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Advanced Catalysts and Nanostructured Materials : Modern Synthetic Methods.

The time has come for an assessment of the most important techniques for the fabrication of advanced catalysts. Catalyst production alone is more than a billion dollar business each year, and the product value of chemical processes using advanced catalysts is a few trillion dollars annually. This bo...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Moser, William R.
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Burlington : Elsevier, 1996.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Front Cover
  • Advanced Catalysts and Nanostructured Materials: Modern Synthetic Methods
  • Copyright Page
  • Contents
  • Contributors
  • Preface
  • Chapter 1. Designed Synthesis of Mesoporous Molecular Sieve Systems Using Surfactant-Directing Agents
  • 1.1 Introduction
  • 1.2 Experimental
  • 1.3 Results and Discussion
  • 1.4 Conclusions
  • References
  • Chapter 2. The Role of Prehydrolysis in the Preparation of Zirconia-Silica Aerogels
  • 2.1 Introduction
  • 2.2 Methods
  • 2.3 Results and Discussion
  • 2.4 Conclusions
  • References.
  • Chapter 3. The Chemistry of Preparation of VOP Mixed Oxides
  • 3.1 Introduction
  • 3.2 Literature Survey
  • 3.3 Results and Discussion
  • 3.4 Conclusions
  • References
  • Chapter 4. Gel-Supported Precipitation: An Advanced Method for the Synthesis of Pure Mixed-Oxide Spheres for Catalytic Applications
  • 4.1 Introduction
  • 4.2 Brief Survey of the Industrial Preparation Methods of Oxide Carriers for Catalytic Applications
  • 4.3 Gel-Supported Precipitation (GSP) Method
  • 4.4 Properties of Oxides Prepared by the GSP Method
  • 4.5 Experimental and Apparatus Section
  • 4.6 Conclusions
  • References.
  • Chapter 5. Platinum-Catalyzed Sulfur Dioxide Oxidation Revisited
  • 5.1 Introduction
  • 5.2 Literature Survey
  • 5.3 Experimental Section
  • 5.4 Results and Discussion
  • 5.5 Conclusions
  • References
  • Chapter 6A. Applications of Supercritical Drying in Catalyst Preparation
  • 6A.1 Introduction
  • 6A.2 Results
  • 6A.3 Conclusions
  • References
  • Chapter 6B. Aerogel Synthesis as an Improved Method for the Preparation of Platinum-Promoted Zirconia-Sulfate Catalysts
  • 6B.1 Introduction
  • 6B.2 Scope and Applications
  • 6B.3 Synthesis
  • 6B.4 Analytical Properties
  • 6B.5 Structure.
  • 6B.6 Nature of the Active Sites
  • 6B.7 Catalytic Activity
  • 6B.8 Conclusions
  • References
  • Chapter 7. Surfactant-Stabilized Nanosized Colloidal Metals and Alloys as Catalyst Precursors
  • 7.1 Introduction
  • 7.2 Survey and Key to the Literature
  • 7.3 Results and Discussion
  • 7.4 Nanometal Powders from Organosols
  • 7.5 Colloidal Alloyed Metals
  • 7.6 Catalytic Applications
  • 7.7 Experimental
  • References
  • Chapter 8. Sonochemical Preparation of Nanostructured Catalysts
  • 8.1 Introduction
  • 8.2 Literature Survey
  • 8.3 Results and Discussion
  • 8.4 Experimental Details.
  • 8.5 Conclusions
  • References
  • Chapter 9. Preparation and Characterization of Polymer-Stabilized Rhodium Particles
  • 9.1 Introduction
  • 9.2 Experimental
  • 9.3 Results
  • 9.4 Discussion
  • 9.5 Conclusions
  • References
  • Chapter 10. Gas-Phase Synthesis of Nonstoichiometric Nanocrystalline Catalysts
  • 10.1 Introduction
  • 10.2 Gas-Phase Synthesis of Nanocrystalline Materials
  • 10.3 Nonstoichiometric Nanocrystalline Oxides for Catalytic Oxidation
  • 10.4 Summary
  • References
  • Chapter 11. A Flow-Through Hydrothermal Method for the Synthesis of Active Nanocrystalline Catalysts.