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Batch Distillation
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Batch Distillation : Simulation, Optimal Design, and Control, Second Edition

Book Details

Format Hardback or Cased Book
ISBN-10 1439861226
ISBN-13 9781439861226
Publisher Taylor & Francis Inc
Imprint CRC Press Inc
Country of Manufacture GB
Country of Publication GB
Publication Date Dec 21st, 2011
Print length 400 Pages
Weight 722 grams
Dimensions 24.20 x 16.40 x 2.80 cms
Product Classification: Industrial chemistry
Ksh 49,500.00
Werezi Extended Catalogue 0 in stock

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Helping readers gain a solid, hands-on background in batch processing, this best-selling text explains how to effectively design, synthesize, and make operations decisions related to batch processes. Along with updating the references, this edition features special sections on complex column configurations and azeotropic, extractive, and reactive distillation. It also includes a new chapter on various kinds of uncertainties in batch distillation and a new chapter describing software packages for simulation, design, optimization, and control. A solutions manual is available for qualifying instructors.

Most available books in chemical engineering mainly pertain to continuous processes, with batch distillation relegated to a small section. Filling this void in the chemical engineering literature, Batch Distillation: Simulation, Optimal Design, and Control, Second Edition helps readers gain a solid, hands-on background in batch processing. The second edition of this bestseller explores numerous new developments in batch distillation that have emerged since the publication of the first edition.

New to the Second Edition

  • Special sections on complex column configurations and azeotropic, extractive, and reactive distillation
  • A chapter on various kinds of uncertainties in batch distillation
  • A chapter covering software packages for batch distillation simulation, design, optimization, and control
  • Separate chapters on complex columns and complex systems
  • Up-to-date references and coverage of recent research articles

This edition continues to explain how to effectively design, synthesize, and make operations decisions related to batch processes. Through careful treatments of uncertainty analysis, optimization, and optimal control methods, the author gives readers the necessary tools for making the best decisions in practice.

While primarily designed for a graduate course in batch distillation, the text can also be used in undergraduate chemical engineering courses. In addition, researchers and academics faced with batch distillation research problems and practicing chemical engineers tackling problems in actual day-to-day operations will find the book to be a useful reference source.


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