Poisoning and promotion in catalysis based on surface science concepts and experiments
by
Kiskinova, M. P. (Maya Petrova), 1949-
Title
:
Poisoning and promotion in catalysis based on surface science concepts and experiments
Author
:
Kiskinova, M. P. (Maya Petrova), 1949-
ISBN
:
9780444869470
9780080887401
9781281790385
9786611790387
Personal Author
:
Kiskinova, M. P. (Maya Petrova), 1949-
Publication Information
:
Amsterdam ; New York : Elsevier, 1992.
Physical Description
:
1 online resource (xi, 345 pages) : illustrations.
Series
:
Studies in surface science and catalysis ; 70
Studies in surface science and catalysis ; 70.
Contents
:
Front Cover; Poisoning and Promotion in Catalysis Based on Surface Science Concepts And Experiments; Copyright Page; CONTENTS; PREFACE; CHAPTER 1. INTRODUCTION; CHAPTER 2. SURFACE SCIENCE METHODS; 2.1. DYNAMICAL METHODS; 2.2. STATIC METHODS; References; CHAPTER 3. EXPERIMENTAL APPROACH; References; CHAPTER 4. INTERACTION OF ATOMIC ADSORBATES, ACTING AS PROMOTERS OR POISONS, WITH SINGLE CRYSTAL SURFACES; 4.1. ELECTROPOSITIVE ADDITIVES: ALKALI METALS; 4.2. ELECTRONEGATIVE ADDITIVES; References; CHAPTER 5. ADSORPTION OF GASES ON SURFACES MODIFIED BY ELECTRONEGATIVE ADDITIVES
5.1. CARBON MONOXIDE5.2. NITRIC OXIDE; 5.3. NITROGEN AND OXYGEN; 5.4. HYDROGEN; 5.5. WATER; 5.6. ORGANIC COMPOUNDS; 5.7. CONCLUSIVE REMARKS: THE POISONING EFFECT DESCRIBED WITHIN THE FRAMEWORK OF THE POSSIBLE INTERACTIONS IN THE COADSORBED LAYER; References; CHAPTER 6. ADSORPTION OF GASES ON SURFACES MODIFIED BY ALKALI METALS; 6.1. CARBON MONOXIDE; 6.2. CARBON DIOXIDE; 6.3. NITRIC OXIDE; 6.4. OXYGEN; 6.5. WATER; 6.6. HYDROGEN; 6.7. NITROGEN; 6.8. ORGANIC COMPOUNDS; 6.9. AMMONIA; 6.10. ALKALI MODIFICATION EFFECTS AND FACTORS DETERMINING THE TYPE OF THE INTERACTIONS IN THE MIXED LAYERS
8.7. CONCLUSIVE REMARKS: CORRELATIONS BETWEEN THE ADSORPTIVE AND THE CATALYTIC ACTIVITY AND SELECTIVITYReferences; INDEX; STUDIES IN SURFACE SCIENCE AND CATALYSIS
Abstract
:
The topics covered in this book include a variety of adsorption and model reaction studies on clean and modified single crystal metal surfaces obtained by means of properly selected surface sensitive techniques. The accent is on the revelation of the physics and chemistry involved in the effects of various modifiers on the adsorptive and reactivity properties of the surface with respect to different reactants. In this book current information that contributes to the fundamental understanding of the effect of additives is summarized. Some of the additives act as promoters, others as poisons, in a number of important catalytic reactions. A description of single- and double-component systems has been obtained by using surface-sensitive techniques, particularly suited for this purpose. For the benefit of the reader, a short summary of the main surface science techniques has been given in Chapter 2. Three general and interrelated topics are reviewed. The first concerns the interaction of electronegative (Cl, S, Se, C, N, O, P) and electropositive (alkali metals) atoms with metal surfaces (Chapter 4). The second topic covers the chemisorptive properties of metal surfaces modified by varying amounts of additives with respect to different reactants (CO, NO, N₂, O₂, H₂, CO₂, NH₃, H₂O and hydrocarbons) (Chapters 5 and 6). In particular the adsorption kinetics and energetics, and the electronic, structural and reactive properties of the coadsorbate systems are considered, whereby particular attention is given to recent surface science studies with well-characterized, single crystal, metal surfaces. In these chapters, special attention is paid to showing the contribution of different factors (the nature and adsorption state of the modifier and the coadsorbed molecule, the structure of the adsorbed layer, the type of interactions in the mixed overlayers, etc.) to the modifier effects. In the discussion of the third topic, model studies of several important catalytic reactions (Fischer-Tropsch synthesis, ammonia synthesis, CO oxidation, water-gas shift synthesis) on modified metal surfaces (Chapter 8) are considered. The book will be particularly useful to scientists who are interested in adsorption phenomena, surface properties and catalysis. It should also prove invaluable to those addressing the questions of condensed matter (surfaces and interfaces), materials science (e.g. corrosion of metals) and electrochemistry.
Subject Term
:
Catalysis.
Surface chemistry.
SCIENCE -- Chemistry -- Physical & Theoretical.
Catalysis. (OCoLC)fst00848867
Surface chemistry. (OCoLC)fst01139210
Genre
:
Electronic books.
Electronic Access
:
| Shelf Number | Item Barcode | Shelf Location | Shelf Location | Holding Information |
|---|
| QD505 .K57 1992 EB | 1191727-1001 | Elsevier E-Book Collections | Elsevier E-Book Collections | |