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Novel embedded Pd@CeO2 catalysts: a way to active and stable catalysts

Academic Article
Publication Date:
2010
abstract:
1-wt% Pd-CeO2 catalysts were prepared by co-precipitation of Pd nanoparticles with ceria (Pd@CeO2-CP), by a microemulsion procedure (Pd@CeO2-ME), and by normal impregnation of Pd salts (Pd/CeO2-IMP) in order to test the concept that Pd-CeO2 catalysts could be more stable for the water-gas-shift (WGS) reaction when the Pd is embedded in CeO2. Initial WGS rates measured at 250 degrees C were similar for the Pd@CeO2-CP and Pd/CeO2-IMP, indicating that Pd was accessible for gas-phase reactions on both catalysts. Pd@CeO2-CP exhibited better stability for WGS than did Pd/CeO2-IMP but exposure to the WGS environment at 400 degrees C still caused a decrease in activity. Physical characterization of the Pd@CeO2-ME implied that the core-shell nanoparticles underwent condensation that resulted in a low surface area and poor Pd accessibility. However, the Pd@CeO2-ME sample exhibited good stability for WGS, suggesting that more effective encapsulation of Pd can limit the sintering of the metal phase, thus resulting in stable catalysts under high temperature reaction conditions.
Iris type:
01.01 Articolo in rivista
Keywords:
WATER GAS-SHIFT REACTION; PALLADIUM NANOPARTICLES; CERIA; OXIDATION; CORE-SHELL
List of contributors:
Fornasiero, Paolo
Handle:
https://iris.cnr.it/handle/20.500.14243/229011
Published in:
DALTON TRANSACTIONS (2003. PRINT)
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http://pubs.rsc.org/en/Content/ArticleLanding/2010/DT/b916035c
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