PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Sita molekularne modyfikowane metalami przejściowymi jako katalizatory utleniania węglowodorów

Identyfikatory
Warianty tytułu
EN
Transition metals modified molecular sieves as catalysts for hydrocarbons oxidation
Języki publikacji
PL
Abstrakty
EN
The development of a one-stage procedure for hydrocarbons oxidation to produce oxygen bearing products is still a challenging task for chemical technology. In the presented paper, the recent achievements in heterogeneous oxidation of benzene to phenol and propene to propylene oxide, as well as an oxidative functionalization of light paraffins have been demonstrated. The successful use of molecular sieves modified with transition metal cations as catalysts for oxidation reactions, performed in the presence of nitrous oxide as an oxidant has been shown. One-stage benzene to phenol hydroxylation was developed and commercialised on the base of iron modified high silica zeolites as catalysts and N_2O as an oxidant. However, structure of the active iron complex and mechanism of the oxidation reaction are still under debate. The most important ideas are presented in the paper. Panov and co-workers [5, 10, 29] underline the role of binuclear iron complex accommodated on ion-exchangeable centres in zeolite channels which easily undergo autoreducion at high temperature and subsequent reoxidation as a result of contact with N2O. Ryder and Bell [35, 36] indicate (FeO_2)+ complex as responsible for benzene hydroxylation, while Hensen and co-workers [37, 38] claim, that not only iron but also aluminium cation is involved in active centre leading to formation of Fe-O-Al complex. Oxidation of light paraffins over N_2O/Fe-ZSM-5 system results in oxydehydrogenation of alkanes and formation of olefins [68, 72, 80]. The possible mechanisms of N_2O decomposition in the presence of alkanes and ODH products, developed in the literature [58, 80-82], are presented. Propylene epoxidation, performed over transition metal cations (iron, vanadium and mixed system) modified molecular sieves, is also presented. Mainly all-silica mesoporous molecular sieves [91, 93, 94] and amorphous silica [7, 95, 96] characterised with very low acidity, show suitable properties as matrices for accomodation of transition metal cations.
Rocznik
Strony
233--268
Opis fizyczny
bibliogr. 100 poz., wykr.
Twórcy
autor
autor
autor
  • Uniwersytet im. A. Mickiewicza, Wydział Chemii, ul. Grunwaldzka 6, 60-780 Poznań, krysnow@amu.edu.pl
Bibliografia
  • [1] G. Centi, F. Cavani, F. Trifirò, Selective Oxidation by Heterogeneous Catalysis, Kluver Academic, New York, 2001.
  • [2] R. Raja, G. Sankar, J.M. Thomas, J. Amer. Chem. Sci., 1999, 121, 11926.
  • [3] R.F. Parton, F. Thibault-Starzyk, R.A. Reynders, P.J. Grobet, P.A. Jacobs, C.P. Bezoukhanova, W. Sun, Y. Wu, J. Mol. Catal., 1995, 97, 183.
  • [4] M. Iwamoto, K. Matsukami, S. Kagawa, J. Phys. Chem., 1983, 87, 903.
  • [5] G.I. Panov, CATTECH, 2000, 4, 18.
  • [6] M.A. Baòares, Catal. Today,1999, 51, 319.
  • [7] V. Duma, D. Hönicke, J. Catal., 2000, 191, 93.
  • [8] T. Tatsumi, K. Yuasa, H. Tominaga, J. Chem. Soc., Chem. Commun., 1992, 1446.
  • [9] G.I. Panov, G.A, Scheveleva, A.S. Kharitonov, V.N. Romannikov, L.A. Vostrikowa, Appl. Catal. A:General, 1992, 82, 31.
  • [10] V.N. Parmon, G.I. Panov, A. Uriatre, A.S. Noskov, Catal. Today, 2005, 100, 115.
  • [11] Y. Ono, K. Tohmori, S. Suzuki, K. Nakashiro, E. Suzuki, Stud. Surf. Sci. Catal., 1988, 41, 75.
  • [12] P.J. Tirel, M.H. Gubelmann, J.M. Popa, Extended abstract for the "9th International Zeolite Conference", Montreal, Kanada, 5-10 czerwca 1992.
  • [13] C.R. Coan, A.D. King, Jr., J. Amer. Chem. Sci., 1971, 93, 1857.
