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"Bottom line: For a holistic view of chemical engineering design, this book provides as much, if not more, than any other book available on the topic" --Extract from Chemical Engineering Resources review
Chemical Engineering Design is a complete course text for students of chemical engineering. Written for the Senior Design Course, and also suitable for introduction to chemical engineering courses, it covers the basics of unit operations and the latest aspects of process design, equipment selection, plant and operating economics, safety and loss prevention. It is a textbook that students will want to keep through their undergraduate education and on into their professional lives.
New to this edition:
- Revised organization into Part I: Process Design, and Part II: Plant Design. The broad themes of Part I are flowsheet development, economic analysis, safety and environmental impact and optimization. Part II contains chapters on equipment design and selection that can be used as supplements to a lecture course or as essential references for students or practicing engineers working on design projects.
- New discussion of conceptual plant design, flowsheet development and revamp design
- Significantly increased coverage of capital cost estimation, process costing and economics
- New chapters on equipment selection, reactor design and solids handling processes
- New sections on fermentation, adsorption, membrane separations, ion exchange and chromatography
- Increased coverage of batch processing, food, pharmaceutical and biological processes
- All equipment chapters in Part II revised and updated with current information
- Updated throughout for latest US codes and standards, including API, ASME and ISA design codes and ANSI standards
- Additional worked examples and homework problems�
- The most complete and up to date coverage of equipment selection
- 108 realistic commercial design projects from diverse industries
- A rigorous pedagogy assists learning, with detailed worked examples, end of chapter exercises, plus supporting data and Excel spreadsheet calculations plus over 150 Patent References, for downloading from the companion website
- Extensive instructor resources: 1170 lecture slides plus fully worked solutions manual available to adopting instructors
- Sales Rank: #37590 in Books
- Brand: Brand: Butterworth-Heinemann
- Published on: 2012-01-27
- Original language: English
- Number of items: 1
- Dimensions: 9.30" h x 1.70" w x 7.50" l, 4.30 pounds
- Binding: Hardcover
- 1320 pages
- Used Book in Good Condition
Review
"An essential support text for the traditional design product. ...Well written, it is easy to read and is superbly indexed" --Trans IChemE
�"Bottom line: For a holistic view of chemical engineering design, this book provides as much, if not more, than any other book available on the topic. Nearly every subject is accompanied by examples and new technologies are also addressed. In short, a complete, well-written and illustrated resource that is a pleasure to use." --From www.cheresources.com (Chemical Engineering Resources)
"Chemical Engineering Design is a complete text for students of chemical engineering. Written for the senior design course, and also suitable for introduction to chemical engineering courses, it covers the basics of unit operations and the latest aspects of process design, equipment selection, plant and operating economics, safety and loss prevention. It includes detailed worked examples, case studies, end-of-chapter exercises, plus supporting data, spreadsheet calculations and equipment specification sheets for downloading." --Chemical Engineering Progress
"The book was originally written by British chemical engineer Sinnott as Volume Six of the Chemical Engineering series edited by Coulson and Richardson. It was intended as a stand-alone design textbook for undergraduate design projects that would supplement the other volumes, so it was no long stretch to publish it separately in 2008. Towler (chemical engineering, Northwestern U., Illinois) helped update and revise it, and integrated US laws, codes, and standards into it. This second edition takes account of comments about strengths and weaknesses by students and instructors. It also is rearranged to fit a typical two-course senior design sequence better, focusing first on process design then on plant design." --Reference and Research Book News, Inc.
From the Back Cover
‘Bottom line: For a holistic view of chemical engineering design, this book provides as much, if not more, than any other book available on the topic.’ Extract from Chemical Engineering Resources review.
Chemical Engineering Design is a complete course text for students of chemical engineering. Written for the Senior Design Course, and also suitable for introduction to chemical engineering courses, it covers the basics of unit operations and the latest aspects of process design, equipment selection, plant and operating economics, safety and loss prevention. It is a textbook that students will want to keep through their undergraduate education and on into their professional lives.
About the Author
Gavin Towler is the Vice President and Chief Technology Officer of UOP LLC, a Honeywell company. UOP is a leading supplier of catalysts, process technology, proprietary equipment and services to the oil, gas and petrochemical industries. In this capacity he is responsible for delivering process, catalyst and equipment innovations for UOP’s four businesses.
Gavin has 20 years of broad experience of process and product design and has 65 US patents. He is co-author of “Chemical Engineering Design, a textbook on process design, and is an Adjunct Professor at Northwestern University, where he teaches the senior design classes.
Gavin has a B.A. and M.Eng. in chemical engineering from Cambridge University and a Ph.D. from U.C. Berkeley. He is a Chartered Engineer and Fellow of the Institute of Chemical Engineers, and is a Fellow of the AIChE.
Ray Sinnott's varied career, mainly in design and development, began with several major companies including Dupont and John Brown. The main areas covered within these appointments were: Gas Production and Distribution, Nuclear Energy, Elastomers and Textile fibres.
