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Working guide to process equipment

Author: Norman P Lieberman; Elizabeth T Lieberman
Publisher: New York : McGraw-Hill, ©2008.
Series: McGraw-Hill professional engineering.
Edition/Format:   eBook : Document : English : 3rd edView all editions and formats
Database:WorldCat
Summary:

A reference for pinpointing and repairing problems in chemical process equipment. It focuses on the inner workings of continuous process equipment for a range of industries, including such major ones  Read more...

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Genre/Form: Electronic books
Additional Physical Format: Print version:
Lieberman, Norman P.
Working guide to process equipment.
New York : McGraw-Hill, ©2008
(DLC) 2008277956
(OCoLC)191242659
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Norman P Lieberman; Elizabeth T Lieberman
ISBN: 9780071640961 0071640967 9780071638913 0071638911
OCLC Number: 228817606
Notes: Previous edition: published as by Norman P. Lieberman and Elizabeth T. Lieberman. New York: McGraw-Hill, 2003.
Description: 1 online resource (xxix, 591 pages) : illustrations.
Contents: Foreword; Preface to Third Edition; Preface to Second Edition; Preface to First Edition; Introduction; Acknowledgments; 1 Process Equipment Fundamentals; 1.1 Frictional Losses; 1.2 Density Difference Induces Flow; 1.3 Natural Thermosyphon Circulation; 1.4 Reducing Hydrocarbon Partial Pressure; 1.5 Corrosion at Home; 1.6 What I Know; 1.7 Distillation: The First Application; 1.8 Origin of Reflux; 2 Basic Terms and Conditions; 3 How Trays Work: Flooding: Downcomer Backup; 3.1 Tray Efficiency; 3.2 Downcomer Backup; 3.3 Downcomer Clearance; 3.4 Vapor-Flow Pressure Drop; 3.5 Jet Flood 3.6 Incipient Flood3.7 Tower Pressure Drop and Flooding; 4 How Trays Work: Dumping: Weeping through Tray Decks; 4.1 Tray Pressure Drop; 4.2 Other Causes of Tray Inefficiency; 4.3 Bubble-Cap Trays; 4.4 New High Capacity Trays; 5 Why Control Tower Pressure: Options for Optimizing Tower Operating Pressure; 5.1 Selecting an Optimum Tower Pressure; 5.2 Raising the Tower Pressure Target; 5.3 Lowering the Tower Pressure; 5.4 The Phase Rule in Distillation; 6 What Drives Distillation Towers: Reboiler Function; 6.1 The Reboiler; 6.2 Heat-Balance Calculations 7 How Reboilers Work: Thermosyphon, Gravity Feed, and Forced7.1 Thermosyphon Reboilers; 7.2 Forced-Circulation Reboilers; 7.3 Kettle Reboilers; 7.4 Don't Forget Fouling; 8 Inspecting Tower Internals; 8.1 Tray Deck Levelness; 8.2 Loss of Downcomer Seal Due to Leaks; 8.3 Effect of Missing Caps; 8.4 Repairing Loose Tray Panels; 8.5 Improper Downcomer Clearance; 8.6 Inlet Weirs; 8.7 Seal Pans; 8.8 Drain Holes; 8.9 Vortex Breakers; 8.10 Chimney Tray Leakage; 8.11 Shear Clips; 8.12 Bubble-Cap Trays; 8.13 Final Inspection; 8.14 Conclusion 9 How Instruments Work: Levels, Pressures, Flows, and Temperatures9.1 Level; 9.2 Foam Affects Levels; 9.3 Pressure; 9.4 Flow; 9.5 Temperature; 10 Packed Towers: Better than Trays?: Packed-Bed Vapor and Liquid Distribution; 10.1 How Packed Towers Work; 10.2 Maintaining Functional and Structural Efficiency in Packed Towers; 10.3 Advantages of Packing vs. Trays; 11 Steam and Condensate Systems: Water Hammer and Condensate Backup Steam-Side Reboiler Control; 11.1 Steam Reboilers; 11.2 Condensing Heat-Transfer Rates; 11.3 Maintaining System Efficiency; 11.4 Carbonic Acid Corrosion 11.5 Condensate Collection Systems11.6 Deaerators; 11.7 Surface Condensers; 12 Bubble Point and Dew Point: Equilibrium Concepts in Vapor-Liquid Mixtures; 12.1 Bubble Point; 12.2 Dew Point; Reference; 13 Steam Strippers: Source of Latent Heat of Vaporization; 13.1 Heat of Evaporation; 13.2 Stripper Efficiency; 14 Draw-Off Nozzle Hydraulics: Nozzle Cavitation Due to Lack of Hydrostatic Head; 14.1 Nozzle Exit Loss; 14.2 Critical Flow; 14.3 Maintaining Nozzle Efficiency; 14.4 Overcoming Nozzle Exit Loss Limits; Reference; 15 Pumparounds and Tower Heat Flows: Closing the Tower Enthalpy Balance
Series Title: McGraw-Hill professional engineering.
Responsibility: Norman P. Lieberman, Elizabeth T. Lieberman.

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