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ON THE WAY TO IMPROVE CETANE NUMBER IN DIESEL FUELS: RING OPENING OF DECALIN OVER IR-MODIFIED EMBEDDED MESOPOROUS MATERIALS

Abstract

Embedded materials prepared from MCM-41 together with BE or TON
were synthesized, characterized and tested in the ring opening of decalin in a temperature range of 523–623 K. The characterization results revealed that both microporous and mesoporous phases were present in the catalyst. Ir-modification did not change the phase purity, affecting, however, the acidity due to metalsupport interactions. The parameters studied in ring opening of decalin were support structure, presence of Ir and temperature. The detailed analysis of 2D/3D isomers and ring opening products showed that the main ring opening products contained ethyl side chain. The Ir-modified embedded mesoporous catalysts were active and relatively selective in the ring opening of decalin, giving 35 % selectivity to the ring opening products at 98 % conversion at 573 K and 6 MPa.

About the Authors

N. Kumar
Laboratory of Industrial Chemistry and Reaction Engineering, Department of Chemical Engineering, Process Chemistry Centre, Åbo Akademi University, FI-20500 Turku/Åbo, Finland
Russian Federation


P. Mäki-Arvela
Laboratory of Industrial Chemistry and Reaction Engineering, Department of Chemical Engineering, Process Chemistry Centre, Åbo Akademi University, FI-20500 Turku/Åbo, Finland
Russian Federation


N. Musakka
Laboratory of Industrial Chemistry and Reaction Engineering, Department of Chemical Engineering, Process Chemistry Centre, Åbo Akademi University, FI-20500 Turku/Åbo, Finland
Russian Federation


D. Kubicka
Laboratory of Industrial Chemistry and Reaction Engineering, Department of Chemical Engineering, Process Chemistry Centre, Åbo Akademi University, FI-20500 Turku/Åbo, Finland
Russian Federation


M. Kangas
Laboratory of Industrial Chemistry and Reaction Engineering, Department of Chemical Engineering, Process Chemistry Centre, Åbo Akademi University, FI-20500 Turku/Åbo, Finland
Russian Federation


M. Tiitta
Neste Oil, Technology Center, P.O.B. 310, FI-06101 Porvoo, Finland
Russian Federation


H. Österholm
Neste Oil, Technology Center, P.O.B. 310, FI-06101 Porvoo, Finland
Russian Federation


A.-R. Leino
Laboratory of Microelectronics and Materials Physics, University of Oulu, PL 4500, FI-90014 Oulu, Finland
Russian Federation


K. Kordás
Laboratory of Microelectronics and Materials Physics, University of Oulu, PL 4500, FI-90014 Oulu, Finland
Russian Federation


T. Heikkilä
Laboratory of Industrial Physics, University of Turku, FI-20014 Turku, Finland
Russian Federation


T. Salmi
Laboratory of Industrial Chemistry and Reaction Engineering, Department of Chemical Engineering, Process Chemistry Centre, Åbo Akademi University, FI-20500 Turku/Åbo, Finland
Russian Federation


D. Yu. Murzin
Laboratory of Industrial Chemistry and Reaction Engineering, Department of Chemical Engineering, Process Chemistry Centre, Åbo Akademi University, FI-20500 Turku/Åbo, Finland
Russian Federation


References

1. Beck J.S., Vartuli J.C., Roth W.J., Leonowicz M.E., Kresge C.T., Schmitt K.D., Chu C.T.W., Olson D.H., Sheppard E.W. // J. Am. Chem. Soc. 1992. Vol. 114. P. 10834— 10843.

2. Chal R., Gérardin C., Bulut M., van Donk S. // ChemCat- Chem. 2011. Vol. 3. P. 67—81.

3. Zhang Y., Dou T., Li Q., Kang S. // Recent Progress in Mesostructured Materials / Ed. D. Zhao, S. Qiu, Y. Tang, C. Yu. Elsevier, 2007. P. 491—494.

4. Guo W., Xiong C., Huang L., Li Q. // J. Mater. Chem. 2001. Vol. 11. P. 1886—1890.

5. Patent WO 2006/070073. Catalytic materials and method for the preparation thereof / Kumar N., Tiitta M., Salmi T., Österholm H. Pub. date 06.07.2006.

