Title of article :
Origin of different deactivation of Pd/SnO2 and Pd/GeO2 catalysts in methanol dehydrogenation and reforming: A comparative study Original Research Article
Author/Authors :
Harald Lorenz، نويسنده , , Qian Zhao، نويسنده , , Stuart Turner، نويسنده , , Oleg I. Lebedev، نويسنده , , Gustaaf Van Tendeloo، نويسنده , , Bernhard Kl?tzer، نويسنده , , Christoph Rameshan، نويسنده , , Kristian Pfaller، نويسنده , , Jurgen Konzett ، نويسنده , , Simon Penner، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Abstract :
Pd particles supported on SnO2 and GeO2 have been structurally investigated by X-ray diffraction, (High-Resolution) transmission and scanning electron microscopy after different reductive treatments to monitor the eventual formation of bimetallic phases and catalytically tested in methanol dehydrogenation/reforming. For both oxides this included a thin film sample with well-defined Pd particles and a powder catalyst prepared by incipient wetness impregnation. The hexagonal and the tetragonal polymorph were studied for powder GeO2. Pd2Ge formation was observed on all GeO2-supported catalysts, strongly depending on the specific sample used. Reduction of the thin film at 573 K resulted in full transformation into the bimetallic state. The partial solubility of hexagonal GeO2 in water and its thermal structural instability yielded Pd2Ge formation at 473 K, at the cost of a structurally inhomogeneous support and Ge metal formation at higher reduction temperatures. Pd on tetragonal GeO2 entered a state of strong metal–support interaction after reduction at 573–673 K, resulting in coalescing Pd2Ge particles on a sintered and re-crystallized support, apparently partially covering the bimetallic particles and decreasing the catalytic activity. Pd2Ge on amorphous thin film and hexagonal GeO2 converted methanol primarily via dehydrogenation to CO and H2.
Keywords :
Metal–support interaction , Methanol conversion , Selected area electron diffraction , Pd2Sn , PdSn , Pd3Sn2 , electron microscopy , Pd2Ge
Journal title :
Applied Catalysis A:General
Journal title :
Applied Catalysis A:General