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William Luyben L. Chemical Reactor Design and Control


Chemical Reactor Design and Control uses process simulators like Matlab®, Aspen Plus, and Aspen Dynamics to study the design of chemical reactors and their dynamic control. There are numerous books that focus on steady-state reactor design. There are no books that consider practical control systems for real industrial reactors. This unique reference addresses the simultaneous design and control of chemical reactors. After a discussion of reactor basics, it: Covers three types of classical reactors: continuous stirred tank (CSTR), batch, and tubular plug flow Emphasizes temperature control and the critical impact of steady-state design on the dynamics and stability of reactors Covers chemical reactors and control problems in a plantwide environment Incorporates numerous tables and shows step-by-step calculations with equations Discusses how to use process simulators to address diverse issues and types of operations This is a practical reference for chemical engineering professionals in the process industries, professionals who work with chemical reactors, and students in undergraduate and graduate reactor design, process control, and plant design courses.

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Juan A. Conesa Chemical Reactor Design


A guide to the technical and calculation problems of chemical reactor analysis, scale-up, catalytic and biochemical reactor design Chemical Reactor Design offers a guide to the myriad aspects of reactor design including the use of numerical methods for solving engineering problems. The author – a noted expert on the topic – explores the use of transfer functions to study residence time distributions, convolution and deconvolution curves for reactor characterization, forced-unsteady-state-operation, scale-up of chemical reactors, industrial catalysis, design of multiphasic reactors, biochemical reactors design, as well as the design of multiphase gas-liquid-solid reactors. Chemical Reactor Design contains several examples of calculations and it gives special emphasis on the numerical solutions of differential equations by using the finite differences approximation, which offers the background information for understanding other more complex methods. The book is designed for the chemical engineering academic community and includes case studies on mathematical modeling by using of MatLab software. This important book: – Offers an up-to-date insight into the most important developments in the field of chemical, catalytic, and biochemical reactor engineering – Contains new aspects such as the use of numerical methods for solving engineering problems, transfer functions to study residence time distributions, and more – Includes illustrative case studies on MatLab approach, with emphasis on numerical solution of differential equations using the finite differences approximation Written for chemical engineers, mechanical engineers, chemists in industry, complex chemists, bioengineers, and process engineers, Chemical Reactor Design addresses the technical and calculation problems of chemical reactor analysis, scale-up, as well as catalytic and biochemical reactor design.

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Root Thatcher W. Introduction to Chemical Engineering Kinetics and Reactor Design


The Second Edition features new problems that engage readers in contemporary reactor design Highly praised by instructors, students, and chemical engineers, Introduction to Chemical Engineering Kinetics & Reactor Design has been extensively revised and updated in this Second Edition. The text continues to offer a solid background in chemical reaction kinetics as well as in material and energy balances, preparing readers with the foundation necessary for success in the design of chemical reactors. Moreover, it reflects not only the basic engineering science, but also the mathematical tools used by today’s engineers to solve problems associated with the design of chemical reactors. Introduction to Chemical Engineering Kinetics & Reactor Design enables readers to progressively build their knowledge and skills by applying the laws of conservation of mass and energy to increasingly more difficult challenges in reactor design. The first one-third of the text emphasizes general principles of chemical reaction kinetics, setting the stage for the subsequent treatment of reactors intended to carry out homogeneous reactions, heterogeneous catalytic reactions, and biochemical transformations. Topics include: Thermodynamics of chemical reactions Determination of reaction rate expressions Elements of heterogeneous catalysis Basic concepts in reactor design and ideal reactor models Temperature and energy effects in chemical reactors Basic and applied aspects of biochemical transformations and bioreactors About 70% of the problems in this Second Edition are new. These problems, frequently based on articles culled from the research literature, help readers develop a solid understanding of the material. Many of these new problems also offer readers opportunities to use current software applications such as Mathcad and MATLAB®. By enabling readers to progressively build and apply their knowledge, the Second Edition of Introduction to Chemical Engineering Kinetics & Reactor Design remains a premier text for students in chemical engineering and a valuable resource for practicing engineers.