6. McVicker G.B., Daage M., Touvelle M. S., Hudson C.W., Klein D.P., Baird W.C., Cook B.R., Chen J.G., Hantzer S., Vaughan D.E.W., Ellis E.S., Feeley O.C. // J. Catal. 2002. Vol. 210. P. 137—148.

7. Kubicka D., Kumar N., Mäki-Arvela P., Tiitta M., Niemi V., Karhu H., Salmi T., Murzin D.Yu. // J. Catal. 2004. Vol. 227. P. 313—327.

8. Kubicka D., Kumar N., Mäki-Arvela P., Tiitta M., Venäläinen T., Salmi T., Murzin D.Yu. // Stud. Surf. Sci. Catal. 2005. Vol. 158. P. 1669—1676.

9. Kubicka D., Kumar N., Mäki-Arvela P., Tiitta M., Niemi V., Salmi T., Murzin D.Yu. // J. Catal. 2004. Vol. 222. P. 65—79.

10. Kubicka D., Kumar N., Venäläinen T., Karhu H., Kubickova I., Österholm H., Murzin D.Yu. // J. Phys. Chem. B. 2006. Vol. 110. P. 4937—4946.

11. Rabl S., Haas A., Santi D., Flego C., Ferrari M., Calemma V., Weitkamp J. // Appl. Catal. A: Gen. 2011. Vol. 400. P. 131—141.

12. Weitkamp J., Rabl S., Haas A., Santi D., Ferrari M., Calemma V. // DGMK Tagungsbericht. 2010. Vol. 3. Р. 77.

13. Mouli K.C., Sundramurthy V., Dalai A.K., Ring Z. // Appl. Catal. A: Gen. 2007. Vol. 321. P. 17—26.

14. Mouli K.C., Sundramurthy V., Dalai A.K. // J. Mol. Catal. A: Chem. 2009. Vol. 304. P. 77—84.

15. Hernandez-Huseca R., Merida-Robles J., Maireles-Torres P., Rodriguez-Castellon E., Jimenez-Lopez A. // J. Catal. 2001. Vol. 203. P. 122—132.

16. Kangas M., Kubicka D., Salmi T., Murzin D.Yu. // Top. Catal. 2010. Vol. 53. P. 1172—1175.

17. Kubicka D., Kumar N., Mäki-Arvela P., Tiitta M., Salmi T., Murzin D.Yu. // Catalysis in Organic Reactions. 2005. P. 279—292.

18. D’Ippolito S.A., Benitez V.M., Reyes P., Rangel M.C., Pieck C.L. // Catal. Today. 2011. Vol. 172. P. 177—182.

19. Moraes R., Thomas K., Thomas S., Van Donk S., Grasso G., Gilson J.-P., Houalla M. // J. Catal. 2012. Vol. 286. P. 62—77.

20. Kumar N., Kubicka D., Heikkilä T., Karhu H., Tiitta M., Salmi T., Murzin D.Yu. // Nanocatalysis / Ed. D.Yu. Murzin. Trivandrum (Kerala, India): Research Signpost, 2006. P. 33—50.

21. Ardakani S.J., Smith K.J. // Appl. Catal. A: Gen. 2011. Vol. 403. P. 36—47.

22. Emeis C.A. // J. Catal. 1993. Vol. 141. P. 347—354.

23. Zhou W., He D. // Catal. Lett. 2009. Vol. 127. P. 437.

24. Matsukata M., Ogura M., Osaki T., Kikuchi E., Mitra A. //Microp. Mesop. Mater. 2001. Vol. 48. P. 23—29.

25. Atlas of Zeolite Framework Types / Eds. C. Baerlocher, L. McCusker, D. Olson. 6th ed. Elsevier, 2007. P. 230, 334.


Review

For citations:


Kumar N., Mäki-Arvela P., Musakka N., Kubicka D., Kangas M., Tiitta M., Österholm H., Leino A., Kordás K., Heikkilä T., Salmi T., Murzin D.Yu. ON THE WAY TO IMPROVE CETANE NUMBER IN DIESEL FUELS: RING OPENING OF DECALIN OVER IR-MODIFIED EMBEDDED MESOPOROUS MATERIALS. Kataliz v promyshlennosti. 2013;(1):11-25. (In Russ.)

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ISSN 1816-0387 (Print)
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