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Heterogeneous Catalysis for Sustainable Energy


Heterogeneous Catalysis for Sustainable Energy


1. Aufl.

von: Landong Li, Justin S. J. Hargreaves

160,99 €

Verlag: Wiley-VCH
Format: EPUB
Veröffentl.: 03.05.2022
ISBN/EAN: 9783527815913
Sprache: englisch
Anzahl Seiten: 592

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Beschreibungen

<b>Heterogeneous Catalysis for Sustainable Energy</b> <p><b>Explore the state-of-the-art in heterogeneous catalysis</b> <p>In<i> Heterogeneous Catalysis for Sustainable Energy,</i> a team of distinguished researchers delivers a comprehensive and cutting-edge treatment of recent advancements in energy-related catalytic reactions and processes in the field of heterogeneous catalysis. The book includes extensive coverage of the hydrogen economy, methane activation, methanol-to-hydrocarbons, carbon dioxide conversion, and biomass conversion. <p>The authors explore different aspects of the technology, like reaction mechanisms, catalyst synthesis, and the commercial status of the reactions. The book also includes: <ul><li>A thorough introduction to the hydrogen economy, including hydrogen production, the reforming of oxygen-containing chemicals, and advances in Fischer-Tropsch Synthesis</li> <li>Comprehensive explorations of methane activation, including steam and dry reforming of methane and methane activation over zeolite catalysts</li> <li>Practical discussions of alkane activation, including cracking of hydrocarbons to light olefins and catalytic dehydrogenation of light alkanes</li> <li>In-depth examinations of zeolite catalysis and carbon dioxide as C1 building block</li></ul> <p>Perfect for catalytic, physical, and surface chemists, <i>Heterogeneous Catalysis for Sustainable Energy </i>also belongs in the libraries of materials scientists with an interest in energy-related reactions and processes in the field of heterogeneous catalysis.
PART I: INTRODUCTION<br> Chapter 1 Heterogeneous Catalysis in Face of Energy Challenges <br> <br> PART II: HYDROGEN ECONOMY<br> Chapter 2 Water-gas Shift Reaction<br> Chapter 3 Reforming of Oxygenates<br> Chapter 4 The Fischer-Tropsch Synthesis<br> Chapter 5 Ammonia Synthesis<br> <br> PART III: METHANE ACTIVATION<br> Chapter 6 Steam and Dry Reforming of Methane<br> Chapter 7 Oxidative Coupling and Dehydroaromatisation<br> Chapter 8 Selective Oxidation to C1 Oxygenates<br> Chapter 9 Halogenation and Oxy-halogenation<br> <br> PART IV: ALKANE ACTIVATION<br> Chapter 10 Catalytic Cracking over Solid Acids<br> Chapter 11 Catalytic Dehydrogenation of Light Alkanes <br> Chapter 12 Selective Oxidation to Oxygenates<br> <br> PART V: METHANOL-TO-HYDROCARBONS<br> Chapter 13 Zeolite Catalysts and Their Behaviors<br> Chapter 14 Reaction and Deactivation Mechanism<br> Chapter 15 Insights from Theoretical Calculations<br> Chapter 16 Commercial Status and Economics<br> <br> PART VI: CARBON DIOXIDE AS C1 BUILDING BLOCK<br> Chapter 17 Overview on CO2 mission and Utilization<br> Chapter 18 Chemical Fixation into Carbonates<br> Chapter 19 Reduction to Methanol<br> <br> PART VII: BIOMASS CONVERSION<br> Chapter 20 Catalytic Conversion of Triglycerides<br> Chapter 21 Catalytic Conversion of Glycerol<br> Chapter 22 Conversion of Carbohydrates and Their Derivatives<br> Chapter 23 Nitrogen Containing Platform Molecules to Chemicals<br> <br> PART VIII: PROSPECT <br> Chapter 24 Summary and Outlook
<p><b><i>Landong Li, PhD,</b> is Professor in the School of Materials Science and Engineering at Nankai University in China. His research is focused on heterogeneous catalysis with an emphasis on energy and environmental applications. </i> <p><B><i>Justin S. J. Hargreaves, PhD,</B> is Professor in the School of Chemistry at the University of Glasgow, UK. His current research interests include N<sub>2</sub> activation, metal oxide, carbide, nitride, phosphide and boride catalysts, zeolite catalysis, alkane activation and the application of large scale wastes as resources for the preparation of catalytic materials.</i>
<p><b>Explore the state-of-the-art in heterogeneous catalysis</b> <p>In<i> Heterogeneous Catalysis for Sustainable Energy,</i> a team of distinguished researchers delivers a comprehensive and cutting-edge treatment of recent advancements in energy-related catalytic reactions and processes in the field of heterogeneous catalysis. The book includes extensive coverage of the hydrogen economy, methane activation, methanol-to-hydrocarbons, carbon dioxide conversion, and biomass conversion. <p>The authors explore different aspects of the technology, like reaction mechanisms, catalyst synthesis, and the commercial status of the reactions. The book also includes: <ul><li>A thorough introduction to the hydrogen economy, including hydrogen production, the reforming of oxygen-containing chemicals, and advances in Fischer-Tropsch Synthesis</li> <li>Comprehensive explorations of methane activation, including steam and dry reforming of methane and methane activation over zeolite catalysts</li> <li>Practical discussions of alkane activation, including cracking of hydrocarbons to light olefins and catalytic dehydrogenation of light alkanes</li> <li>In-depth examinations of zeolite catalysis and carbon dioxide as C1 building block</li></ul> <p>Perfect for catalytic, physical, and surface chemists, <i>Heterogeneous Catalysis for Sustainable Energy </i>also belongs in the libraries of materials scientists with an interest in energy-related reactions and processes in the field of heterogeneous catalysis.

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