Abstract

Pure Bi 2Mo 3O 12, Bi 2Mo 2O 9, Bi 2MoO 6, MoO 3 and α-Sb 2O 4 and their mechanical mixtures were investigated in the oxygen-assisted dehydration of 2-butanol at atmospheric pressure and at low temperature (220 and 250°C). All catalysts were characterized before and after the catalytic reaction by BET surface area measurement, Raman spectroscopy, XRD and XPS. A strong parallelism is confirmed with the results obtained in the selective oxidation of olefins. In the frame of the remote control concept, α, β and γ-bismuth molybdates are able to play a dual role: donor of spillover oxygen (Oso) with respect to MoO 3, and acceptor of Oso with respect to α-Sb 2O 4. On one hand, this duality leads to mutual increase of activity when the bismuth molybdates are mixed together. In the presence of MoO 3, the α phase seems to be a stronger Oso donor than β and γ, and β has a donor strength between α and γ. On the other hand, when the Bi molybdates are reacted in the presence of a big quantity of spillover oxygen, like in a mixture with α-Sb 2O 4, they undergo a dramatic decrease of activity. The phenomenon originates from the full oxidation of the reduced Mo species to Mo 6+ induced by Oso. In parallel with other reactions involving oxygen, this confirms that the real active and selective state of molybdenum-containing oxides is that slightly reduced possessing Mo 5+.

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