A hydrothermally stable transition alumina by condensation-enhanced self-assembly and pyrolysis crystallization: application in the steam reforming of methane

Author:

Pérez Lidia López12345,Alvarez-Galván Consuelo6789,Zarubina Valeriya12345,Figueiredo Fernandes Bruno O.12345,Melián-Cabrera Ignacio12345

Affiliation:

1. University of Groningen

2. Institute of Technology & Management

3. Chemical Reaction Engineering

4. Nijenborgh 4

5. 9747 AG Groningen, The Netherlands

6. Sustainable Energy and Chemistry Group

7. Institute of Catalysis and Petroleum Chemistry

8. CSIC

9. Madrid 28049, Spain

Abstract

The preparation of a steam-based hydrothermally stable transition alumina is reported.

Publisher

Royal Society of Chemistry (RSC)

Subject

Condensed Matter Physics,General Materials Science,General Chemistry

Reference65 articles.

1. Handbook of Porous Solids , ed. F. Schüth , S. W. S. Kenneth and J. Weitkamp , Wiley-VCH , Weinheim , 2002 , p. 1605

2. J. R. Regalbuto and G. J.Antos , in Catalytic Naphtha Reforming: Science and Technology , ed. G. J. Antos and A. M. Aitani , Marcel Dekker, Inc. , 2nd edn, 2004 , ch. 5, p. 144

3. A. M. Aitani , in Catalytic Naphtha Reforming: Science and Technology , ed. G. J. Antos and A. M. Aitani , Marcel Dekker, Inc. , 2nd edn, 2004 , ch. 13, p. 435

4. H. Topsoe , B. S.Clausen and F. E.Massoth , Hydrotreating Catalysis, Science and Technology , Springer , Berlin , 1996

5. Synthesis, Characterization and Catalytic Applications of Organized Mesoporous Aluminas

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