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Catalyst deactivation 1997 proceedings of the international symposium, Cancun, Mexico, October 5-8, 1997 / editors, C.H. Bartholomew, G.A. Fuentes.

Bartholomew, Calvin H. 
Fuentes, G. A. (Gustavo A.)
ISBN 008052866X
Amsterdam [The Netherlands] ; Elsevier, 1997
1997
Engelska 1 online resource (711 p.)
Serie: Studies in surface science and catalysis ; 111
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Innehållsförteckning Abstract Ämnesord
Stäng  
  • Cover; CONTENTS; Preface; Part I: Review Articles (Plenary and Award Lectures); Chapter 1. Roles of Acidity and Pore Structure in the Deactivation of Zeolites by Carbonaceous Deposits (Plenary lecture); Chapter 2. Impact of Sulfur on Three-Way Automotive Catalyst Performance and Catalyst Diagnostics (Plenary lecture); Chapter 3. Solid State Reactions in Catalysts: An Approach to Real Active Systems and their Deactivation (Founders award lecture); Chapter 4. Coke Formation in Catalytic Processes: Kinetics and Catalyst Deactivation (Founders award lecture). 
  • Chapter 5. Catalyst Deactivation: How We Cannot Yet Subvert Nature (Maxted award lecture)Chapter 6. Catalyst Deactivation: Opportunity amidst Woe (Maxted award lecture); Part II: Topical Articles (Oral and Poster Presentations) Carbon Deposition and Coking; Chapter 7. The Relationship Between Metal Particle Morphology and the Structural Characteristics of Carbon Deposits; Chapter 8. Self-Poisoning and Aging of Pd-Ag/AI2O3 in Semi-Hydrogenation of 1,3- Butadiene: Effects of Surface Inhomogeneity Caused by Hydrocarbonaceous Deposits. 
  • Chapter 9. Influence of the Support on the Deactivation of Nickel Zeolite Catalysts During the Conversion of PhenylacetyleneChapter 10. Activation and Deactivation of the Zeolite Ferrierite for Olefin Conversions; Chapter 11. Deactivation of Ferrierite during the 1-Butene Skeletal Isomerization; Chapter 12. Alcohol Dehydration Reactions as Chemical Precursors for Coke Formation and Acidity Probes in Tungstated Zirconia Catalysts; Chapter 13. Determination of Coke Deposition on Metal Active Sites of Propane Dehydrogenation Catalysts; Part III: Chemicals. 
  • Chapter 14. The Role of Coke Deposition in the Conversion of Methanol to Olefins over SAPO-34Chapter 15. Deactivation and Regeneration of Alkane Dehydrogenation Catalysts; Chapter 16. A Novel Mechanism of Catalyst Deactivation in Liquid Phase Synthesis Gas-to DME Reactions; Chapter 17. Activity, Selectivity and Coking of Bimetallic Ni-Co-Spinel Catalysts in Selective Hydrogenation Reactions.; Chapter 18. Stability and Regeneration of Supported PtSn Catalysts for Propane Dehydrogenation; Chapter 19. Deactivation and Shape Selectivity Effects in Toluene Nitration over Zeolite Catalysts. 
  • Chapter 20. Regeneration of VPMeO Catalysts for n-Butane Oxidation by Means of Mechanochemical and Barothermal TreatmentsPart IV: Environmental; Chapter 21. Sulfur Tolerance of Cu- and H-Mordenite Zeolite Catalysts for the Reduction of NO by Hydrocarbons; Chapter 22. Deactivation of Cu-ZSM-5 during Selective Catalytic Reduction of NO by Propane under Wet Conditions; Chapter 23. H-Mordenite Deactivation during the SCR of NOx. Adsorption and Diffusion of Probe Molecules on Fresh and Deactivated Catalysts. 
  • Chapter 24. Deactivation of Pt/Alumina Catalysts for the Hydrodechlorination of 1,1,1- Trichloroethane. 
  • Catalyst Deactivation 1997 focused on 9 key topical areas: carbon deposition and coke formation, chemicals, environmental catalysis, modeling, petroleum processing, poisoning, syngas conversion, techniques, and thermal degradation. All of these areas were well represented at the meeting; moreover, several review articles were presented that provide perspectives on new research and development thrusts. The proceedings of the meeting are organized with six review and award articles at the front of the volume followed by topical articles a keynote, 5-6 oral, and 2-3 poster papers. A li

Ämnesord

Catalysts.  (LCSH)
Catalyst poisoning  -- Congresses. (LCSH)

Publikations- och innehållstyp

660.2995 (DDC)
Pm (kssb/8 (machine generated))

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