After his career in industry he joined the Chemical Engineering Department, University of Wales Swansea in 1970, specialising in teaching process and plant design, and other engineering practice subjects.
The first edition of Chemical Engineering Design (Coulson and Richardson’s Vol 6) was published in 1983. Subsequent editions have been published at approximately 5 year intervals.
Ray Sinnott retired from full time teaching in 1995 but has maintained close contact with the engineering profession.
Most helpful customer reviews
8 of 9 people found the following review helpful.
A Great Process Design Reference
By Bradley Yaniga
It can be helpful to know the background of the person leaving the review: I obtained both a Bachelor's and Master's degree from the University of Toledo, and for the last three years, I have worked both as a process and process control engineer in industry (2007-2010). Before I purchased a process control book, I did much research and I know now that I made the right decision. Whether you are student who is trying to learn process design for the first time or if you are already in your career (academia or industry), this is a book that compiles much information in one place. The chemical engineering student, as well as the process engineer in industry, would benefit from this wealth of information pertaining to the design of unit operations equipment. Now I use this as reference material for potential, future capital projects at work.
7 of 8 people found the following review helpful.
An articulate systematic guide to Chemical Engineering Design, Practice, and Plant Economics
By Didaskalex
*****
"The art and practice of design cannot be learned from books. The intuition and judgement necessary to apply theory to practice will come only from practical experience." --Ray Sinnott, Ch. Engineer, Manual Co-author
*
This articulate systematic guide to Chemical Engineering Design introduces the subject of a graduate level study of the process design principles, practice and plant economics, and serves as a hand book for Chemical project Engineers. The expert authors come from UOP, pioneering licensors of oil and gas (catalytic) processes, and Chemical manufacturer Dupont, who eloquently explore hands on experience in design, and evaluation of CPI/HPI projects. Their approach is in two parts, Process Design: the software, and Plant Design, projecting in detail the hardware selection, design and specification, a mere 1300 pages, in twenty chapters.
In Part I, Process Design unfolds as the 'engineering package, set by owners to engineering contractors, in a call for tenders. This covers the design basis, and the project structure Flow chart, and describes the design documents. Starting with PF development to a P&I D as the main detailed piping and instrument diagram. two main roots are discussed, the grass roots and modification of existing units (Revamp), PFD review slightly different, in both cases. Process reviews are discussed on all levels. Chapter 3 discusses utilities and energy management/ recovery. Process Simulation follows covering programs, physical properties, and optimization.
Chapter 5 cover Process control, starting from P&I D, describing Alarms, Safety trips & interlocks, and computer control systems (initiated in the 70's, with problms and references. Chapter 6 covers materials of construction, mechanical properties to types of corrosion, with a nice tip on corrosion charts, and different used alloys and plastics. Ch. 7-9 cover capital cost estimates, revenue, and production cost, economic evaluation of projects follows. Ch. 10-12 discuss safety & loss prevention, site selection, and design optimization. These last three chapters can form in fact be an integral part of Plant Design.
Plant Design, as Part II, considers equipment and (rotating) machinery, stressing selection and specs with process and mechanical internals design of pressure vessels, underlining Codes & standards. Reactors include reaction systems, catalysts and R internals. Separation columns: distillation, Absorption & extraction, Plate and packed internals well covered,concisely but clearly. Solid handling is reviewed in Ch. 18: particle size, mixing, and separation from liquids & gases. Fluidization, conveying and cyclone separators are covered, amended with fines as hazards in solid processing .
Heat transfer equipment, the backbone of plants, is articulated with a complete application list of Heat exchangers, finned air coolers, condensers design are explained with calculations. Fired heaters, and reboilers are combined with two phase flow, and boiling regime description. Kern design method and pressure drop, a nostalgic HE practice, are included. Ch. 20 on Fluid transport and storage, covers pressure drop in pipes, valves for single and two phase fluids. Pumps and compressors design, system curve, selection & performance curves are provided, with numerical examples, drivers and accessory description, and control valve sizing.
The authors hands on experience in process and project management is crystal clear. System approach is always considered including those of steam, relief, and other minor systems. API codes, and AIChE good practices, Safety codes, process review audits, and numerous project procedures were enumerated and clarified. Appendices cover corrosion Charts, physical properties data base, with problem statements in project design definition forms. It was hard for me to find any missing plant equipment, even a propriety one, coalescers are missed! I was wrong; they are briefly described (pp. 778) It has been delightful to review this fine guide.
3 of 3 people found the following review helpful.
Useful
By J. Ruben
I'm using this book for my Chemical Engineering Process Design I and II classes. It has been very useful for assignments, and is relatively easy to read, although economics stuff is sometimes a bit dry. The examples are good, and the supplemental material online has also been very good. It is a good book, with some useful review of heat transfer, and fundamental chemical engineering principles.
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