The role of niobium in the gas- and liquid-phase oxidation on metallosilicate MCM-41-type materials

被引:71
作者
Kilos, B
Aouine, M
Nowak, I
Ziolek, M
Volta, JC
机构
[1] Adam Mickiewicz Univ Poznan, Fac Chem, PL-60780 Poznan, Poland
[2] Inst Rech Catalyse, CNRS, F-69626 Villeurbanne, France
关键词
Nb; V; Mo-MCM-41; ODH of propane; epoxidation of cyclohexene; role of defects in catalysts;
D O I
10.1016/j.jcat.2004.03.002
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
MCM-41 mesoporous molecular sieves containing Nb, V, and Mo separately and together have been synthesised and characterised by high-resolution transmission microscopy (HRTEM with EDX), N-2 adsorption isotherms, and X-ray diffraction (XRD), and tested in the oxidative dehydrogenation (ODH) of propane in the gas phase and in the liquid-phase oxidation of cyclohexene with hydrogen peroxide. For the first time, it has been documented that the incorporation of niobium during the synthesis of MCM-41 materials results in the formation of defects, the presence of which influences the selectivity in both reactions, ODH of propane to propene and epoxidation of cyclohexene. It is proposed that defect holes, generated by niobium, are convenient for access of reagents to the active species and for making the diffusion easier (particularly important in the liquid-phase reactions). NbO- species plays the role of an electronic promoter in multimetallosilicates NbV- and NbVMoMCM-41, where vanadium is an active species. In the absence of vanadium, niobium species are active in both oxidation processes. The role of acidity in the catalysts used for both oxidation processes is considered. (C) 2004 Elsevier Inc. All rights reserved.
引用
收藏
页码:314 / 325
页数:12
相关论文
共 33 条
[1]   Oxidative dehydrogenation of short chain alkanes on supported vanadium oxide catalysts [J].
Blasco, T ;
Nieto, JML .
APPLIED CATALYSIS A-GENERAL, 1997, 157 (1-2) :117-142
[2]   STRUCTURE AND REACTIVITY OF TITANIA-SUPPORTED OXIDES .1. VANADIUM-OXIDE ON TITANIA IN THE SUBMONOLAYER AND SUPER-MONOLAYER REGIONS [J].
BOND, GC ;
ZURITA, JP ;
FLAMERZ, S ;
GELLINGS, PJ ;
BOSCH, H ;
VANOMMEN, JG ;
KIP, BJ .
APPLIED CATALYSIS, 1986, 22 (02) :361-378
[3]   Mesoporous redox molecular sieves analogous to MCM-41 [J].
Carvalho, WA ;
Varaldo, PB ;
Wallau, M ;
Schuchardt, U .
ZEOLITES, 1997, 18 (5-6) :408-416
[4]   Surface acidity of MCM-41 by in situ IR studies of pyridine adsorption [J].
Chakraborty, B ;
Viswanathan, B .
CATALYSIS TODAY, 1999, 49 (1-3) :253-260
[5]   The relationship between the electronic and redox properties of dispersed metal oxides and their turnover rates in oxidative dehydrogenation reactions [J].
Chen, KD ;
Bell, AT ;
Iglesia, E .
JOURNAL OF CATALYSIS, 2002, 209 (01) :35-42
[6]   Vanadium phosphorus oxide catalyst modified by niobium doping for mild oxidation of n-butane to maleic anhydride [J].
de Farias, AMD ;
Gonzalez, WD ;
de Oliveira, PGP ;
Eon, JG ;
Herrmann, JM ;
Aouine, M ;
Loridant, S ;
Volta, JC .
JOURNAL OF CATALYSIS, 2002, 208 (01) :238-246
[7]   Photoluminescence study of the introduction of V in Si-MCM-41:: Role of surface defects and their associated SiO- and SiOH groups [J].
Dzwigaj, S ;
Krafft, JM ;
Che, M ;
Lim, S ;
Haller, GL .
JOURNAL OF PHYSICAL CHEMISTRY B, 2003, 107 (16) :3856-3861
[8]   Fundamental principles of selective heterogeneous oxidation atalysis [J].
Grasselli, RK .
TOPICS IN CATALYSIS, 2002, 21 (1-3) :79-88
[9]   Effect of doping of TiO2 support with altervalent ions on physicochemical and catalytic properties in oxidative dehydrogenation of propane of vanadia-titania catalysts [J].
Grzybowska, B ;
Sloczyski, J ;
Grabowski, R ;
Samson, K ;
Gressel, I ;
Wcislo, K ;
Gengembre, L ;
Barbaux, Y .
APPLIED CATALYSIS A-GENERAL, 2002, 230 (1-2) :1-10
[10]   Thirty years in selective oxidation on oxides:: what have we learned? [J].
Grzybowska-Swierkosz, B .
TOPICS IN CATALYSIS, 2000, 11 (1-4) :23-42