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Laurence Belfiore A. Transport Phenomena for Chemical Reactor Design


Laurence Belfiore’s unique treatment meshes two mainstream subject areas in chemical engineering: transport phenomena and chemical reactor design. Expressly intended as an extension of Bird, Stewart, and Lightfoot’s classic Transport Phenomena, and Froment and Bischoff’s Chemical Reactor Analysis and Design, Second Edition, Belfiore’s unprecedented text explores the synthesis of these two disciplines in a manner the upper undergraduate or graduate reader can readily grasp. Transport Phenomena for Chemical Reactor Design approaches the design of chemical reactors from microscopic heat and mass transfer principles. It includes simultaneous consideration of kinetics and heat transfer, both critical to the performance of real chemical reactors. Complementary topics in transport phenomena and thermodynamics that provide support for chemical reactor analysis are covered, including: Fluid dynamics in the creeping and potential flow regimes around solid spheres and gas bubbles The corresponding mass transfer problems that employ velocity profiles, derived in the book’s fluid dynamics chapter, to calculate interphase heat and mass transfer coefficients Heat capacities of ideal gases via statistical thermodynamics to calculate Prandtl numbers Thermodynamic stability criteria for homogeneous mixtures that reveal that binary molecular diffusion coefficients must be positive In addition to its comprehensive treatment, the text also contains 484 problems and ninety-six detailed solutions to assist in the exploration of the subject. Graduate and advanced undergraduate chemical engineering students, professors, and researchers will appreciate the vision, innovation, and practical application of Laurence Belfiore’s Transport Phenomena for Chemical Reactor Design.

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E. Nauman Bruce Chemical Reactor Design, Optimization, and Scaleup


The classic reference, now expanded and updated Chemical Reactor Design, Optimization, and Scaleup is the authoritative sourcebook on chemical reactors. This new Second Edition consolidates the latest information on current optimization and scaleup methodologies, numerical methods, and biochemical and polymer reactions. It provides the comprehensive tools and information to help readers design and specify chemical reactors confidently, with state-of-the-art skills. This authoritative guide: Covers the fundamentals and principles of chemical reactor design, along with advanced topics and applications Presents techniques for dealing with varying physical properties in reactors of all types and purposes Includes a completely new chapter on meso-, micro-, and nano-scale reactors that addresses such topics as axial diffusion in micro-scale reactors and self-assembly of nano-scale structures Explains the method of false transients, a numerical solution technique Includes suggestions for further reading, problems, and, when appropriate, scaleup or scaledown considerations at the end of each chapter to illustrate industrial applications Serves as a ready reference for explained formulas, principles, and data This is the definitive hands-on reference for practicing professionals and an excellent textbook for courses in chemical reactor design. It is an essential resource for chemical engineers in the process industries, including petrochemicals, biochemicals, microelectronics, and water treatment.

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Uzi Mann Principles of Chemical Reactor Analysis and Design


An innovative approach that helps students move from the classroom to professional practice This text offers a comprehensive, unified methodology to analyze and design chemical reactors, using a reaction-based design formulation rather than the common species-based design formulation. The book's acclaimed approach addresses the weaknesses of current pedagogy by giving readers the knowledge and tools needed to address the technical challenges they will face in practice. Principles of Chemical Reactor Analysis and Design prepares readers to design and operate real chemical reactors and to troubleshoot any technical problems that may arise. The text's unified methodology is applicable to both single and multiple chemical reactions, to all reactor configurations, and to all forms of rate expression. This text also . . . Describes reactor operations in terms of dimensionless design equations, generating dimensionless operating curves that depict the progress of individual chemical reactions, the composition of species, and the temperature. Combines all parameters that affect heat transfer into a single dimensionless number that can be estimated a priori. Accounts for all variations in the heat capacity of the reacting fluid. Develops a complete framework for economic-based optimization of reactor operations. Problems at the end of each chapter are categorized by their level of difficulty from one to four, giving readers the opportunity to test and develop their skills. Graduate and advanced undergraduate chemical engineering students will find that this text's unified approach better prepares them for professional practice by teaching them the actual skills needed to design and analyze chemical reactors.

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Louis Theodore Chemical Reactor Analysis and Applications for the Practicing Engineer


This books format follows an applications-oriented text and serves as a training tool for individuals in education and industry involved directly, or indirectly, with chemical reactors. It addresses both technical and calculational problems in this field. While this text can be complimented with texts on chemical kinetics and/or reactor design, it also stands alone as a self-teaching aid. The first part serves as an introduction to the subject title and contains chapters dealing with history, process variables, basic operations, kinetic principles, and conversion variables. The second part of the book addresses traditional reactor analysis; chapter topics include batch, CSTRs, tubular flow reactors, plus a comparison of these classes of reactors. Part 3 keys on reactor applications that include non-ideal reactors: thermal effects, interpretation of kinetic data, and reactor design. The book concludes with other reactor topics; chapter titles include catalysis, catalytic reactors, other reactions and reactors, and ABET-related topics. An extensive Appendix is also included

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Laboratory Equipment 10L University Chemical Double-layer Jacket Glass Reactor Vacuum Glass Reactor Vessel

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William L. Luyben | P.C. Rossin College of Engineering ...

