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  5. NH3-SCR catalysts for heavy-duty diesel vehicles: Preparation of CHA-type zeolites with low-cost templates

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Article
English
2021

NH3-SCR catalysts for heavy-duty diesel vehicles: Preparation of CHA-type zeolites with low-cost templates

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English
2021
Applied Catalysis B Environment and Energy
Vol 303
DOI: 10.1016/j.apcatb.2021.120928

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Avelino Avelino
Avelino Avelino

Instituto de Tecnología Química

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Estefanía Bello‐Jurado
Pau Ferri
Mathias Nero
+8 more

Abstract

Computer-assistance allows selecting the most adequate low-cost organic structure directing agents (OSDAs) for the crystallization of Al-rich CHA-type zeolites. The host-guest stabilization energies of tetraethylammonium (TEA), methyltriethylammonium (MTEA) and dimethyldiethylammonium (DMDEA), in combination with Na, were first theoretically evaluated. This “ab-initio” analysis reveals that two TEA show a serious steric hindrance in a cha cavity, whereas two MTEA would present excellent host-guest confinements. The synthesis of Al-rich CHA-type zeolites has been accomplished using TEA and MTEA. Electron diffraction and high-resolution transmission electron microscopy reveal large CHA-domains with narrow faulted GME-domains in the CHA-type material synthesized with TEA, confirming the better OSDA-directing roles of MTEA cations towards the cha cavity, in good agreement with DFT calculations. Cu-exchanged Al-rich CHA-type samples achieved with MTEA and TEA show excellent catalytic activity and hydrothermal stability for the selective catalytic reduction (SCR) of NOx with ammonia under conditions relevant for future heavy duty diesel conditions.

How to cite this publication

Estefanía Bello‐Jurado, Pau Ferri, Mathias Nero, Tom Willhammar, Isabel Millet, Frank W. Schütze, Leen Van Tendeloo, Peter N. R. Vennestrøm, Mercedes Boronat, Avelino Avelino, Manuel Moliner (2021). NH3-SCR catalysts for heavy-duty diesel vehicles: Preparation of CHA-type zeolites with low-cost templates. Applied Catalysis B Environment and Energy, 303, pp. 120928-120928, DOI: 10.1016/j.apcatb.2021.120928.

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Publication Details

Type

Article

Year

2021

Authors

11

Datasets

0

Total Files

0

Language

English

Journal

Applied Catalysis B Environment and Energy

DOI

10.1016/j.apcatb.2021.120928

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