  • [14] M. Häfefele, A. Reitzmann, D. Roppelt, G. Emig, Appl. Catal. A: General, 1997, 150, 153.
  • [15] M. Häfele, A. Reitzmann, D. Roppelt, G. Emig, Petrochemie, 1996, 112, 512.
  • [16] T.M. Miller, V.H. Grassian, Catal. Lett., 1997, 46, 213.
  • [17] W. Piskorz, F. Zasada, P. Stelmachowski, A. Kotarba, Z. Sojka, Catal. Today, 2008, 137, 418.
  • [18] B.R. Wood, J.A. Reimer, A.T. Bell, J. Catal., 2002, 209, 151.
  • [19] A. Heyden, B, Peters, A.T. Bell, F.J. Keil, J. Phys. Chem. B, 2005, 109, 1857.
  • [20] R. Burch, C. Howitt, Appl. Catal. A: General, 1993, 103, 135.
  • [21] L.M. Kustov, A.L. Tarasov, V.I. Bogdan, A.A. Tyrlov, J.W. Fulmer, Catal. Today, 2000, 61, 123.
  • [22] J.L. Motz, H. Heinichen, W.F. Hölderich, J. Mol. Catal. A: Chemical, 1998, 136, 175.
  • [23] V.I. Sobolev, A.S. Kharitonov, Ye. A. Paukshstis, G.I. Panov, J. Mol. Catal., 1993, 84, 117.
  • [24] L.V. Pirutko, K.A. Dubkov, L.P. Solovyeva, G.I. Panov, React. Kinet. Catal. Lett., 1996, 58, 105.
  • [25] B. Wichterlová, B. Dìdeèek, Z. Sobalik, Catalysis by Unique Metal Ion Structure in Solid Matrices - From Science to Application, G. Centi, B. Wichterlová, A.T. Bell Eds, Kluwer, Dordrecht 2001, 31.
  • [26] V. Zholobenko, Mendeleev Commun., 1993, 28.
  • [27] R. Rungsirisakun, B. Jansang, P. Pantu, J. Limtrakul, J. Mol. Structure, 2005, 733, 239.
  • [28] E.V. Starokon, K.A. Dubkov, L.V. Pirutko, G. I.Panov, Topics Catal., 2003, 23, 137.
  • [29] K.A. Dubkov, N.S. Ovanesyan, A.A. Shteinman, E.V. Starokon, G.I. Panov, J. Catal., 2002, 207, 341.
  • [30] P. Marturano, L. Drozdová, A. Kogelbauer, R. Prins, J. Catal., 2000, 192, 236.
  • [31] B.J. Wallar, J.D. Lipscomb, Chem. Rev., 1996, 96, 2625.
  • [32] G.I. Panov, A.K. Uriatre, M.A. Rodkin, V.I. Sobolev, Catal. Today, 1998, 42, 365.
  • [33] A. Ribera, I.W.C.E. Arends, S. De Vries, J. Pérez-Ramírez, R.A. Sheldon, J. Catal., 2000, 195, 287.
  • [34] I. Yuranov, D.A. Bulushev, A. Renken, L. Kiwi-Minsker, J. Catal., 2004, 227, 138.
  • [35] J.A. Ryder, A.K. Chakraborty, A.T. Bell, J. Catal., 2003, 220, 84.
  • [36] J.A. Ryder, A.K. Chakraborty, A.T. Bell, J. Phys. Chem. B, 2002, 106, 7059.
  • [37] E.J.M. Hensen, Q. Zhu, R.A.J. Janssen, P.C.M.M. Magusin, P.J. Kooyman, R.A. Van Santen, J. Catal., 2005, 233, 123.
  • [38] E.J.M. Hensen, Q. Zhu, R.A. Van Santen, J. Catal., 2005, 233, 136.
  • [39] P.K. Roy, R. Prins, G.D. Pirngruber, Appl. Catal. B: Environmental, 2008, 80, 226.
  • [40] G.D. Pirngruber, J.-D. Grunwaldt, P.K. Roy, J.A. van Bokhoven, O. Safonova, P. Glatzel, Catal. Today, 2007, 126, 127.
  • [41] L. Kiwi-Minsker, D.A. Bulushev, A. Renken, J. Catal., 2003, 219, 273.
  • [42] G.D. Pirngruber, P.K. Roy, R. Prins, J. Catal., 2007, 246, 147.
