Oxidative dehydrogenation of ethane and propane over magnesium-cobalt phosphates COxMg3-x(PO4)(2)

Citation
A. Aaddane et al., Oxidative dehydrogenation of ethane and propane over magnesium-cobalt phosphates COxMg3-x(PO4)(2), CATAL LETT, 73(1), 2001, pp. 47-53
Citations number
35
Categorie Soggetti
Physical Chemistry/Chemical Physics","Chemical Engineering
Journal title
CATALYSIS LETTERS
ISSN journal
1011372X → ACNP
Volume
73
Issue
1
Year of publication
2001
Pages
47 - 53
Database
ISI
SICI code
1011-372X(2001)73:1<47:ODOEAP>2.0.ZU;2-5
Abstract
The magnesium-cobalt phosphates Co,Mg3-x(PO4)(2) belonging to the olivine-t ype structure were synthesized by coprecipitation and then investigated in the oxidative dehydrogenation (ODH) of ethane and propane. The best yields, with the exception of Co0.5Mg2.5(PO4)(2). were achieved with the compositi ons ranging between 1 less than or equal to x less than or equal to 2.5. Ma gnesium phosphate Mg-3(PO4)(2) displayed no activity and pure cobalt phosph ate Co-3(PO4)(2) was found to be the less active component of the solid sol ution. Comparison of the catalysts performances showed that they all have s imilar activity in ethane and propane ODH. albeit, they are more selective in propylene than in ethylene production. The CoxMg3-x(PO4)(2) solid soluti on was also studied, for characterization purposes, in butan-2-ol conversio n. The samples presented acid-base properties due essentially to the (PO-H) groups but they do not bear conventional redox centers. All the catalysts were active at low temperatures in the alcohol dehydration. The dehydrogena tion activity versus the phosphates composition displayed two maxima around x = 1 and 2, respectively. Similar striking behavior was also observed in ethane and propane ODH. UV-visible investigations of CoxMg3-x(PO4)(2) showe d, in agreement with the XRD data, that the Co2+ ions are distributed in th e phosphate framework between six- and five-coordinated sites. The cobalt a toms in the five-coordinated sites Co(5) and their Co(5)-Co(5) interatomic distances were assumed to play the main role in the C-H bond activation and the appearance of maxima in the activity. Magnesium cations presumably int ervene in acid-base properties of the samples and O-2 activation. Character ization of the samples showed that they do not undergo any noticeable trans formation after the catalytic tests.