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Introduction to Particle Technology [Hardcover]

Martin Rhodes (Author)


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Introduction to Particle Technology Introduction to Particle Technology
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Book Description

0471984825 978-0471984825 December 30, 1998 1
Introduction to Particle Technology Martin Rhodes Monash University, Australia Particle technology is of increasing importance to a wide range of industries, including food, pharmaceuticals, chemicals, minerals and metals. In these industries, companies with in-house knowledge of particle technology have a competitive advantage in product development, quality control and waste minimization. This accessible book forms a comprehensive introduction to the many concepts of this broad subject. Key topics covered include:-
* Characterisation (size analysis)
* Processing (fluidized beds, granulation)
* Particle formation (granulation, size reduction)
* Fluid-Particle separation (filtration, settling, gas cyclones)
* Safety (dust explosions)
* Transport (pneumatic transport and standpipes)
Worked examples of calculations and exercises (with answers) are provided in each chapter and real-life industrial applications illustrating the techniques and theory are included. This book is essential reading for students of chemical engineering on particle technology courses. It is also valuable supplementary reading for students of civil engineering, applied chemistry, physics, pharmaceutics, metallurgy and materials engineering.

Editorial Reviews

Review

"This is an introductory text...There are many worked examples and exercises to test the student." (Aslib Book Guide, Vol. 64, No. 2, February 1999)

From the Back Cover

Introduction to Particle Technology Martin Rhodes Monash University, Australia Particle technology is of increasing importance to a wide range of industries, including food, pharmaceuticals, chemicals, minerals and metals. In these industries, companies with in-house knowledge of particle technology have a competitive advantage in product development, quality control and waste minimization. This accessible book forms a comprehensive introduction to the many concepts of this broad subject. Key topics covered include:-
* Characterisation (size analysis)
* Processing (fluidized beds, granulation)
* Particle formation (granulation, size reduction)
* Fluid-Particle separation (filtration, settling, gas cyclones)
* Safety (dust explosions)
* Transport (pneumatic transport and standpipes)
Worked examples of calculations and exercises (with answers) are provided in each chapter and real-life industrial applications illustrating the techniques and theory are included. This book is essential reading for students of chemical engineering on particle technology courses. It is also valuable supplementary reading for students of civil engineering, applied chemistry, physics, pharmaceutics, metallurgy and materials engineering.

Product Details

  • Hardcover: 336 pages
  • Publisher: John Wiley & Sons; 1 edition (December 30, 1998)
  • Language: English
  • ISBN-10: 0471984825
  • ISBN-13: 978-0471984825
  • Product Dimensions: 9.8 x 6.8 x 0.9 inches
  • Shipping Weight: 1.5 pounds
  • Amazon Best Sellers Rank: #10,115,117 in Books (See Top 100 in Books)

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Inside This Book (learn more)
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First Sentence:
This chapter deals with the motion of single solid particles in fluids. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
single particle terminal velocity, compacting stress, minimum oxygen for combustion, hopper flow factor, equivalent volume sphere diameter, upflow section, actual cut size, initial suspension concentration, shear cell tests, dense phase flow, fluidized bed flow, dense phase transport, downflow section, unconfined yield stress, dilute phase flow, mean bed voidage, particle convective heat transfer, saltation velocity, packed bed voidage, dilute phase transport, choking velocity, kinematic angle, standard drag curve, relative gas velocity, allowable pressure loss
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Applying Equation, Geldart Group, Cambridge University, Rep Figure
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