V/P/O-based catalysts were prepared by thermal treatments of VOHPO4O·5H2O precursors prepared with the organic procedure. Different methods for precursor dehydration led to compounds which were characterized by the prevailing presence of crystalline (VO)2P2O7, but which also contained either V5+ species or V3+ species. The catalytic performance of these compounds in n-butane oxidation under almost-equilibrated conditions was compared. It was found that the presence of either V3+ or V5+ enhances the specific activity in n-butane oxidation, while the selectivity to maleic anhydride at low n-butane conversion (30%) remains substantially unaffected. A fully equilibrated, well-crystallized (VO)2P2O7 was reduced with H2. The reduced compound was more active than the fully equilibrated vanadyl pyrophosphate, while exhibiting comparable selectivity to maleic anhydride.

Cavani F., Ligi S., Monti T., Pierelli F., Trifiro F., Albonetti S., et al. (2000). Relationship between structural/surface characteristics and reactivity in n-butane oxidation to maleic anhydride. The role of V3+ species. CATALYSIS TODAY, 61(1), 203-210 [10.1016/S0920-5861(00)00383-7].

Relationship between structural/surface characteristics and reactivity in n-butane oxidation to maleic anhydride. The role of V3+ species

Cavani F.;Ligi S.;Monti T.;Pierelli F.;Albonetti S.;
2000

Abstract

V/P/O-based catalysts were prepared by thermal treatments of VOHPO4O·5H2O precursors prepared with the organic procedure. Different methods for precursor dehydration led to compounds which were characterized by the prevailing presence of crystalline (VO)2P2O7, but which also contained either V5+ species or V3+ species. The catalytic performance of these compounds in n-butane oxidation under almost-equilibrated conditions was compared. It was found that the presence of either V3+ or V5+ enhances the specific activity in n-butane oxidation, while the selectivity to maleic anhydride at low n-butane conversion (30%) remains substantially unaffected. A fully equilibrated, well-crystallized (VO)2P2O7 was reduced with H2. The reduced compound was more active than the fully equilibrated vanadyl pyrophosphate, while exhibiting comparable selectivity to maleic anhydride.
2000
Cavani F., Ligi S., Monti T., Pierelli F., Trifiro F., Albonetti S., et al. (2000). Relationship between structural/surface characteristics and reactivity in n-butane oxidation to maleic anhydride. The role of V3+ species. CATALYSIS TODAY, 61(1), 203-210 [10.1016/S0920-5861(00)00383-7].
Cavani F.; Ligi S.; Monti T.; Pierelli F.; Trifiro F.; Albonetti S.; Mazzoni G.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/917632
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