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Synthesis and characteristics of titanium silicalite TS-1, Ti-Beta and Ti-MWW catalysts Cover

Synthesis and characteristics of titanium silicalite TS-1, Ti-Beta and Ti-MWW catalysts

Open Access
|Apr 2009

References

  1. Sheldon, R. (1996). Selective catalytic synthesis of fine chemicals: opportunities and trends.107(1 - 3), 75 - 83. DOI: 10.1016/1381-1169(95)00229-4.
  2. Sheldon, R., Arends, I. & Dijksman, A. (2000). New developments in catalytic alcohol oxidations for fine chemicals synthesis.57(1 - 3), 157 - 166. DOI: 10,1016/S0920-5861(99)00317-X.
  3. Blaser, H. & Studer, M. (1999). The role of catalysis for the clean production of fine chemicals.189, 191 - 204. PII: S0926-860X(99)00276-8.
  4. Mills, P. & Chaudhari, R. (1997). Multiphase catalytic reactor engineering and design for pharmaceuticals.37(4), 367 - 404. DOI: 10,1016/ S0920-5861(97)00028-X.
  5. Blaser, H. (2000). Heterogeneous catalysis for fine chemicals production.60(1 - 3), 161 - 165. DOI: 10,1016/S0920-5861(00)00332-1.
  6. Millini, R., Massaro, E., Perego, G. & Bellussi, G. (1992). Framework composition of titanium silicalite 1.137(2), 497 - 503.
  7. Wróblewska, A. & Milchert, E. (2002). Synthesis of titanium-silicalite catalysts.46(3 - 4), 151 - 175.
  8. Khouw, C., Dartt, C., Labinger, J. & Davis, M. (1994). Studies on the catalytic oxidation of alkanes and alkenes by titanium silicalites.149, 195 - 205.
  9. Notari, B. (1987). Innovation in Zeolite Material Scienece.37, 413.
  10. Hauptman, S. (1985).Leibziger: VEB deutscher Verlag für Grundstoffindustrie.
  11. Koch, M., Wark, M. & Schulz-Ekloff, G. (1999).Germany: University of Bremen.
  12. Kooyman, P. (1993).Delft: Technische Universiteit.
  13. Notari, B. (1988). Innovation In Zeolite Materials Science. 37, 413.
  14. Clerici, M. (1991). Oxidation of saturated hydrocarbons with hydrogen peroxide, catalyzed by titanium silicalite.68(1 - 2), 249 - 261.
  15. Tatsumi, T., Nakamura, M., Negeshi, S. & Tominaga, H (1990). Shape-selective oxidation of alkenes with hydrogen peroxide catalyzed by titanosilicalite.476 - 477.
  16. Huybrechts, D., Bruyker, L. & Jacobs, P. (1990). Oxyfunctionalization of alkenes with hydrogen peroxide on titanium silicalite.345, 240.
  17. Romano, U., Esposito, A., Maspero, F., Neri, F. & Clerici, M. (1990). New Developments In Selective Oxidation.55, 33.
  18. Clerici, M. & Ingllina, P. (1993). Epoxidation of lower olefins with hydrogen peroxide and titanium silicalite.140, 71.
  19. Goutier, S. & Tuel, A. (1994). Oxidation of aniline over TS-1, the titanium substituted silicalite -1.118(2), 173 - 186.
  20. Van der Waal J. (1998). Prof. Thesis Univ. Delft, The Niderlandy.
  21. Van der Waal, J., Rigutto, M. & Van Bekkum, H. (1997). Zeolite titanium beta as a selective catalyst in the epoxidation of bulky alkenes.167(2), 331 - 342. DOI: 10.1016/S0926-860X(97)00323-2.
  22. Corey, E. & Schmidt, G. (1979). Useful procedures for the oxidation of alcohols involving pyridinium dichromate in aprotic media.5, 399 - 402.
  23. Wu, P., Tatsumi, T., Komatsu, T. & Yashima, T. (2001). A novel titano-silicalite with MWW structure: I. Hydrothermal synthesis, elimination of extraframework titanium, and characterizations.105(15), 2897 - 2905. DOI: 10.1021/jp002816S.
  24. Degnan, T. (2003). The implications of the fundamentals of shape selectivity for the development of catalysts for the petroleum and petrochemical industries.216(1-2), 32 - 46. DOI: 10.1016/S0021-9517(02)00105-7.
  25. Fan, W., Wu, P., Namba, S. & Tatsumi, T. (2006). Synthesis and catalytic properties of a new titanosilicate molecular sieve with the structure analogous to MWW-type lamellar precursor.243(1), 183 - 191. DOI: 10.1016/jat.2006.07.003.
  26. Wu, P., Tatsumi, T., Komatu, T. & Yashima, T. (2002). A novel titanosilicate with MWW structure: II. Catalytic properties In The selective oxidation of alkenes.202(2), 245 - 255. DOI: 10.1006/jat.2001.3278.
  27. Wu, P. & Tatsumi, T. (2002). Preparation of B-free Ti-MWW through reversible structural conversion.1026 - 1027. DOI: 10.1039/b201170k.
  28. Wu, P., Liu, Y., He, M. & Tatsumi, T. (2004). A novel titanosilicalite with MWW structure. Catalytic properties In selective epoxidation of diallyl ether with hydrogen peroxide.228(1), 183 - 191. DOI: 10.1016/jat.2004.09.001.
  29. Song, F., Liu, Y., Wu, H. & He, M. (2006). A novel titanosilicate with MWW structure: Highly effective liquidphase ammoximation of cycloheksanone.237(2), 359 - 367. DOI: 10.1016/j.jcat.2005.11.018.
  30. Vayssilov, G. (1997). Structural and physicochemical features of titanium siliclites.39, 209.
  31. Saxton, R. (1999). Crystalline microporous titanium silicalites.9(1 - 2), 43 - 57. DOI: 10.1023/A:1019102320274.
  32. Camblor, M., Corma, A., Martinez, A. & Perez-Pariente, J. (1992). Synthesis of titaniumsilicoaluminate isomorphous to zeolite beta and its application as a catalyst for the selective oxidation of large organic molecules.8, 589 - 590.
  33. Wu, P., Tatsumi, T., Komatsu, T. & Yashima, T. (2001). A novel titanosilicate with MWW structure. I. Hydrothermal synthesis, elimination of extraframework titanium, and characterizations.105(15), 2897 - 2905. DOI: 10.1021/jp002816s.
DOI: https://doi.org/10.2478/v10026-009-0015-0 | Journal eISSN: 3072-0389 (formerly 1899-4741) | Journal ISSN: 1509-8117
Language: English
Page range: 64 - 71
Published on: Apr 6, 2009
Published by: West Pomeranian University of Technology, Szczecin
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2009 Agnieszka Wróblewska, Anna Fajdek, Eugeniusz Milchert, published by West Pomeranian University of Technology, Szczecin
This work is licensed under the Creative Commons License.