Modelling the Hydrothermal Ageing of a Fe‐Zeolite Catalyst for Automotive NH3‐SCR Applications

The effects of duration and temperature of hydrothermal ageing treatments were investigated on a commercial Fe‐zeolite catalyst for NH3‐SCR addressing NH3 adsorption, NH3 oxidation, and NH3 reaction with NOx. Hydrothermal ageing affected primarily NH3 oxidation and standard SCR activities, as well a...

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Veröffentlicht in:Chemie ingenieur technik 2018-06, Vol.90 (6), p.803-815
Hauptverfasser: Ruggeri, Maria Pia, Nova, Isabella, Tronconi, Enrico, Schmeißer, Volker, Weibel, Michel
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Sprache:eng
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Zusammenfassung:The effects of duration and temperature of hydrothermal ageing treatments were investigated on a commercial Fe‐zeolite catalyst for NH3‐SCR addressing NH3 adsorption, NH3 oxidation, and NH3 reaction with NOx. Hydrothermal ageing affected primarily NH3 oxidation and standard SCR activities, as well as NH3 storage capacity. Deactivation was fast in the first few hours, eventually approaching asymptotic levels. There is potential to predict the effects of hydrothermal ageing on the SCR behavior of Fe‐zeolite catalysts as a function of just one parameter, i.e., the NH3 storage capacity. In this work the rate constants of NH3 oxidation and standard SCR over hydrothermally aged Fe‐zeolite catalysts are calculated and found to follow a linear correlation with the corresponding NH3 storage capacity.
ISSN:0009-286X
1522-2640
DOI:10.1002/cite.201700135