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Synopsis:
Particles are important products of chemical
process industries, spanning the basic and specialty chemicals,
agricultural products, pharmaceuticals, paints, dyestuffs and
pigments, cement, ceramics, and electronic materials. Solids handling
and processing technologies are thus essential to the operation
and competitiveness of these industries. Fluidization technology
is employed not only in chemical production, it is also is applied
in coal gasification and combustion for power generation, mineral
processing, food processing, soil washing and other related waste
treatment, environmental remediation, and resource recovery processes.
The FCC (Fluid Catalytic Cracking) technology commonly employed
in the modern petroleum refineries is also based on fluidization
principles. In this book, recognized experts have been invited
to provide a detailed treatment of those industrially important
subjects. The subject areas covered in this book were selected
based on two criteria: (1) the subjects are of industrial importance,
and (2) the subjects have not been covered extensively in books
published to date. The primary emphasis of the book is for industrial
applications and the primary audience is expected to be the practitioners
of the art of fluidization, solids handling, and processing. It
will be particularly beneficial for engineers who operate design
plants where solids are handled, transported, and processed using
fluidization technology. The book, however, can also be useful
as a reference book for students, teachers, and managers who study
particle technology, especially in the areas of application of
fluidization technology and pneumatic transport. CONTENTS: Fluidized
Bed Scale-up; Pressure and Temperature Effects in Fluid-Particle
Systems; Heat Transfer in Fluidized Beds; Gas Distributor and
Plenum Design in Fluidized Beds; Engineering and Application so
Recirculating and Jetting Fluidized Beds; Fluidized Bed Coating
and Granulation; Attrition in Fluidized Beds and Pneumatic Conveying
Lines; Bubbleless Fluidization; Industrial Applications of Three-Phase
Fluidization; Dense Phase Conveying; Design Considerations of
Long-Distance Pneumatic Transport and Pipe Branching; Cyclone
Design; Electrostatics and Dust Explosions in Powder Handling.
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