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CHEMICAL ENGINEERING<br />

International Edition<br />

CONCEPTUAL DESIGN OF CHEMICAL<br />

PROCESSES<br />

by James Douglas, University of Massachusetts<br />

1988 / 601 pages<br />

ISBN: 978-0-07-017762-8 (Out-of-Print)<br />

ISBN: 978-0-07-100195-3 [IE]<br />

CONTENTS<br />

Part I - A Strategy For Process Synthesis and Analysis<br />

1 The Nature of Process Synthesis and Analysis<br />

2 Engineering Economics<br />

3 Economic Decision Making-Design of a Solvent Recovery System<br />

Part II - Developing A Conceptual Design and Finding the Best<br />

Flowsheet<br />

4 Input Information and Batch vs. Continuous<br />

5 Input-Output Structure of the Flowsheet<br />

6 Recycle Structure of the Flowsheet<br />

7 Separation System<br />

8 Heat-Exchanger Networks<br />

9 Cost Diagrams and the Quick Screening of Process Alternatives<br />

Part III - Other Design Tools And Applications<br />

10 Preliminary Process Optimization<br />

11 Process Retrofits<br />

12 Computer-Aided Design Programs<br />

13 Summary of the Conceptual Design Procedure and Extensions<br />

of the Method<br />

Appendices<br />

COMPLIMENTARY COPIES<br />

Complimentary desk copies are available for course<br />

adoption only. To request for a review copy:<br />

° contact your local <strong>McGraw</strong>-<strong>Hill</strong> Representatives<br />

° fax the Examination Copy Request Form<br />

° email to mghasia_sg@mcgraw-hill.com<br />

° submit online at www.mheducation.asia<br />

Visit <strong>McGraw</strong>-<strong>Hill</strong> Education<br />

Website: www.mheducation.asia<br />

NEW<br />

Process Control<br />

International Edition<br />

PROCESS SYSTEMS<br />

ANALYSIS AND CONTROL<br />

Third Edition<br />

by Donald R. Coughanowr, Drexel University, and<br />

Steven LeBlanc, University of Toledo---Toledo<br />

2009 (October 2008) / Hardcover / 624 pages<br />

ISBN: 978-0-07-339789-4<br />

ISBN: 978-0-07-112186-6 [IE]<br />

Process Systems Analysis and Control, third edition retains the<br />

clarity of presentation for which this book is well known. It is an<br />

ideal teaching and learning tool for a semester-long undergraduate<br />

chemical engineering course in process dynamics and control. It<br />

avoids the encyclopedic approach of many other texts on this topic.<br />

Computer examples using MATLAB® and Simulink® have been introduced<br />

throughout the book to supplement and enhance standard<br />

hand-solved examples. These packages allow the easy construction<br />

of block diagrams and quick analysis of control concepts to enable<br />

the student to explore "what-if" type problems that would be much<br />

more difficult and time consuming by hand.<br />

NEW TO THIS EDITION<br />

v Restructuring of the initial chapters to reduce mathematical<br />

focus.<br />

v Computer applications in MATLAB®, Simulink® and Excel® have<br />

been introduced throughout the book.<br />

v One page capsule summaries have been added to the end of<br />

each chapter to help students review and study the most important<br />

concepts.<br />

v New homework problems added to each chapter. The new problems<br />

are a mixture of hand-solutions and computational-exercises.<br />

CONTENTS<br />

Preface<br />

Chapter 1 Introductory Concepts<br />

Part 1 Modeling for Process Dynamics<br />

Chapter 2 Modeling Tools for Process Dynamics<br />

Chapter 3 Inversion by Partial Fractions<br />

Part 2 Linear Open-Loop Systems<br />

Chapter 4 Response of First-Order Systems<br />

Chapter 5 Physical Examples of First-Order Systems<br />

Chapter 6 Response of First-Order Systems in Series<br />

Chapter 7 Higher-Order Systems: Second-Order and Transportation<br />

Lag<br />

Part 3 Linear Closed-Loop Systems<br />

Chapter 8 The Control System<br />

Chapter 9 Controllers and Final Control Elements<br />

Chapter 10 Block Diagram of a Chemical-Reactor Control System<br />

Chapter 11 Closed-Loop Transfer Functions<br />

Chapter 12 Transient Response of Simple Control Systems<br />

Chapter 13 Stability<br />

Chapter 14 Root Locus<br />

Part 4 Frequency Response<br />

Chapter 15 Introduction to Frequency Response<br />

48

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