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  • 1
    UID:
    almahu_9949697967202882
    Format: 1 online resource (594 p.)
    ISBN: 1-281-03425-8 , 9786611034252 , 0-08-053435-X
    Series Statement: Studies in surface science and catalysis ; vol. 106
    Content: The symposium on Hydrotreatment and Hydrocracking of Oil Fractions aims to provide a global perspective and an inspection of the state-of-the-art of these processes. New American, European and Japanese environmental regulations call for advanced hydrotreatment processes for HDS and HDN for the removal of S- and Ni-components from oil fractions. These will alter the product slate of the oil refineries and the hydrocarbon composition of these products. Hydrocracking will play an important part in this shift. Adapting the operating conditions will not suffice to reach the desired product specif
    Note: Description based upon print version of record. , Cover; CONTENTS; Introduction; PART I: KEY NOTE LECTURES; Chapter 1. Processes and catalysts for hydrocracking of heavy oil and residues; Chapter 2. An improved process for the production of environmentally friendly diesel fuels; Chapter 3. Hydroprocessing to produce reformulated gasolines - the ISAL' process; Chapter 4. Molecules, catalysts and reactors in the hydro-processing of oil fractions; Chapter 5. Simultaneous HDN/HDS of model compounds over Ni-Mo sulfide catalysts , Chapter 6. Kinetics of the catalytic removal of the sulphur components from the light cycle oil of a catalytic cracking unitChapter 7. A review of catalytic hydrotreating processes for the upgrading of liquids produced by flash pyrolysis; Chapter 8. Dual-functional Ni-Mo sulfide catalysts on zeolite-alumina supports for hydrotreating and hydrocracking of heavy oils; PART II: ORAL COMMUNICATIONS; CATALYTIC ASPECTS; Chapter 9. Hydrodracking of C10 hydrocarbons over a sulfided NiMo/Y zeolite catalyst; Chapter 10. Novel hydrotreating catalysts based on synthetic clay minerals , Chapter 11. Influence of the location of the metal sulfide in NiMo/HY hydrocracking catalystsChapter 12. Acidity induced by H2S adsorption on unpromoted and promoted sulfided catalysts; Chapter 13. Organo metallic siloxanes as an active component of hydrotreatment catalysts; Chapter 14. Alumina supported HDS catalysts prepared by impregnation with new heteropoli-compounds; Chapter 15. Genesis, characterizations and HDS activity of Mo-P-alumina based hydrotreating catalysts prepared by a sol-gel method , Chapter 16. Effects of ethylenediamine on the preparation of HDS catalysts : comparison between Ni-Mo and Co-Mo based solidsChapter 17. Creation of acidic sites by hydrogen spillover in model hydrocracking systems; Chapter 18. Application of ASA supported noble metal catalysts in the deep hydrodesulphurisation of diesel fuel; Chapter 19. Reactor runaway in pyrolysis gasoline hydrogenation; Chapter 20. Surface property of alumina-supported Mo carbide and its activity for HDN; Chapter 21. The design of base metal catalysts for hydrotreating reactions , temperature programmed sulphidation of NiW/Al2O3 catalysts and their activity in the hydrodesulphurisation of thiophene and dibenzothiopheneTHEORY AND CATALYTIC DEACTIVATION; Chapter 22. Surface science models of CoMoS hydrodesulfurization catalysts; Chapter 23. Molecular mechanics modelling of the interactions between MoS2 layers and alumina or silica support; Chapter 24. In-situ FT-IR study of NO adsorbed on Co-Mo/Al2O3 sulfided at high pressure (〈 5.1 MPa); Chapter 25. Compound formation and hydrogen activity at sulfided catalysts : a combined surface science and quantum chemical approach , Chapter 26. Deactivation studies on NiO-MoO3/Al2O3 and CoO-MoO3/Al2O3 hydrodesulphurization catalysts , English
    Additional Edition: ISBN 0-444-82556-8
    Language: English
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