Heterogeneous catalysis of mixed oxides : perovskite and heteropoly catalysts

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Auteur principal: Misono, Makoto. (Auteur)
Support: E-Book
Langue: Anglais
Publié: San Diego, CA : Elsevier Science & Technology Books, [2013?].
Collection: Studies in Surface Science and Catalysis
Sujets:
Autres localisations: Voir dans le Sudoc
Résumé: Mixed oxides are the most widely used catalyst materials for industrial catalytic processes. The principal objective of this book is to describe systematically the mixed oxide catalysts, from their fundamentals through their practical applications. After describing concisely general items concerning mixed oxide and mixed oxide catalysts, two important mixed oxide catalyst materials, namely, heteropolyacids and perovskites, are taken as typical examples and discussed in detail. These two materials have several advantages: 1. They are, respectively, typical examples of salts of oxoa
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Lien: Autre support: Heterogeneous catalysis of mixed oxides : perovskite and heteropoly catalysts / Makoto Misono, ...
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245 1 0 |a Heterogeneous catalysis of mixed oxides :  |b perovskite and heteropoly catalysts   |c Makoto Misono, .... 
256 |a Données textuelles. 
264 1 |a San Diego, CA :  |b Elsevier Science & Technology Books,  |c [2013?]. 
336 |b txt  |2 rdacontent 
337 |b c  |2 rdamedia 
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490 1 |a Studies in Surface Science and Catalysis 
500 |a 2.4.3. Roles of Catalyst Supports. 
500 |a Titre provenant de la page de titre du document numérique. 
500 |a Numérisation de l'édition de San Diego, CA : Elsevier Science & Technology Books, 2013. 
500 |a La pagination de l'édition imprimée correspondante est de 191 p. 
504 |a Bibliographie en fin de chapitre. Index. 
506 |a L'accès complet à la ressource est réservé aux usagers des établissements qui en ont fait l'acquisition 
516 |a Fichier PDF. 
520 |a Mixed oxides are the most widely used catalyst materials for industrial catalytic processes. The principal objective of this book is to describe systematically the mixed oxide catalysts, from their fundamentals through their practical applications. After describing concisely general items concerning mixed oxide and mixed oxide catalysts, two important mixed oxide catalyst materials, namely, heteropolyacids and perovskites, are taken as typical examples and discussed in detail. These two materials have several advantages: 1. They are, respectively, typical examples of salts of oxoa 
538 |a Nécessite un lecteur de fichier PDF. 
559 2 |p P. 1  |b Chapter 1 - Basis of Heterogeneous Catalysis  |p P. 25  |b Chapter 2 - Chemistry and Catalysis of Mixed Oxides  |p P. 67  |b Chapter 3 - Catalysis of Perovskite and Related Mixed Oxides  |p P. 97  |b Chapter 4 - Catalysis of Heteropoly Compounds (Polyoxometalates)  |p P. 157  |b Chapter 5 - Mixed Oxides as Catalyst Supports 
559 1 |b 1.2. Rate of Catalytic Reaction and Reaction Mechanism1.2.1. Reaction Rate; 1.2.2. Adsorption on Solid Surface; Rate and Isotherm; 1.2.3. Rate Equation of Catalytic Reaction; 1.2.3.1. Reaction of A+BC; L-H and E-R Mechanisms; 1.2.3.2. Other Mechanisms; 1.2.4. Reactor Type and Rate Expression; 1.2.5. Elucidation of Reaction Mechanism; 1.2.5.1. Rate Equation and Stoichiometry of Reaction; 1.2.5.2. Uses of Isotopes; 1.2.5.3. Direct Spectroscopic Observation of Reaction Intermediates Adsorbed on Catalyst; 1.2.5.4. Linear Free Energy Relationship (LFER); 1.2.5.5. Stereochemistry of Reaction 
559 1 |b 1.2.5.6. Measurement of Rates of Reduction and Reoxidation of Catalyst1.2.6. Mass and Heat Transfer; 1.2.6.1. Effectiveness Factor; 1.2.6.2. Temperature Control; 1.2.7. Deactivation of Catalyst; 1.2.8. Comparison of Heterogeneous, Homogeneous and Biocatalysis; 1.3. Catalyst Design; 1.4. Preparation and Characterization of Catalysts; References; Chapter 2: Chemistry and Catalysis of Mixed Oxides; 2.1. Chemistry of Binary Oxides; 2.1.1. Structure of Binary Oxides (or Single Metal Oxides); 2.1.2. Lattice Defects and Nonstoichiometry (Berthollide Compounds) 
559 1 |b 2.1.3. Surface Structure of Single Metal Oxides2.1.4. Chemical Properties of Single Metal Oxides; 2.1.4.1. Acidity and Basicity; 2.1.4.2. Redox Properties; 2.1.5. Catalysis of Single Metal Oxides; 2.1.5.1. Acid-Base Catalysis; 2.1.5.2. Catalytic Oxidation and Hydrogenation-Dehydrogenation; 2.2. Chemistry of Mixed Oxides; 2.2.1. Structure of Mixed Oxides; 2.2.1.1. Crystal Structure of Mixed Oxides; 2.2.1.2. Surface Structure of Mixed Oxides; 2.2.2. Valence and Defects in Mixed Oxides; 2.2.3. Acidity and Basicity; 2.2.4. Redox Properties; 2.2.5. Mixed Oxides for Supports 
559 1 |b 2.3. Catalysis of Mixed Oxides2.3.1. Acid and Base Catalysis; 2.3.2. Oxidation Catalysis; 2.3.2.1. Complete Oxidation; 2.3.2.2. Selective Oxidation; 2.3.3. Hydrogenation, Dehydrogenation, and Metathesis; 2.4. Synergistic Effects in Mixed Oxide Catalysis; 2.4.1. Combination of Acid and Base Catalysis; 2.4.1.1. Concerted Action of Acid-Base Pair Sites; 2.4.1.2. Acidic and Basic Sites Functioning in Different Reaction Steps of Catalysis; 2.4.2. Combination of Dual Functions in Selective Oxidation; 2.4.2.1. Hydrogen Abstraction and Oxygen Addition Sites; 2.4.2.2. Acid and Oxidation Sites 
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