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Alkanes vanadium/chromium oxides

Alkane Dehydrogenation over Vanadium and Chromium Oxides... [Pg.595]

The discovery in the early 80 s of titanium silicalites [62-64] opened the new application perspective of zeolitic materials as oxidation catalysts. Several reactions of partial oxidation of organic reactants using dilute solutions of hydrogen peroxide could for the first time be performed selectively in very mild conditions. Other elements inserted in the lattice of silicalites have since been shown to have similarly interesting catalytic properties including, vanadium, zirconium, chromium and more recently tin and arsenic [65]. Titanium silicalites with both MFI (TS-1) and MEL (TS-2) structures have however been the object of more attention and they still seem to display unmatched properties. Indeed some of these reactions like the oxyfunctionalization of alkanes [66-69] by H2O2 are not activated by other Ti containing catalysts (with the exception of Ti-Al-Beta [70]). The same situation... [Pg.221]


See other pages where Alkanes vanadium/chromium oxides is mentioned: [Pg.215]    [Pg.608]    [Pg.4]    [Pg.606]    [Pg.2]    [Pg.510]    [Pg.47]    [Pg.360]   
See also in sourсe #XX -- [ Pg.595 , Pg.596 , Pg.597 , Pg.598 , Pg.599 , Pg.600 , Pg.601 , Pg.602 , Pg.603 , Pg.604 , Pg.605 , Pg.606 , Pg.607 , Pg.608 , Pg.609 , Pg.610 , Pg.611 ]




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Alkanes vanadium oxides

Chromium oxidants

Chromium oxide

Chromium oxids

Oxidants vanadium

Oxidation vanadium

Oxidative alkanes

Oxides chromium oxide

Oxides vanadium oxide

Vanadium oxides

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