  • [43] B. Wichterlová, Z. Sobalik, J. Dìdeèek, Appl. Catal. B: Environmental, 2003, 41, 97.
  • [44] P.K. Roy, G.D. Pirngruber, J. Catal., 2004, 227, 164.
  • [45] H.-Y. Chen, El-M. El-Malki, X. Wang, R.A. van Santen, W.M.H. Sachtler, J. Mol. Catal. A: Chemical, 2000, 162, 159.
  • [46] P. Kubánek, B. Wichterlová, Z. Sobalik, J. Catal., 2002, 211, 109.
  • [47] A. Wącław-Held, K. Nowińska, Stud. Surf. Sci. Catal., 2005, 158, 877.
  • [48] E. Berrier, O. Ovsister, E.V. Kondratenko, M. Schwidder, W. Grünert, A. Brückner, J. Catal., 2007, 249, 67.
  • [49] B. Wichterlová, J. Dìdeèek, Z. Sobalik, Proceedings of the 12th International Zeolite Conference, 1999, vol. II, Mater. Res. Soc. Warrendalle. PA, 941.
  • [50] S. Kowalak, K. Nowińska, M. Święcicka, M. Sopa, A. Jankowska, G. Emig, E. Klemm, A. Reitzmann, Proceedings of the 12th International Zeolite Conference, Baltimore, 1999, 2847.
  • [51] S. Perathoner, F. Pino, G. Centi, G. Giordano, A. Katovic, J.B. Nagy, Topics Catal., 2003, 23, 125.
  • [52] N. Hansen, A. Heyden, A.T. Bell, F.J. Keil, J. Catal., 2007, 248, 213.
  • [53] N. Hansen, A. Heyden, A.T. Bell, F.J. Keil, J. Phys. Chem. C, 2007, 111, 2092.
  • [54] A. Heyden, N. Hansen, A.T. Bell, F.J. Keil, J. Phys. Chem. B, 2007, 110, 17096.
  • [55] A. Wącław, K. Nowińska, W. Schwieger, A. Zielińska, Catal. Today, 2004, 90, 21.
  • [56] A. Wącław, K. Nowińska, W. Schwieger, Appl. Catal. A: General, 2004, 270, 151.
  • [57] P.K. Roy, R. Prins, G.D. Pirngruber, Appl. Catal. B: Environmental, 2008, 80, 226.
  • [58] J. Perez-Ramirez, F. Kapteijn, A. Brückner, J. Catal., 2003, 218, 234.
  • [59] J.C. Védrine, Topics Catal., 2002, 21, 97.
  • [60] G. Busca, E. Finocchio, G. Ramis, G. Ricchiardi, Catal. Today, 1996, 32, 133.
  • [61] P.P. Notté. Topics Catal., 2000, 13, 387.
  • [62] G. Berlier, A. Zecchina, G. Spoto, G. Ricchiardi, S. Bordiga, C. Lamberti, J. Catal., 2003, 215, 264.
  • [63] L.V. Pirutko, V.S. Chernyayevsky, A.K. Uriatre, G.I. Panov, Appl. Catal. A: General, 2002, 227, 143.
  • [64] D.P. Ivanov, V.I. Sobolev, G.I. Panov, Appl. Catal.A: General, 2003, 241, 113.
  • [65] D. Meloni, R. Monaci, V. Solinas, G. Berlier, S. Bordiga, I. Rossetti, C. Olova, L. Forni, J. Catal., 2003, 214, 169.
  • [66] E. Selli, I. Rossetti, D. Meloni, F. Sini, L. Forni Appl. Catal. A: General, 2004, 262, 131.
  • [67] V.I. Sobolev, K.A. Dubkov, O. V. Panna, G. I. Panov, Catal. Today, 1995, 24, 251.
  • [68] K. Nowińska, A. Wącław, A. Izbińska, Appl. Catal. A: General, 2003, 243, 225.
  • [69] K.-I. Aika, J.H. Lundsford, J. Phys. Chem., 1977, 81, 1393.
  • [70] K.-I. Aika, J.H. Lundsford, J. Phys. Chem., 1978, 82, 1794.
  • [71] V.A. Sadykov, S.N. Pavlova, N.F. Saputina, I.A. Zolotarskii, N.A. Pakhomov, E.M. Moroz, V.A. Kuzmin, A. V. Kalinkin, Catal. Today, 2000,61 , 93.
