Stefoglo, E.F., Gazozhidkostnye reaktory s suspenddirovannym katalizatorom (Fluidized Catalyst Bed Gas? Liquid Reactors), Novosibirsk: Nauka, 1990.

    Google Scholar 

  33. RF Patent no. 2156650, 2000, B01J 8/20

  34. Krylov, O.V., Geterogennyi kataliz (Heterogeneous Catalysis), Moscow: Akademkniga, 2004.

    Google Scholar 

  35. Lebedev, N.N., Khimiya i tekhnologiya osnovnogo organicheskogo i neftekhimicheskogo sinteza (Chemistry and Technology of Basic Organic and Petrochemical Synthesis), Moscow: Khimiya, 1981, p. 529.

    Google Scholar 

  36. RF Patent no. 2169755 S1, 2001, C10G 15/12.

  37. RF Patent no. 2202593 S2, 2003, C10G15/12.

  38. RF Patent no. 2190659, 2002, C10G 15/12.

  39. RF Patent no. 2158747, 2000, C10G 15/12.

  40. RF Patent no. 2078117, 1997, C10G 15/12.

  41. RF Patent no. 2026334, 1995, C10G 15/12.

  42. Krapivina, S.A., Plazmokhimicheskie tekhnologicheskie protsessy (Plasmochemical Technological Processes), Leningrad, Leningrad: Khimiya, 1981, p. 182.

    Google Scholar 

  43. RF Patent no. 2131906, 1999, C10G 15/12.

  44. RF Patent no. 2129584, 1999, C10G 15/12.

  45. RF Patent no. 2319730, 2008, C10G 15/12.

  46. RF Patent no. 2343181, 2009, C10G 15/12.

  47. Kashapov, N.F., Nefedev, E.S., Timerkaev, B.A., and Fakhrutdinov, I.M., Materialy 36-i mezhdunarodnoi (Zvenigorodskoi) konf. po fizike plazmy i UTS [Proc. 36 Int. (Zvenigorod) Conf. on Plasma Physics and CTS], 2009, p. 1.

  48. RF Patent no. 2009112, 1994, C10G 15/12.

  49. RF Patent no. 2201407, 2003, C10G 15/12.

  50. RF Patent no. 2213766, 2003, C10G 15/12.

  51. Xiaojun, He, Tengkcai, Ma, Jieshan Qin, et al., Plasma Sources Sci. Technol., 2004, vol. 13, p. 446.

    Article  CAS  Google Scholar 

  52. Xiaojun, He, Mingdong, Zheng, Jieshan, Qin, et al., Ibid., 2006, vol. 15, p. 246.

    Article  Google Scholar 

  53. Weiren Bao, Jin-Cao Zhang, Fan Li, et al., Energy & Fuel, 2007, vol. 21, p. 2082.

    Article  CAS  Google Scholar 

  54. Chunjin, Ji, Yingzi Zhang, and Tengcai, Ma., Plasma Sci. Technol., 2003, vol. 5, no. 3, p. 1987.

    Article  Google Scholar 

  55. Longwei, Chen, Yuedong, Meng, Jie, Shen, et al., J. Physics D: Applied Physics, 2009, vol. 42, Art. no. 055505.

  56. Jieshan, Qie, Xiaojun, Xe, Tianjun, Sun, et al., Fuel Processing Technol., 2004, vol. 85, p. 969.

    Article  Google Scholar 

  57. Matveev, I.B., Messerle, V.E., and Ustimenko, A.B., IEEE Trans. Plasma Sci., 2008, vol. 36, no. 6, p. 2947.

    Article  CAS  Google Scholar 

  58. Predtechenskii, M.R. and Tukhto, O.M., Plenary Reports from 4th Int. Symp. on Theoretical and Appl. Plasma Chemistry, Ivanovo, Russia, May 13–18, 2005, p. 119.

  59. Kalinenko, R.A., Kuznetsov, A.P., Levitsky, A.A., et al., Plasma Chemistry and Plasma Processing, 1993, vol. 13, no. 1, p. 141.

    Article  CAS  Google Scholar 

  60. Galvita, V., Messerle, V.E., and Ustimenko, A.B., Int. J. Hydrogen Energy, 2007, vol. 32, p. 3899.

    Article  CAS  Google Scholar 

  61. RF Patent no. 2144558, 2000, C10G 15/12.

  62. RF Patent no. 2218378, 2003, C10G 15/12.

  63. RF Patent no. 2315802, 2008, C10G 15/12.

  64. Khudyakov, G.N., et al., Abstracts of Papers, II Vsesoyuznyi simpozium po plazmokhimii (II Russian Symp. On Plasmachemistry), Riga: Zinatne, 1975, p. 243.

    Google Scholar 

  65. RF Patent no. 2149885, 2000, C10G 15/12.

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Correspondence to A. V. Artemov.

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Original Russian Text © A.V. Artemov, V.A. Bul’ba, S.A. Voshchinin, Yu.A. Krutyakov, A.A. Kudrinskii, I.I. Ostryi, A.V. Pereslavtsev, 2010, published in Rossiiskii Khimicheskii Zhurnal, 2010, Vol. 54, No. 6, pp. 9–18.

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Artemov, A.V., Bul’ba, V.A., Voshchinin, S.A. et al. Catalytic transformations of gaseous products of plasma treatment of solid wastes and hydrocarbon raw materials. Russ J Gen Chem 82, 791–800 (2012). https://doi.org/10.1134/S1070363212040342

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  • DOI: https://doi.org/10.1134/S1070363212040342

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