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  4. Effect of Short Reducing Pulses on the Dynamic Structure, Activity, and Stability of Pd/Al2O3 for Wet Lean Methane Oxidation
 
research article

Effect of Short Reducing Pulses on the Dynamic Structure, Activity, and Stability of Pd/Al2O3 for Wet Lean Methane Oxidation

Franken, Tanja
•
Roger, Maneka
•
Petrov, Andrey W.
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April 16, 2021
Acs Catalysis

Natural gas is a suitable alternative to gasoline and diesel fuels to decrease the carbon footprint of the mobility and energy sectors. Unburnt CH4 is typically removed from the exhaust using palladium-based catalysts, which suffer from thermal deactivation as well as water and sulfur poisoning. In this work, the activity of Pd/Al2O3 in wet lean CH4 oxidation was enhanced by applying repeated short reducing pulses (SRP) leading to a significant drop in the apparent activation energy compared to static operation. The degraded activity after thermal aging was also recovered by the same approach. Fit of time-resolved operando XAS data using kinetic models of oxidation revealed that only moderately active PdO exists under static operation, while during SRP operation highly active PdOx species are formed and maintained by the presence of metallic Pd. On the basis of the combined spectroscopic and kinetic data, we propose a practical range of Pd oxidation degree (25-65% Pd content) to preserve high CH4 conversion.

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Type
research article
DOI
10.1021/acscatal.1c00328
Web of Science ID

WOS:000641284700046

Author(s)
Franken, Tanja
Roger, Maneka
Petrov, Andrey W.
Clark, Adam H.
Agote-Aran, Miren
Krumeich, Frank
Kroecher, Oliver  
Ferri, Davide
Date Issued

2021-04-16

Publisher

AMER CHEMICAL SOC

Published in
Acs Catalysis
Volume

11

Issue

8

Start page

4870

End page

4879

Subjects

Chemistry, Physical

•

Chemistry

•

ch4 oxidation

•

pd/al2o3

•

short reducing pulses

•

kinetics

•

water inhibition

•

operando xas

•

supported palladium catalysts

•

low-temperature

•

c-h

•

combustion

•

water

•

inhibition

•

challenges

•

reactivity

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GR-KRO  
Available on Infoscience
June 19, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/179072
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