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Towler G. Chemical Engineering Design. Principles, Practice...Economics 3ed 2022

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Towler G. Chemical Engineering Design. Principles, Practice...Economics 3ed 2022

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Category: Other
Total size: 46.52 MB
Added: 1 day ago (2025-07-31 07:30:01)

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Info Hash: 76A04DF845F7005147CDE8E48235950EE394F4A4
Last updated: 31 minutes ago (2025-08-01 08:15:03)

Description:

Textbook in PDF format Chemical Engineering Design: Principles, Practice and Economics of Plant and Process Design is one of the best-known and most widely adopted texts available for students of chemical engineering. The text deals with the application of chemical engineering principles to the design of chemical processes and equipment. The third edition retains its hallmark features of scope, clarity and practical emphasis, while providing the latest US codes and standards, including API, ASME and ISA design codes and ANSI standards, as well as coverage of the latest aspects of process design, operations, safety, loss prevention, equipment selection, and more. The text is designed for chemical and biochemical engineering students (senior undergraduate year, plus appropriate for capstone design courses where taken), and professionals in industry (chemical process, biochemical, pharmaceutical, petrochemical sectors). • Provides students with a text of unmatched relevance for chemical process and plant design courses and for the final year capstone design course • Written by practicing design engineers with extensive undergraduate teaching experience • Contains more than 100 typical industrial design projects drawn from a diverse range of process industries New to This Edition: • Includes new content covering food, pharmaceutical and biological processes and commonly used unit operations. • Provides updates on plant and equipment costs, regulations and technical standards. • Includes limited online access for students to Cost Engineering’s Cleopatra Enterprise cost estimating software. Introduction to design Process flowsheet development Utilities and energy-efficient design Process simulation Instrumentation and process control Materials of construction Capital cost estimating Estimating revenues and production costs Economic evaluation of projects Safety and loss prevention General site considerations Optimization in design Equipment selection, specification, and design Design of pressure vessels Design of reactors and mixers Separation of fluids Separation columns (distillation, absorption, and extraction) Specification and design of solids-handling equipment Heat transfer equipment Transport and storage of fluids