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Abstrakty
Hydrogen chemisorption at 20–200°C was studied volumetrically on Ru/gamma-Al2O3 catalysts (4.6 and 10.8% of Ru) prepared from ruthenium chloride. The structure of the catalysts was determined by ICP-AES, BET, TEM and XRD methods. Large amount of Cl– was retained on the catalysts after H2 reduction at 500°C. Ruthenium dispersion determined by the hydrogen chemisorption technique was found to be inaccurate due to the contamination of the ruthenium surface – during preparation of the catalysts – by chlorine from precursor and/or aluminum ions from the support. For the Ru/-Al2O3 catalystswith high chlorine content, the mean particle sizes estimated from irreversible H2 chemisorption at 100°C, were much greater than that obtained by TEM and XRD. The difference was much smaller for the catalysts subjected to washing procedure removing chlorine ions.
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Wydawca
Czasopismo
Rocznik
Tom
Strony
69--77
Opis fizyczny
Bibliogr. 25 poz., rys.
Twórcy
autor
- Institute of Low Temperature and Structure Research, Polish Academy of Sciences, P.O. Box 1410, 50-950 Wrocław, Poland
Bibliografia
- 1. Dalla Berta R.A., J. Catal., 34, 57 (1974).
- 2. Taylor K.C., J. Catal., 38, 299 (1975).
- 3. Kubicka H., React. Kinet. Catal. Lett., 5, 223 (1976).
- 4. Goodwin J.G., J. Catal., 68, 227 (1981).
- 5. Sun Y.-K. and Weinberg W.H., Surf. Sci., 214, 246 (1989).
- 6. Don J.A., Pijpers A.P. and Scholten J. J.F., J. Catal., 80, 296 (1983).
- 7. Lu K. and Tatarchuk B.J., J. Catal., 106, 166 (1987).
- 8. Lu K. and Tatarchuk B.J., J. Catal., 106, 176 (1987).
- 9. Masthan S.K., Chary K.Y.R. and Rao P.K., J. Catal., 124, 289 (1990).
- 10. Bathia S., Engelke R, Pruski M., Gerstein B.C. and King T.S., J. Catal., 147, 455 (1994).
- 11. Uner D.O., Pruski M. and King T.S., J. Catal., 156, 60 (1995).
- 12. Siporin S.E. and Davis R.J., J. Catal., 225, 359 (2004).
- 13. Mazzieri V., Coloma-Pascual F., Arcoya A., L' Argentiere P. C. and Figoli N.S., Appl. Surf. Sci.,210,222 (2003).
- 14. Bradford M.C.J., Fanning P.E. and Vannice M.A., J. Catal., 172, 479 (1997).
- 15. Chen B. and Goodwin J.G., Jr., J. Catal., 158, 228 (1996).
- 16. Betancourt P., Rives A., Hubaut R., Scott C.E. and Goldwasser J., Appl. Catal. A, 170, 307 (1998).
- 17. Narita T., Miura H., Sugiyama K., Matsuda T. and Gonzalez R.D., J. Catal., 103, 492 (1987).
- 18. Mieth J.A. and Schwarz J.A., J. Catal., 118, 203, 218 (1989).
- 19. Okal J., Zawadzki M., Kępiński L. and Krajczyk L., submitted to Appl. Catal. A.
- 20. Balint L, Miyazaki A. and Aika K., Chem. Mater., 13, 932 (2001).
- 21. Regalbuto J.R., Navada A., Shadid S., Bricker M.L. and Chen Q., J. Catal., 184, 335 (1999).
- 22. Balint L., Miyazaki A. and Aika K., Chem. Mater., 11, 373 (1999).
- 23. Narita T., Miura H., Ohira M., Hondou H., Sugiyama K., Matsuda T. and Gonzalez R.D., Appl. Catal., 32, 185(1987).
- 24. Sayari A., Wang H.T. and Goodwin J.G., Jr., J. Catal., 93, 368 (1985).
- 25. Vander Wiel D.P., Pruski M. and King T.S., J. Catal., 188, 186 (1999).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ5-0008-0012