Air Pollution Control Technology Handbook

Air Pollution Control Technology Handbook

ISBN-10:
0849395887
ISBN-13:
9780849395888
Pub. Date:
10/01/2001
Publisher:
Taylor & Francis
ISBN-10:
0849395887
ISBN-13:
9780849395888
Pub. Date:
10/01/2001
Publisher:
Taylor & Francis
Air Pollution Control Technology Handbook

Air Pollution Control Technology Handbook

Hardcover

$253.0
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Overview

In the debate over pollution control, the price of pollution is a key issue. But which is more costly: clean up or prevention? From regulations to technology selection to equipment design, Air Pollution Control Technology Handbook serves as a single source of information on commonly used air pollution control technology. It covers environmental regulations and their history, process design, the cost of air pollution control equipment, and methods of designing equipment for control of gaseous pollutants and particulate matter.

This book covers how to:

  • Review alternative design methods
  • Select methods for control
  • Evaluate the costs of control equipment
  • Examine equipment proposals from vendors

    With its comprehensive coverage of air pollution control processes, the Air Pollution Control Technology Handbook is a detailed reference for the practicing engineer who prepares the basic process engineering and cost estimation required for the design of an air pollution control system. It discusses the topics in depth so that you can apply the methods and equations presented and proceed with equipment design.


  • Product Details

    ISBN-13: 9780849395888
    Publisher: Taylor & Francis
    Publication date: 10/01/2001
    Series: Handbook Series for Mechanical Engineering Series
    Edition description: New Edition
    Pages: 408
    Product dimensions: 6.20(w) x 9.30(h) x 1.10(d)

    Table of Contents

    A HISTORICAL OVERVIEW OF THE DEVELOPMENT OF CLEAN AIR REGULATIONS
    A Brief History of the Air Pollution Problem
    Federal Involvement in Air Pollution Control
    Characterizing the Atmosphere
    Recipe for an Air Pollution Problem
    References
    CLEAN AIR ACT
    History of the Clean Air Act
    1990 Clean Air Act Amendments
    References
    AIR PERMITS FOR NEW SOURCE
    Elements of a Permit Application
    Best Available Control Technology
    Air Quality Analysis
    NSR Reform
    References
    ATMOSPHERIC DIFFUSION MODELING FOR PSD PERMIT REGULATIONS
    Introduction - Meteorological Background
    The Tall Stack
    Classifying Sources by Method of Emission
    Atmospheric-Diffusion Models
    EPA Computer Programs for Regulation of Industry
    The Source-Transport-Receptor Problem
    References
    SOURCE TESTING
    Introduction
    Code of Federal Regulations
    Representative Sampling Techniques
    References
    AMBIENT AIR QUALITY AND CONTINUOUS EMISSIONS MONITORING
    Ambient Air Quality Sampling Program
    Objectives of a Sampling Program
    Monitoring Systems
    Federal Reference Methods and Continuous Monitoring
    The "Complete" Environmental Surveillance and Control System
    Typical Air Sampling Train
    Integrated Sampling Devices for Suspended Particulate Matter
    Continuous Air Quality Monitors
    References
    COST ESTIMATING
    Time Value of Money
    Types of Cost Estimates
    Air Pollution Control Equipment Cost
    References
    PROCESS DESIGN AND THE STRATEGY OF PROCESS DESIGN
    Introduction to Process Design
    The Strategy of Process Design
    Mass and Energy Balances
    References
    PROFITABILITY AND ENGINEERING ECONOMICS
    Introduction - Profit Goal
    Profitability Analysis
    The Effect of Depreciation
    Capital Investment and Total Product Cost
    References
    INTRODUCTION TO CONTROL OF GASEOUS POLLUTANTS
    Absorption and Adsorption
    References
    ABSORPTION FOR HAP AND VOC CONTROL
    Introduction
    Aqueous Systems
    Nonaqueous Systems
    Types and Arrangements of Absorption Equipment
    Design Techniques for Countercurrent Absorption Columns
    Countercurrent Flow Packed Absorption Tower Design
    Sample Design Calculation
    References for Absorption
    ADSORPTION FOR HAP AND VOC CONTROL
    Introduction to Adsorption Operations
    Adsorption Phenomenon
    Adsorption Processes
    Nature of Adsorbents
    The Theories of Adsorption
    Adsorption Isotherms
    Polanyi Potential Theory
    Unstady-State Fixed-Bed Adsorbers
    Fixed Bed Adsorber Design Considerations
    Pressure Drop Through Adsorbers
    Adsorber Effectiveness and Regeneration
    Breakthrough Model
    Regeneration Modeling
    References
    THERMAL OXIDATION FOR VOC CONTROL
    Combustion Basics
    Flares
    Incineration
    Catalytic Oxidation
    References
    CONTROL OF VOC AND HAP BY CONDENSATION
    Introduction
    VOC Condensers
    Coolant and Heat Exchanger Type
    Mixtures of Organic Vapors
    Air as a Noncondensable
    References
    Appendix A: Derivation of the Area Model for a Mixture Condensing from a Gas
    Appendix B: Algorithm for the Area
    Model for a Mixture Condensing from a Gas
    CONTROL OF VOC AND HAP BY BIOFILTRATION
    Introduction
    Theory of Biofilter Operation
    Design Parameters and Conditions
    Biofilter Compared to Other Available Control Technology
    Successful Case Studies
    Further Considerations
    References
    MEMBRANE SEPARATION
    Overview
    Polymeric Membranes
    Performance
    Applications
    References
    NOX CONTROL
    NOX from Combustion
    Control Techniques
    References
    CONTROL OF SOX
    H2S Control
    SO2 (and HCI) Removal
    SO3 and Sulfuric Acid
    References
    FUNDAMENTALS OF PARTICULATE CONTROL
    Particle Size Distribution
    Aerodynamic Diameter
    Cunningham Clip Correction
    Collection Mechanisms
    References
    HOOD AND DUCTWORK DESIGN
    Introduction
    Hood Design
    Duct Design
    Effect of Entrance into a Hood
    Total Energy Loss
    Fan Power
    Hood-Duct Example
    References
    CYCLONE DESIGN
    Collection Efficiency
    Pressure Drop
    Saltation
    References
    DESIGN AND APPLICATION OF WET SCRUBBERS
    Introduction
    Collection Mechanisms and Efficiency
    Collection Mechanisms and Particle Size
    Selection and Design of Scrubbers
    Devices for Wet Scrubbing
    The Semrau Principle and Collection Efficiency
    A Model for Counter-Current Spray Scrubbers
    A Model for Venturi Scrubbers
    The Calvert Cut Diameter Design Technique
    The Cut-Power Relationship
    References
    Appendix: Calvert Performance Cut Diameter Data
    FILTRATION AND BAGHOUSES
    Introduction
    Design Issues
    Cleaning Mechanisms
    Fabric Properties
    Baghouse Size
    Pressure Drop
    Bag Life
    References
    ELECTROSTATIC PRECIPITATORS
    Early Development
    Basic Theory
    Practical Application of Theory
    Flue Gas Conditioning
    Using V/I Curves for Troubleshooting
    INDEX

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