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Bis(3-methyl-1-propene) ether and 3-(3-methyl-1-propene)-3-methyl-1,2-epoxypropane ether synthesis during the epoxidation of 1-butene-3-ol with hydrogen peroxide over the TS-2 catalyst

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Języki publikacji
EN
Abstrakty
EN
The influence of technological parameters on the transformation of 1-butene-3-ol (1B3O) to bis(3-methyl- 1-propene) ether (2x1B3O ether) and 3-(3-methyl-1-propene)-3-methyl-1,2-epoxypropane ether (1B3Ox1,2EB3O ether) over the TS-2 catalyst was presented. The reaction was performed in a glass reactor at atmospheric pressure and in methanol medium (protic solvent). The optimum conditions of 2x1B3O ether and 1B3Ox1,2EB3O ether obtaining were established by the mathematical method of experiments design (rotatable-uniform design) and after the analyses of the layer drawings.
Rocznik
Strony
66--71
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
  • West Pomeranian University of Technology, Szczecin, Institute of Organic Chemical Technology, ul. Pułaskiego 10, 70-322 Szczecin, Poland, Agnieszka.Wroblewska@zut.edu.pl
Bibliografia
  • 1. de Lucas, A., Rodriguez, L. & Sanchez, P. (1999). Synthesis of TS-2 in the system SiO2-TiO2-H2O2-TBAOH. Influence of the synthesis variables. Appl. Catal. A: General 180, 375 – 383. DOI: 10.1016/S0926-860X(98)00382-2.
  • 2. Reddy, J.S., Kumar, R. & Ratnasamy, P. (1990). Titanium silicalite-2: Synthesis, characterization and catalytic properties. Appl. Catal. A: General 58, L1 – L4. DOI: 10.1016/S0166-9834(00)82273-3.
  • 3. Kokotailo, G.T., Chu, P., Lawton, S.L. & Meier, W.M. (1978). Synthesis and structure of synthetic zeolite ZSM-11. Nature 275, 119 – 120.
  • 4. Wróblewska, A., Wajzberg, J. & Milchert, E. (2007). Epoxidation of 1-butene-3-ol with hydrogen peroxide under autogenic and atmospheric pressure. J. Adv. Oxid. Technol. 10/2, 316 – 324.
  • 5. Wróblewska, A., Wajzberg, J., Fajdek, A. & Milchert, E. (2009). Influence of technological parameters on the epoxidation of 1-butene-3-ol over titanium silicalite TS-2 catalyst. J. Chem. Technol. Biotechnol. 84, 1344 – 1349.
  • 6. Wróblewska, A. & Wajzberg J. (2007). Epoxidation of 1-butene-3-ol under atmospheric pressure over the Ti-Beta catalyst. Pol. J. Chem. Technol. 2/9, 120 – 123.
  • 7. Smith, A. C. & Danneman, J. H. (1993). Diallyl ether high solids alkyd. USA Pat., Appl. No.: 5198528.
  • 8. Kosono, M. (2006). Curable unsaturated resin composition. USA Pat., Appl. No.: 6992140.
  • 9. Holmberg, K. (1987). High Solids Alkyd Resins. Marcel Dekker INC, New York.
  • 10. Stoye, D., Freitag, W. (1996). Resins for Coatings: chemistry, properties, and application. Hanser/Gardner, New York.
  • 11. Tuel, A. & Taarit, Y.B. (1994). Synthesis and characterization of titanium silicalite TS-1 prepared using phosphorium ions. Zeolites 14, 272 – 281. DOI: 10.1016/0144-2449(94)90096-5.
  • 12. Ramaswamy, A.V., Sivasanker, S. & Ratnasamy P. (1994). Selective oxidation reactions over metallosilicate molecular sieves: A comparison of titanium and vanadium silicates with MEL structure. Micropor. Mat. 2, 451 – 458. DOI: 10.1016/0927-6513(94)00018-2.
  • 13. Uguina, M.A., Serrano, D.P., Ovejero, G., Van Grieken, R. & Camacho, M. (1997) Zeolites 18, 368 – 378. DOI: 10.1016/S0144-2449(97)00029-8.
  • 14. Brill, W.F. (1963). The origin of epoxides in the liquid phase oxidation of olefins with molecular oxygen. J. Am. Chem. Soc. 85, 141 – 143.
  • 15. Montgomery, D.C. (1976). Design and analysis of experiments. Wiley, New York.
  • 16. Nalimov, W.W. & Czernova, V.A., (1967). Statistical methods of experiments planning. Scientific-Technical Publishers, Warsaw (in Polish).
  • 17. Achnazarova, S.Ł. & Kafarov, V.V. (1982). Optimization of experiments in chemistry and chemical technology. Scientific-Technical Publishers, Warsaw (in Polish).
  • 18. Polański, Z. (1984). Experiments planning in technique. Scientific-Technical Publishers, Warsaw (in Polish).
  • 19. Zieliński, R. (1992).Statistical tables. Scientific Publishers, Warsaw (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS3-0016-0068
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