Regeneration of Cu/SAPO-34(MO) with H2O only: too good to be true?
Author:
Affiliation:
1. Chemical Engineering, Competence Centre for Catalysis
2. Chalmers University of Technology
3. 412 96 Gothenburg
4. Sweden
5. FCA US LLC
6. Auburn Hills
7. USA
Abstract
Illustration of the proposed mechanism for deactivation and regeneration of Cu/SAPO-34(MO) with H2O.
Funder
Vetenskapsrådet
Publisher
Royal Society of Chemistry (RSC)
Subject
Catalysis
Link
http://pubs.rsc.org/en/content/articlepdf/2020/CY/C9CY01981B
Reference55 articles.
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2. Current Understanding of Cu-Exchanged Chabazite Molecular Sieves for Use as Commercial Diesel Engine DeNOx Catalysts
3. Recent advances in automotive catalysis for NOx emission control by small-pore microporous materials
4. The ammonia selective catalytic reduction activity of copper-exchanged small-pore zeolites
5. Comparison of Cu/BEA, Cu/SSZ-13 and Cu/SAPO-34 for ammonia-SCR reactions
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1. A controllable zeolite framework stability of Cu/SAPO-34 via adjusting the copper coordination environment for NH3-SCR under hydrothermal condition;Fuel;2024-09
2. Flexible Al Coordination with H2O Explaining the Deviation of Strong Acid Amount from the Framework Al Content in Al-Rich SSZ-13;The Journal of Physical Chemistry C;2023-08-13
3. The investigation of the NH3-SCR performance of a copper-based AEI-CHA intergrown zeolite catalyst;Frontiers in Chemistry;2022-11-30
4. Spotlight on Cu/SAPO-34 with high hydrothermal stability induced by a small amount of SSZ-39;Chemical Engineering Journal;2022-10
5. Destructive and Protective Effects of NH3 on the Low-Temperature Hydrothermal Stability of SAPO-34 and Cu-SAPO-34;ACS Applied Materials & Interfaces;2022-09-15
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