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[×ÊÔ´] Homogeneous Catalysis - Mechanisms and Industrial Applications

Homogeneous Catalysis - Mechanisms and Industrial Applications
Sumith Bhaduri & Doble Mukesh
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Homogeneous Catalysis: Mechanisms and Industrial Applications
ISBN: 0471372218
Author: Sumit Bhaduri / Doble Mukesh
Publisher: Wiley-Interscience
Edition: 1 edition (February 25, 2000)
Hardcover: 256 pages
URL: /http://www.amazon.com/exec/obidos/redirect?tag=songstech-20&path=ASIN%2F0471372218
Summary:
Homogeneous catalysis made easy through real-world examples and illustrations.

The field of homogeneous catalysis has grown dramatically over the past decade, boasting

many new applications in the chemical, fine chemical, and pharmaceutical industries. This

timely work offers a unified, easy-to-understand treatment of this challenging area of

chemistry. With a practical emphasis and a thorough, selective survey of current

literature, the authors present homogeneous catalytic reactions proven successful in

industrial applications-illustrating both the mechanistic principles and illuminating new

areas of academic and industrial research. An ideal self-study guide for inorganic

chemists seeking to gain entry into the field as well as a much-needed reference for

industry professionals, Homogeneous Catalysis: Mechanisms and Industrial Applications

features:
  • Clear discussions of the fundamental chemical and chemical engineering concepts

    relevant to homogeneous catalysis.
  • Important examples from selected industrial

    processes.
  • Extensive references to cutting-edge research with application potential

    (through March of 1999).
  • Many tables and more than 100 illustrations to help explain

    difficult concepts.
  • Problems of variable complexities accompanying each chapter.

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    2006Wiley Industrial Catalysis: A Practical Approac

    SBN: 3527311440
    Title: Industrial Catalysis: A Practical Approach
    Author: Jens Hagen
    Publisher: John Wiley & Sons
    Publication Date: 2006-03-03
    Number Of Pages: 526
    1 Introduction.

    1.1 The Phenomenon Catalysis.

    1.2 Mode of Action of Catalysts.

    1.3 Classification of Catalysts.

    1.4 Comparison of Homogeneous and Heterogeneous Catalysis.

    2 Homogeneous Catalysis with Transition Metal Catalysts.

    2.1 Key Reactions in Homogeneous Catalysis.

    2.2 Catalyst Concepts in Homogeneous Catalysis.

    2.3 Characterization of Homogeneous Catalysts.

    3 Homogeneously Catalyzed Industrial Processes.

    3.1 Overview.

    3.2 Examples of Industrial Processes.

    3.3 Asymmetric Catalysis.

    4 Biocatalysis.

    4.1 Introduction.

    4.2 Kinetics of Enzyme-catalyzed Reactions.

    4.3 Industrial Processes with Biocatalysts.

    5 Heterogeneous Catalysis: Fundamentals.

    5.1 Individual Steps in Heterogeneous Catalysis.

    5.2 Kinetics and Mechanisms of Heterogeneously Catalyzed Reactions.

    5.3 Catalyst Concepts in Heterogeneous Catalysis.

    5.4 Catalyst Performance.

    5.5 Catalyst Deactivation and Regeneration.

    5.6 Characterization of Heterogeneous Catalysts.

    6 Catalyst Shapes and Production of Heterogeneous Catalysts.

    6.1 Catalyst Production.

    6.2 Immobilization of Homogeneous Catalysts.

    7 Shape-Selective Catalysis: Zeolites.

    7.1 Composition and Structure of Zeolites.

    7.2 Production of Zeolites.

    7.3 Catalytic Properties of the Zeolites.

    7.4 Isomorphic Substitution of Zeolites.

    7.5 Metal-Doped Zeolites.

    7.6 Applications of Zeolites.

    8 Heterogeneously Catalyzed Processes in Industry.

    8.1 Overview.

    8.2 Examples of Industrial Processes ¨C Bulk Chemicals.

    8.3 Fine Chemicals Manufacture.

    9 Electrocatalysis.

    9.1 Comparison Between Electrocatalysis and Heterogeneous Catalysis.

    9.2 Electrochemical Reactions and Electrode Kinetics.

    9.3 Electrocatalytic Processes.

    9.4 Electrocatalysis in Fuel Cells.

    10 Environmental Catalysis and Green Chemistry.

    10.1 Automotive Exhaust Catalysis.

    10.2 NOx Removal Systems.

    10.3 Catalytic Afterburning.

    10.4 Green Chemistry and Catalysis.

    11 Photocatalysis.

    11.1 Basic Principles.

    11.2 Photoreduction and Oxidation of Water.

    11.3 Photocleavage of Water.

    11.4 Other Reactions.

    12 Phase-Transfer Catalysis.

    12.1 Definition.

    12.2 Catalysts for PTC.

    12.3 Mechanism and Benefits of PTC.

    12.4 PTC Reactions.

    12.5 Selected Industrial Processes with PTC.

    13 Planning, Development, and Testing of Catalysts.

    13.1 Stages of Catalyst Development.

    13.2 An Example of Catalyst Planning: Conversion of Olefins to Aromatics.

    13.3 Selection and Testing of Catalysts in Practice.

    14 Catalysis Reactors.

    14.1 Two-Phase Reactors.

    14.2 Three-Phase Reactors.

    14.3 Reactors for Homogeneously Catalyzed Reactions.

    15 Economic Importance of Catalysts.

    16 Future Development of Catalysis.

    16.1 Homogeneous Catalysis.

    16.2 Heterogeneous Catalysis.

    Solutions to the Exercises.

    References.

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    Author: Jens Hagen
    Publisher: John Wiley & Sons
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