Steam methane reforming on a Ni-based bimetallic catalyst: density functional theory and experimental studies of the catalytic consequence of surface alloying of Ni with Ag

Author:

Wang Hongmin1234,Blaylock D. Wayne5678,Dam Anh H.1234,Liland Shirley E.1234,Rout Kumar R.1234,Zhu Yi-An9101112,Green William H.1314158,Holmen Anders1234,Chen De1234ORCID

Affiliation:

1. Chemical Engineering Department

2. Norwegian University of Science and Technology

3. Trondheim

4. Norway

5. Engineering and Process Science

6. Core R&D, The Dow Chemical Company

7. Midland

8. USA

9. State Key Laboratory of Chemical Engineering

10. East China University of Science and Technology

11. Shanghai 200237

12. China

13. Department of Chemical Engineering

14. Massachusetts Institute of Technology

15. Cambridge

Abstract

We report a DFT and experimental study of the effects of the surface composition of a Ni/Ag alloy on methane activation and steam methane reforming compared to a pure Ni catalyst.

Publisher

Royal Society of Chemistry (RSC)

Subject

Catalysis

Reference66 articles.

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