4.8 Article

Stability of palladium-based catalysts during catalytic combustion of methane:: The influence of water

Journal

APPLIED CATALYSIS B-ENVIRONMENTAL
Volume 74, Issue 3-4, Pages 242-250

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.apcatb.2007.02.015

Keywords

palladium; platinum; bimetal; methane; catalytic combustion; stability; water; DRIFTS

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The stability of methane conversion was studied over a Pd/Al2O3 catalyst and bimetallic Pd-Pt/Al2O3 catalysts. The activity of methane combustion over Pd/Al2O3 gradually decreased with time, whereas the methane conversion over bimetallic Pd-Pt catalysts was significantly more stable. The differences in combustion behavior were further investigated by activity tests where additional water vapor was periodically added to the feed stream. From these tests it was concluded that water speeds up the degradation process of the Pd/Al2O3 catalyst, whereas the catalyst containing Pt was not affected to the same extent. DRIFTS studies in a mixture of oxygen and methane revealed that both catalysts produce surface hydroxyls during combustion, although the steady state concentration on the pure Pd catalyst is higher for a fixed temperature and water partial pressure. The structure of the bimetallic catalyst grains with a PdO domain and a Pd-Pt alloy domain may be the reason for the higher stability, as the PdO domain appears to be more affected by the water generated in the combustion reaction than the alloy. Not all fuels that produce water during combustion will have stability issues. It appears that less strong binding in the fuel molecule will compensate for the degradation. (C) 2007 Elsevier B.V. All rights reserved.

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