  • [72] A. Held, J. Kowalska, K. Nowińska, Appl. Catal. B: Environmental, 2006, 64, 201.
  • [73] J. Kowalska, A. Held, K. Nowińska, Pol. J. Env. Stud., w druku.
  • [74] M. S. Kumar, J. Pérez-Ramírez, M. N. Debbagh, B. Smarsly, U. Bentrup, A. Brückner, Appl. Catal. B: Environmental, 2006, 62, 244.
  • [75] E.V. Kondratenko, M. Cherian, M. Baerns, D. Su, R. Schlögl, X. Wang, I.E. Wachs, J. Catal., 2005, 234, 131.
  • [76] P. Kuoetrowski, Y. Segura, L. Chmielarz, J. Surman, R. Dziembaj, P. Cool, E. Vansant, Catal. Today, 2006, 114, 307.
  • [77] R. Bulánek, B. Wichterlová, K. Novoveska, V. Kreibich, Appl. Catal. A: General, 2004, 264, 13.
  • [78] E. Heracleous, M. Machli, A.A. Lemonidou, I. Vasalos, J. Mol. Catal. A: Chemical, 2005, 232, 29.
  • [79] A. Held, J. Kowalska, A. Tuchorska, K. Nowińska, Stud. Surf. Sci. Catal., 2007, 170, 1267.
  • [80] J. Pérez-Ramírez, J. Catal., 2004, 227, 512.
  • [81] E. . Kondratenko, J. Pérez-Ramírez, Appl. Catal. B: Environmental, 2006, 64, 35.
  • [82] E.V. Kondratenko, J. Pérez-Ramírez, J. Phys. Chem. B, 2006, 110, 22586.
  • [83] J. Pérez-Ramírez, E.V. Kondratenko, M. Naoufal Debbagh, J. Catal., 2005, 233, 442.
  • [84] G.D. Pirngruber, M. Luechinger, P.K. Roy, A. Cecchetto, P. Smirniotis, J. Catal., 2004, 224, 429.
  • [85] G. Mul, J. Pérez-Ramírez, F. Kapteijn, J.A. Moulijn, Catal. Lett., 2001, 77, 7.
  • [86] E.V. Kondratenko, J. Pérez-Ramírez, Appl. Catal. A: General, 2004, 267, 181.
  • [87] D.A. Bulushev, L. Kiwi-Minsker, A. Renken, J. Catal., 2004, 222, 389.
  • [88] J. Pérez-Ramírez, F. Kapteijn, G. Mul, J.A. Moulijn, J. Catal., 2002, 208, 211.
  • [89] J. Pérez-Ramírez, A. Gallardo-Llamas, J. Catal., 2004, 223, 382.
  • [90] O. Sánchez-Galofré, Y. Segura, J. Pérez-Ramírez, J. Catal., 2007, 249, 123.
  • [91] Q. Zhang, Q. Guo, X. Wang, T. Shishido, Y. Wang, J. Catal., 2006, 239, 105.
  • [92] F. Kapteijn, J. Rodriguez-Mirasol, J.A. Moulijn, Appl. Catal. B: Environmental, 1999, 9, 25.
  • [93] X. Wang, Q. Zhang, S. Yang, Y. Wang, J. Phys. Chem. B, 2005, 109, 23500.
  • [94] S. Yang, W. Zhu, Q. Zhang, Y. Wang, J. Catal., 2008, 254, 251.
  • [95] E. Ananieva, A. Reitzmann, Chem. Eng. Sci., 2004, 89, 5509.
  • [96] T. Thömmes, S. Zürcher, A. Wix, A. Reitzmann, B. Kraushaar-Czarnetzki, Appl. Catal. A: General, 2007, 318, 160.
  • [97] T. Thömmes, A. Reitzmann, B. Kraushaar-Czarnetzki, Chem. Eng. Sci., 2008, 63, 5304.
  • [98] B. Moens, H. De Winne, S. Corthals, H. Poelman, R. De Gryse, V. Meynen, P. Cool, B.F. Sels, P.A. Jacobs, J. Catal., 2007, 247, 86.
  • [99] B. Horváth, M. Hronec, R. Glaum, Topics Catal., 2007, 46, 129.
  • [100] A. Held, P. Florczak, Catal. Today (2008), doi:10.1016/j.cattod. 2008.07.030.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0017-0046
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.