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Effect of K and Bi doping on the M1 phase in MoVTeNbO catalysts for ethane oxidative conversion to ethylene

Paper ID Volume ID Publish Year Pages File Format Full-Text
38936 45798 2016 13 PDF Available
Title
Effect of K and Bi doping on the M1 phase in MoVTeNbO catalysts for ethane oxidative conversion to ethylene
Abstract

•Both K and Bi cations were introduced into the structure of M1 phase.•Adding of K facilitates the formation of anisotropic particles of M1 phase.•Introduction of Bi increases the fraction of accessible (0 0 1) surface.•Catalytic activity in ODE correlates with surface V5+/V4+ ratio.

The effect of potassium and bismuth doping on the morphology and structure of M1 phase, which determines the activity of MoVTeNbO catalysts in the oxidative conversion of ethane to ethylene, was studied. According to XRD, HRTEM and XPS data, the introduced K and Bi enter the M1 phase and do not form individual compounds. The addition of potassium is accompanied by anisotropic growth of the M1 phase particles: an increase in potassium content enhances the growth of particles along the [0 0 1] direction. The insertion of bismuth does not change the morphology of M1 phase but produces structural features (extended defects, disorientation of the crystal structure) that increase the fraction of accessible surface formed by {0 0 1} faces. Along with the structural and morphological transformations, the both additives affect the ratio of V5+/V4+ and Mo6+/Mo5+ cations and the enrichment of the catalyst surface with tellurium. The observed changes in physicochemical characteristics of the promoted catalysts correlate with changes in the catalytic properties.

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Keywords
Ethane oxidative dehydrogenation; M1 phase; Doping; Bi; K
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Effect of K and Bi doping on the M1 phase in MoVTeNbO catalysts for ethane oxidative conversion to ethylene
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Publisher
Database: Elsevier - ScienceDirect
Journal: Applied Catalysis A: General - Volume 514, 25 March 2016, Pages 1–13
Authors
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Subjects
Physical Sciences and Engineering Chemical Engineering Catalysis
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Price was $35.95
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