The role of vanadium oxide on the titania transformation under thermal treatments and surface vanadium states

被引:62
作者
Banares, MA [1 ]
Alemany, LJ [1 ]
Jimenez, MC [1 ]
Larrubia, MA [1 ]
Delgado, F [1 ]
Granados, VL [1 ]
MartinezArias, A [1 ]
Blasco, JM [1 ]
Fierro, JLG [1 ]
机构
[1] UNIV MALAGA,DEPT INGN QUIM,E-29071 MALAGA,SPAIN
关键词
D O I
10.1006/jssc.1996.0209
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
High surface area titania-supported materials prepared from V(IV) precursors and calcined at high temperatures have been characterized by Vis-UV diffuse reflectance, FT Raman, electron spin resonance, and X-ray photoelectron spectroscopies and tested in the partial oxidation of methane. Vanadium oxide loading and calcination temperature determine the structure of V2O5/TiO2 materials. Below theoretical surface monolayer coverage, V(IV) species closely interacting with the support are observed, Vanadiam oxide species anchor by reaction with titanium oxide surface hydroxyl groups. The V(IV) species are stabilized by interaction with titania support and further stabilization occurs at high calcination temperatures by their location in titania (rutile) lattice. Larger loadings of vanadium decrease the temperatures required for conversion of titania (anatase) to titania (rutile), At higher vanadium loading segregation into bulk V2O5 oxide takes place, thus decreasing interaction with titania support. This enables a larger population of V(V) species than samples with surface dispersed vanadium oxide species. Although partial oxidation of methane is nonselective on titania (anatase), partial oxidation products are observed on titania (rutile)-supported vanadium oxide catalysts, The higher selectivity to partial oxidation product formaldehyde appears to be related to the high stability of V(IV) cations located on rutile lattice and the absence of V(V) sites. (C) 1996 Academic Press, Inc.
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页码:69 / 76
页数:8
相关论文
共 50 条
[1]  
ALEMANY LJ, 1994, REACT KINET CATAL LE, V53, P1
[2]  
ALEMANY LJ, 1995, CHEM MATER, V7, P1342
[3]   SOLID-STATE AND SURFACE-CHEMISTRY OF CUO-TIO2 (ANATASE) POWDERS [J].
AMORES, JMG ;
ESCRIBANO, VS ;
BUSCA, G ;
LORENZELLI, V .
JOURNAL OF MATERIALS CHEMISTRY, 1994, 4 (06) :965-971
[4]   THE PARTIAL OXIDATION OF METHANE ON MOO3/SIO2 CATALYSTS - INFLUENCE OF THE MOLYBDENUM CONTENT AND TYPE OF OXIDANT [J].
BANARES, MA ;
FIERRO, JLG ;
MOFFAT, JB .
JOURNAL OF CATALYSIS, 1993, 142 (02) :406-417
[5]   DIRECT CONVERSION OF METHANE TO C-1 OXYGENATES OVER MOO3-USY ZEOLITES [J].
BANARES, MA ;
PAWELEC, B ;
FIERRO, JLG .
ZEOLITES, 1992, 12 (08) :882-888
[6]   EFFECT OF ALKALI-METAL CATIONS ON THE STRUCTURE OF MO(VI) SIO2 CATALYSTS AND ITS RELEVANCE TO THE SELECTIVE OXIDATION OF METHANE AND METHANOL [J].
BANARES, MA ;
SPENCER, ND ;
JONES, MD ;
WACHS, IE .
JOURNAL OF CATALYSIS, 1994, 146 (01) :204-210
[7]  
BANARES MA, 1993, ACS S SERIES, V523, pCH23
[8]   VANADIUM PENTOXIDE TITANIUM DIOXIDE SYSTEM - STRUCTURAL INVESTIGATION AND ACTIVITY FOR THE OXIDATION OF BUTADIENE [J].
BOND, GC ;
SARKANY, AJ .
JOURNAL OF CATALYSIS, 1979, 57 (03) :476-493
[9]   VANADIUM-OXIDE MONOLAYER CATALYSTS - PREPARATION, CHARACTERIZATION AND CATALYTIC ACTIVITY [J].
BOND, GC ;
TAHIR, SF .
APPLIED CATALYSIS, 1991, 71 (01) :1-31
[10]  
Bosch H., 1986, CATAL TODAY, V2, P369, DOI DOI 10.1016/0920-5861(88)80002-6