Rare-earth ion exchanged Cu-SSZ-13 zeolite from organotemplate-free synthesis with enhanced hydrothermal stability in NH3-SCR of NOx

Author:

Zhao Zhenchao12345,Yu Rui12345,Shi Chuan12345,Gies Hermann6789ORCID,Xiao Feng-Shou1011125ORCID,De Vos Dirk13141516,Yokoi Toshiyuki17181920,Bao Xinhe2122235ORCID,Kolb Ute2425269,McGuire Robert2728299,Parvulescu Andrei-Nicolae2728299,Maurer Stefan2728299,Müller Ulrich2728299,Zhang Weiping12345ORCID

Affiliation:

1. State Key Laboratory of Fine Chemicals

2. School of Chemical Engineering

3. Dalian University of Technology

4. Dalian 116024

5. China

6. Institute für Geologie

7. Mineralogie und Geophysik

8. Ruhr-Universität Bochum

9. Germany

10. Department of Chemistry

11. Zhejiang University

12. Hangzhou 310028

13. Center for Surface Chemistry and Catalysis

14. KU Leuven

15. Leuven

16. Belgium

17. Chemical Resources Laboratory

18. Tokyo Institute of Technology

19. Yokohama

20. Japan

21. State Key Laboratory of Catalysis

22. Dalian Institute of Chemical Physics

23. Dalian 116023

24. Institut für Physikalische Chemie

25. Johannes Gutenberg-Universität Mainz

26. 55128 Mainz

27. BASF SE

28. Process Research and Chemical Engineering

29. 67056 Ludwigshafen

Abstract

Rare-earth Y exchanged Al-rich Cu-CHA shows significantly improved hydrothermal stability in NH3-SCR reaction.

Funder

State Key Laboratory of Catalysis

National Natural Science Foundation of China

BASF

Publisher

Royal Society of Chemistry (RSC)

Subject

Catalysis

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