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Published in: Topics in Catalysis 1-8/2013

01-05-2013 | Original Paper

Evidences of the Cerium Oxide-Catalysed DPF Regeneration in a Real Diesel Engine Exhaust

Authors: M. Valencia, E. López, S. Andrade, Iris M.L., N. Guillén Hurtado, V. Rico Pérez, A. García García, C. Salinas Martínez de Lecea, A. Bueno López

Published in: Topics in Catalysis | Issue 1-8/2013

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Abstract

The active phase Ce0.5Pr0.5O2 has been loaded on commercial substrates (SiC DPF and cordierite honeycomb monolith) to perform DPF regeneration experiments in the exhaust of a diesel engine. Also, a powder sample has been prepared to carry out soot combustion experiments at laboratory. Experiments performed in the real diesel exhaust demonstrated the catalytic activity of the Ce–Pr mixed oxide for the combustion of soot, lowering the DPF regeneration temperature with regard to a counterpart catalyst-free DPF. The temperature for active regeneration of the Ce0.5Pr0.5O2-containing DPF when the soot content is low is in the range of 500–550 °C. When the Ce0.5Pr0.5O2-containing DPF is saturated with a high amount of soot, pressure drop and soot load at the filter reach equilibrium at around 360 °C under steady state engine operation due to passive regeneration. The uncoated DPF reached this equilibrium at around 440 °C. Comparing results at real exhaust with those at laboratory allow concluding that the Ce0.5Pr0.5O2-catalysed soot combustion in the real exhaust is not based on the NO2-assisted mechanism but is most likely occurring by the active oxygen-based mechanism.

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Literature
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Metadata
Title
Evidences of the Cerium Oxide-Catalysed DPF Regeneration in a Real Diesel Engine Exhaust
Authors
M. Valencia
E. López
S. Andrade
Iris M.L.
N. Guillén Hurtado
V. Rico Pérez
A. García García
C. Salinas Martínez de Lecea
A. Bueno López
Publication date
01-05-2013
Publisher
Springer US
Published in
Topics in Catalysis / Issue 1-8/2013
Print ISSN: 1022-5528
Electronic ISSN: 1572-9028
DOI
https://doi.org/10.1007/s11244-013-9995-3

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