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Table of contents
- Copyright Pageiv
- Contentsv
- Contributorsxiii
- Prefacexv
- Robert L. Burwell, Jr. (1912–2003)xix
- Chapter 1. Active Sites and Reactive Intermediates in Titanium Silicate Molecular Sieves1
- I. Introduction5
- II. Active Sites9
- III. Oxo-Titanium Species and Reactive Intermediates33
- IV. Computational Investigations49
- V. Catalytic Properties55
- VI. Structure-Activity Correlations127
- VII. O–O Bond Cleavage and Product Selectivity137
- VIII. Conclusions and Outlook140
- Acknowledgements142
- Appendix A. Fingerprint Features for Ti Isomorphous Substitution in TS-1 Titanosilicates142
- Appendix B. Characteristics of the Oxo-Titanium Species Generated on TS-1 on Contact with Aqueous H2143
- Appendix C. Synthesis of Titanium Silicate Molecular Sieves143
- References159
- Chapter 2. Electron Microscopy and the Materials Chemistry of Solid Catalysts171
- I. Introduction174
- II. Electron Microscopy (EM) Methods176
- III. High-Resolution Transmission Electron Microscopy181
- IV. Chemical Composition Analysis with the Analytical Electron Microscope191
- V. Scanning Transmission Electron Microscopy193
- VI. Recent Advances in Ultra-High Resolution, Low-Voltage Field Emission Scanning Electron Microscop195
- VII. Cathodoluminescence Imaging for Elucidation of Electronic Structures of Catalysts195
- VIII. Recent Advances in In Situ Atomic Resolution-Environmental Transmission Electron Microscopy (E196
- IX. Environmental Scanning Electron Microscopy212
- X. Electron Tomography: Three-Dimensional Electron Microscopy Imaging212
- XI. Energy Filtered Transmission Electron Microscopy and Elemental Maps of Solid Catalysts Using EFT218
- XII. Other Significant Trends220
- XIII. Critical Evaluations of the Methods and Challenges220
- XIV. Conclusions223
- Acknowledgements224
- References224
- Chapter 3. Chemistry and Technology of Isobutane/Alkene Alkylation Catalyzed by Liquid and Solid Aci229
- I. Introduction230
- II. Alkylation Mechanism234
- III. Physical–Chemical Phenomena Influencing the Reaction252
- IV. Industrial Processes and Process Developments278
- V. Conclusions289
- References289
- Chapter 4. Catalytic Conversion of Methane to Synthesis Gas by Partial Oxidation and CO2 Reforming297
- I. Introduction298
- II. Partial Oxidation of Methane301
- III. CO2 Reforming of Methane321
- IV. Conclusions337
- References338
- Index347
- Vendor Elsevier S & T
- SKU 9780120078486
- ISBN-13 9780080490243
- Author Gates, Bruce C.
- Category Technology & Engineering
- Subject Chemical & Biochemical
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Advances in Catalysis, Volume 48, includes a description of a new and increasingly well understood class of catalysts (titanosilicates), a review of transmission electron microscopy and related methods applied to catalyst characterization, and summaries of the chemistry and processes of isobutane-alkene alkylation and partial oxidation and CO2 reforming of methane to synthesis gas.
· Provides a comprehensive review of all aspects of catalytic research
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