1.

Record Nr.

UNINA9910455167003321

Titolo

Heterogeneous catalysis research progress [[electronic resource] /] / Mathias B. Gunther, editor

Pubbl/distr/stampa

New York, : Nova Science Publishers, c2008

ISBN

1-60876-332-3

Descrizione fisica

1 online resource (465 p.)

Altri autori (Persone)

GuntherMathias B

Disciplina

541/.395

Soggetti

Heterogeneous catalysis

Catalysis

Electronic books.

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Note generali

Description based upon print version of record.

Nota di bibliografia

Includes bibliographical references and index.

Nota di contenuto

""HETEROGENEOUS CATALYSIS RESEARCH PROGRESS""; ""NOTICE TO THE READER""; ""CONTENTS""; ""PREFACE""; ""APPLICATION OF PEROVSKITES FOR AUTOMOBILE EXHAUST PURIFICATION""; ""ABSTRACT""; ""1. BASIC CONCEPT OF PEROVSKITES""; ""2. PEROVSKITE SYNTHESIS""; ""2.1. Methods""; ""2.2. Physical Properties""; ""3. OXYGEN NONSTOICHIOMETRY""; ""3.1. O2-TPD Study""; ""3.2. H2-TPR Study""; ""3.3. XPS study""; ""3.4. Isotopic Exchange Experiments""; ""3.5. Redox Properties""; ""4. NO REDUCTION BY HCS IN THE PRESENCE OF OXYGEN OVER PEROVSKITES""; ""4.1. Adsorption of Reactant Molecules""

""4.2. Catalytic Performance""""4.3. Reaction Mechanism""; ""5. NO CATALYTIC REDUCTION BY CO OVER PEROVSKITES""; ""5.1. Adsorption of Reactant Molecules""; ""5.2. Catalytic Performance""; ""5.3. Reaction Mechanism""; ""VOCS COMBUSTION OVER PEROVSKITES""; ""7. DEACTIVATION OF DENOX PEROVSKITE CATALYSTS BY WATER VAPOR""; ""7.1. Effect of Steam on Reactants Adsorption over LaFe0.8Cu0.2O3""; ""7.2. Catalytic Performance""; ""8. SULFUR DIOXIDE POISONING OF PEROVSKITES""; ""8.1. SO2 Poisoning During C3H6 + NO + O2 Reaction""

""8.2. Resistance of LaCo1-xFexO3 To SO2 Poisoning During Methane Oxidation""""9. LEAN NO REDUCTION OVER THE PEROVSKITE-AG/ALUMINA COMBINED CATALYSTS""; ""9.1. Relationship between Redox Properties and Catalytic Behavior of Ag-Containing Perovskite



and Alumina""; ""9.2. Synergistic Effect of Perovskite and Alumina""; ""10. RECENT ADVANCES ON NO REDUCTION RELATED TO MIXED OXIDES, SUPPORTED METALS AND ION-EXCHANGE MESOPOROUS MATERIALS""; ""10.1. Ga-Based Mixed Perovskites""; ""10. 2. Alumina Supported Silver Catalysts""; ""10.3. Cu-MCM-41""; ""11. CONCLUSIONS""; ""REFERENCES""

""NEW SYNTHETIC METHODS TO EFFICIENT NANOPOROUS AND NANOSTRUCTURED CATALYSTS: SELF-ASSEMBLY AND CO-ASSEMBLY OF MULTIPLE SITE-ISOLATED CATALYTIC SITES ON MESOPOROUS MATERIALS""""ABSTRACT""; ""1. INTRODUCTION""; ""1.1. Mesoporous Silica""; ""1.2. Mesoporous SBA-15""; ""2. ORGANIC FUNCTIONALIZED MESOPOROUS MATERIALS AND SITE-ISOLATION OF FUNCTIONAL GROUPS""; ""2.1. Molecular Imprinting""; ""2.3. Spacer-Mediated Site-Isolation""; ""2.4. Solvent Assisted Site-Isolated Grafting (SASIG)""; ""3. NANOPARTICLES SUPPORTED IN MESOPOROUS MATERIALS AS HETEROGENEOUS CATALYSTS""; ""3.1. Introduction""

""3.2. Enhanced Catalytic Activity of Nanoparticles Supported on Mesoporous Materials""""3.3. Methods toward Synthesizing Nanoparticle/Mesoporous Materials Composites""; ""4. MESOPOROUS MATERIALS SUPPORTED ORGANOMETALLIC CATALYSTS""; ""4.1. Introduction""; ""4.2. Mesoporous Silica Supported Organometallic Catalysts by Co-Condensation""; ""4.3. Mesoporous Silica Supported Organometallic Catalysts by Grafting""; ""5. CONCLUSION AND FUTURE OUTLOOKS""; ""ACKNOWLEDGMENTS""; ""REFERENCES""; ""COBALT(III)-SUPPORTED CHEMICALLY MODIFIED MESOPOROUS SILICAS AS HETEROGENEOUS OXIDATION CATALYSTS""

""ABSTRACT""