Efficient and rapid transformation of high silica CHA zeolite from FAU zeolite in the absence of water

Author:

Xiong Xin1234,Yuan Dingzhong56741,Wu Qinming5674,Chen Fang5674,Meng Xiangju5674,Lv Ruihua1234,Dai Daniel894,Maurer Stefan894,McGuire Robert101112,Feyen Mathias101112,Müller Ulrich101112,Zhang Weiping1314154,Yokoi Toshiyuki16171819,Bao Xinhe2021224ORCID,Gies Hermann2324252612,Marler Bernd2324252612,De Vos Dirk E.27282930,Kolb Ute31323312,Moini Ahmad34353637,Xiao Feng-Shou5674ORCID

Affiliation:

1. East China University of Technology

2. Department of Materials Science & Engineering

3. Nanchang 330013

4. China

5. Key Laboratory of Applied Chemistry of Zhejiang Province

6. Zhejiang University

7. Hangzhou 310028

8. BASF Catalysts (Shanghai) Co., Ltd.

9. Shanghai

10. BASF SE

11. 67056 Ludwigshafen

12. Germany

13. State Key Laboratory of Fine Chemicals

14. Dalian University of Technology

15. Dalian 116024

16. Chemical Resources Laboratory

17. Tokyo Institute of Technology

18. 226-8503 Yokohama

19. Japan

20. State Key Laboratory of Catalysis

21. Dalian Institute of Chemical Physics

22. 116023 Dalian

23. Institute of Geology

24. Mineralogy and Geophysics

25. Ruhr-University Bochum

26. 44780 Bochum

27. Centre for Surface Chemistry and Catalysis

28. KU Leuven

29. 3001 Leuven

30. Belgium

31. Institut für Physikalische Chemie

32. Johannes Gutenberg-Universität Mainz

33. 55128 Mainz

34. BASF Corporation

35. Catalysts LLC

36. Iselin

37. USA

Abstract

High quality CHA zeolite catalysts were efficiently synthesized by fast transformation of FAU zeolite in the absence of water.

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,General Chemistry

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