- Off. J. Eur. Commun., L350, 58, (1998). [Google Scholar]
- Chianelli, R.R.,Daage, M. and Ledoux, M.J. (1994) Fundamental Studies of Transition-Metal Sulfide Catalytic Materials. Adv. Catal., 40, 177-232. [Google Scholar]
- Norskov, J.K.,Clausen, B.S. and Topsoe, H. (1992) Understanding the Trends in the Hydrodesulfurization Activity of the Transition Metal Sulfides. Catal. Lett., 13, 1-8. [CrossRef] [Google Scholar]
- Toulhoat, H.,Raybaud, P.,Kasztelan, S.,Kresse, G. and Hafner, J. (1999) Transition Metals to Sulfur Binding Energies Relationship to Catalytic Activities in HDS: Back to Sabatier with First Principle Calculations. Catalysis Today, 50, 629-636. [Google Scholar]
- Hr, F. (1976) In: Structural Chemistry of Layered-Type Phases, Eds Levy. [Google Scholar]
- Gaborit, V.,Allali, N.,Danot, M.,Geantet, C.,Cattenot, M.,Breysse, M. and Diehl, F. (2003) Hydrotreating Properties of Mixed NbxMo1–xS2 alumina supported catalysts. Catalysis Today, 78, 499-505. [CrossRef] [Google Scholar]
- Thomazeau, C.,Geantet, C.,Lacroix, M.,Harlé, V.,Benazeth, S.,Marhic, C., and Danot, M. (2001) Two Cation Disulfide Layers in the WxMo(1-x)S2 Lamellar Solid Solution. J. Solid State Chem., 160, 147-155. [CrossRef] [Google Scholar]
- Breysse, M., Fréty, R., Lacroix, M. and Vrinat, M. (1984) Comparison of the Catalytic Properties in Hydrodesulfurization Reaction of Unsupported MoS2 and WS2 Catalysts: Influence of Surface Areas. React. Kinet. Catal. Lett., 26 (1-2), 97. [Google Scholar]
- Ramanathan, K. and Weller, S.W. (1985) Characterization of Tungsten Sulfide Catalysts. J. Catal., 95, 249-259. [CrossRef] [Google Scholar]
- Alonso, G., Valle, M.D., Cruz, J., Petranovskii, V., Licea-Claverie, A. and Fuentes, S. (1998) Preparation of MoS2 Catalysts by in situ Decomposition of Tetraalkylammonium Thiomolybdates. Catalysis Today, 43, 117-122. [CrossRef] [Google Scholar]
- Diemann, E. and Müller, A. (1973) Thio and Seleno Compounds of the Transition Metals with the d0 Configuration. Coord. Chem. Rev., 10, 79-122. [CrossRef] [Google Scholar]
- Charlot, G. (1958) In: L’analyse quantitative et les réactions en solution, Eds Masson; Carrier, X.,Thèse Université Paris VI (1998). [Google Scholar]
- Aberdam, D. (1998) SEDEM, a Software Package for EXAFS Data Extraction and Modelling. J. Synchrotron Rad., 5, 1287-1297. [CrossRef] [Google Scholar]
- Rehr, J.J.,Zabinsky, S.I. and Albers, R.C. (1992) High-Order Multiple-Scattering Calculations of X-Ray-Absorption Fine Structure. Phys. Rev. Letters, 69, 3397. [CrossRef] [PubMed] [Google Scholar]
- Shimada, H.,Matsubayashi, N.,Sato, T.,Yoshimura, Y.Imamura, M.,Kameoka, T. and Nishijima, A. (1993) EXAFS Study on the Dispersion of Molybdenum Sulfide Catalysts on Gamma-Al2O3. Catal. Lett., 20, 81. [CrossRef] [Google Scholar]
Numéro |
Oil & Gas Science and Technology - Rev. IFP
Volume 60, Numéro 5, September-October 2005
Dossier: Synchrotron and Neutron Solutions to Oil Industry Problems
|
|
---|---|---|
Page(s) | 781 - 790 | |
DOI | https://doi.org/10.2516/ogst:2005055 | |
Publié en ligne | 1 décembre 2006 |
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