A Study of the Kinetics and Mechanism of the Adsorption and Anaerobic Partial Oxidation of n-Butane over a Vanadyl Pyrophosphate Catalyst (original ) (raw )Differentiation of Active Oxygen Species for Butane Oxidation on Vanadyl Pyrophosphate
Daxiang Wang
Catalysis Letters, 2003
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The effect of the duration of n-butane/air pretreatment on the morphology and reactivity of (VO)2P2O7 catalysts
zainal zainal
Catalysis Letters, 2001
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A Comparison of the Reactivity of “Nonequilibrated” and “Equilibrated” V–P–O Catalysts: Structural Evolution, Surface Characterization, and Reactivity in the Selective Oxidation ofn-Butane andn-Pentane
S. Albonetti
Journal of Catalysis, 1996
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Nature and mechanism of formation of vanadyl pyrophosphate: Active phase in n-butane selective oxidation
Guido Busca
Journal of Catalysis, 1986
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Kinetics of Butane Oxidation by a Vanadyl Pyrophosphate Catalyst
Daxiang Wang
Journal of Catalysis, 2001
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n-Butane selective oxidation on vanadium-based oxides : Dependence on catalyst microstructure
Guido Busca
1986
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The mechanism of n-butane oxidation. Characterization of titania-supported V-P-O catalysts by pulse-flow experiments and in-situ XANES spectroscopy
John Geus
Recueil des Travaux Chimiques des Pays-Bas, 1996
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Oxidation of butane over vanadium–phosphorus oxides of P/V≥2
Daxiang Wang
Catalysis Letters, 2000
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Study by XPS and TPD of the interaction of n-pentane and n-butane with the surface of `non-equilibrated' and `equilibrated' V–P–O catalysts
F. Trifirò
Catalysis Today, 1998
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The effect of the phase composition of model VPO catalysts for partial oxidation of n-butane
Vadim Guliants
Catalysis Today, 1996
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Dependence of n-Butane Activation on Active Site of Vanadium Phosphate Catalysts
Chee Keong Goh
Catalysis Letters, 2009
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Effect of Mo on the Active Sites of VPO Catalysts upon the Selective Oxidation of n-Butane
A. Boix , Silvia Irusta
Journal of Catalysis, 1999
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Selective oxidation of n-butane to maleic anhydride on vanadyl pyrophosphate
Alain Tuel
Journal of Catalysis - J CATAL, 1998
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Study of the Co-VPO interaction in promoted n-butane oxidation catalysts
E. Lombardoande , Silvia Irusta
Applied Catalysis A: General, 2001
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Fundamental Studies of Butane Oxidation over Model-Supported Vanadium Oxide Catalysts: Molecular Structure-Reactivity Relationships
Jih-mirn Jehng
Journal of Catalysis, 1997
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Involvement of active sites of promoted vanadyl pyrophosphate in selective oxidation of propane
S. Phiyanalinmat
Journal of Catalysis
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A New Catalyst for the Selective Oxidation of Butane and Propane This work was funded by BP
Joseph Holles
Angewandte Chemie International Edition, 2002
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The V4+/V5+Balance as a Criterion of Selection of Vanadium Phosphorus Oxide Catalysts forn-Butane Oxidation to Maleic Anhydride: A Proposal to Explain the Role of Co and Fe Dopants
Alain Tuel
Journal of Catalysis, 1997
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In Situ Investigation of the Nature of the Active Surface of a Vanadyl Pyrophosphate Catalyst during n -Butane Oxidation to Maleic Anhydride
Felix Requejo
The Journal of Physical Chemistry B, 2003
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Activation of Vanadium Phosphorus Oxide Catalysts for Alkane Oxidation. The Influence of the Oxidation State on Catalyst Selectivity
John Gleaves
Industrial & Engineering Chemistry Research, 1994
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A comparison of steady-state and unsteady-state reaction kinetics of n-butane oxidation over VPO catalysts using a TAP2 reactor system
John Gleaves
Catalysis Today, 1997
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Activation of Vanadium Phosphorus Oxide Catalysts for Alkane Oxidation Oxygen Storage and Catalyst Performance
John Gleaves
Studies in Surface Science and Catalysis, 1994
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Role of the zeolitic carrier in the change of the selectivity of the P-V-O active component for the catalytic oxidation of butadiene
F. Trifirò
Applied Catalysis, 1984
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New insight into the role of gas phase reactions in the partial oxidation of butane
Sofi Marengo
Catalysis Today, 2003
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A comparison study on the partial oxidation of n-butane and propane over VPO catalysts supported on SBA-15, MCM-41, and fumed SiO2
Chak-tong Au
Applied Catalysis A: General, 2006
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Novel Synthesis Techniques for Preparation of Ultrahigh-Crystalline Vanadyl Pyrophosphate as a Highly Selective Catalyst for n Butane Oxidation
Yun Hin Taufiq Yap
Industrial & Engineering Chemistry Research, 2010
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Transient kinetics of n‐butane partial oxidation at elevated pressure
Ali Shekari , Gregory Patience
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Transient n-butane partial oxidation kinetics over VPO
Gregory Patience
Applied Catalysis A: General, 2004
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Relationship between structural/surface characteristics and reactivity in n-butane oxidation to maleic anhydride
Stefania Albonetti
Catalysis Today, 2000
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A novel approach to understanding and modelling performance evolution of catalysts during their initial operation under reaction conditions – Case study of vanadium phosphorus oxides for n-butane selective oxidation
Hugh Stitt
Journal of Catalysis, 2013
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How oxide carriers affect the reactivity of V 2 O 5 catalysts in the oxidative dehydrogenation of propane
Francesco Arena
Catalysis Letters, 1999
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The selective oxidation of η‐butane to maleic anhydride: comparison of bulk and supported V–P–O catalysts
Matthijs Ruitenbeek , John Geus
1998
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Selective oxidation of n-pentane and 2-pentene over (VO)2P2O7: continuous-flow and transient studies at subatmospheric pressures
John Gleaves
Journal of Molecular Catalysis
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Dehydrogenation of n-butane over vanadia catalysts supported on θ-alumina
Sreekala Rugmini
Journal of Catalysis, 2007
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Interaction of oxygen with the surface of vanadia catalysts
Renata Tokarz Sobieraj
Journal of Molecular Catalysis A: Chemical, 2007
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