Methane catalytic combustion on Pd9/gamma-Al2O3 with different degrees of Pd oxidation.
Izabela Czekaj, Katarzyna A Kacprzak, John Mantzaras
Index: Chimia 67(4) , 271-4, (2013)
Full Text: HTML
Abstract
This research is focused on the analysis of adsorbed CH4 intermediates at oxidized Pd9 nanoparticles supported on gamma-alumina. From first-principle density functional theory (DFT) calculations, several configurations, charge transfer and electronic density of states have been analyzed in order to determine feasible paths for the oxidation process. Furthermore methane oxidation cycles have been investigated on Pd nanoparticles with different degrees of oxidation. In case of low oxidized Pd nanoparticles, activation of methane is observed, whereby hydrogen from methane is adsorbed at one oxygen atom. This reaction is exothermic. In a subsequent step, two water molecules desorb. Additionally, a very interesting structural effect becomes evident; Pd-carbide formation, which is also an exothermic reaction. Furthermore, oxidation of such carbidized Pd-nanoparticles leads to CO2 formation, which is an endothermic reaction. One important result is that the support is involved in the CO2 formation. A different mechanism of methane oxidation was discovered for highly oxidized Pd nanoparticles. When the Pd nanoparticle is more strongly exposed to oxidative conditions, adsorption of methane is also possible, but it leads to carbonic acid production at the interface between the Pd nanoparticles and support. This process is endothermic.
Related Compounds
Related Articles:
Antioxidant activity of protocatechuates evaluated by DPPH, ORAC, and CAT methods.
2016-03-01
[Food Chem. 194 , 749-57, (2015)]
2016-03-01
[Food Chem. 194 , 319-24, (2015)]
2015-07-15
[Mar. Pollut. Bull. 96 , 165-75, (2015)]
Fluoride adsorption properties of three modified forms of activated alumina in drinking water.
2014-12-01
[J. Water Health 12(4) , 715-21, (2014)]
2015-07-28
[ACS Nano 9 , 7248-55, (2015)]