William L. Luyben's research interests include design and control of coupled reactor-column processes and plant recycle stream management. Reactive distillation is becoming more commonly employed in industry as a way to increase yields and reduce energy and capital costs. One popular version employs a stirred-tank reactor with a rectifying column mounted above it. Luyben seeks to provide a ...

Process Modelling, Stimulation and Control for Chemical ...

Process Modelling, Stimulation and Control for Chemical Engineers By William L. Luyben.pdf. Kiran Kandulna. Download PDF. Download Full PDF Package. This paper. A short summary of this paper. 28 Full PDFs related to this paper. READ PAPER. Process Modelling, Stimulation and Control for Chemical Engineers By William L. Luyben.pdf . Download. Process Modelling, Stimulation and Control for ...

Chemical Reactor Design and Control: Amazon.de: Luyben ...

Chemical Reactor Design and Control | Luyben, William L. | ISBN: 9780470097700 | Kostenloser Versand für alle Bücher mit Versand und Verkauf duch Amazon.

Chemical Reactor Design and Control | Wiley Online Books

William L. Luyben, PhD, is a Professor of Chemical Engineering at Lehigh University. In addition to teaching for forty years, Dr. Luyben spent nine years as an engineer with Exxon and DuPont. He has written nine books, including Distillation Design and Control Using Aspen Simulation (Wiley), and more than 200 papers. He was awarded the AIChE CAST Division "Computing Practice Award" in 2003 and ...

Chemical Reactor Design and Control von William L. Luyben ...

William L. Luyben, PhD, is a Professor of Chemical Engineering at Lehigh University. In addition to teaching for forty years, Dr. Luyben spent nine years as an engineer with Exxon and DuPont. He has written nine books, including Distillation Design and Control Using Aspen Simulation (Wiley), and more than 200 papers. He was awarded the AIChE CAST Division "Computing Practice Award" in 2003 and ...

Chemical Reactor Design and Control - William L. Luyben ...

William L. Luyben, PhD, is a Professor of Chemical Engineering at Lehigh University. In addition to teaching for forty years, Dr. Luyben spent nine years as an engineer with Exxon and DuPont. He has written nine books, including Distillation Design and Control Using Aspen Simulation (Wiley), and more than 200 papers. He was awarded the AIChE ...

Chemical Reactor Design and Control | William L. Luyben ...

William L. Luyben. Chemical Reactor Design and Control uses process simulators like MatlabR, Aspen Plus, and Aspen Dynamics to study the design of chemical reactors and their dynamic control. There are numerous books that focus on steady-state reactor design. There are no books that consider practical control systems for real industrial reactors. This unique reference addresses the ...

‪William Luyben‬ - ‪Google Scholar‬

William Luyben. Lehigh University. Verified email at lehigh.edu. process design process control. Articles Cited by. Title. Sort. Sort by citations Sort by year Sort by title. Cited by. Cited by. Year; Process modeling, simulation and control for chemical engineers . JC James. McGraw-Hill, 1989. 2141: 1989: Distillation design and control using Aspen simulation. WL Luyben. John Wiley & Sons ...

Design and control of the ethyl benzene process - Luyben ...

Corresponding Author. WLL0@lehigh.edu. Dept. of Chemical Engineering, Lehigh University, Bethlehem, PA 18015. Dept. of Chemical Engineering, Lehigh University, Bethlehem, PA 18015Search for more papers by this author

William L Luyben - Home - ACM Digital Library

Search for William L Luyben's work. Search Search. Home William L Luyben. William L Luyben. Skip slideshow. Most frequent co-Author Most cited colleague Top subject. Modeling methodologies. View research . Top keyword. Currently Not Available. Most frequent Affiliation Bibliometrics. Average Citation per Article. 7. Citation count. 22. Publication counts. 3. Publication Years. 1973 - 1989 ...

Chemical Reactor Design and Control by William L. Luyben ...

Chemical Reactor Design and Control by William L. Luyben (2007-08-31) | William L. Luyben | ISBN: | Kostenloser Versand für alle Bücher mit Versand und Verkauf duch Amazon.

William L. Luyben's research works | Lehigh University ...

William L. Luyben's 348 research works with 8,972 citations and 27,549 reads, including: Dynamic simulation and control of a combustion turbine process for biogas derived methane

Design and Control of the Cumene Process | Industrial ...

William L. Luyben. Effect of Peak Temperature Limitations on the Design of Processes with Cooled Tubular Reactors. International Journal of Chemical Reactor Engineering 2014 , 12 (1) , 191-203.

Process Modeling, Simulation, and Control for Chemical ...

William L. Luyben. The purpose of this book is to convey to undergraduate students an understanding of those areas of process control that all chemical engineers need to know. The presentation is concise, readable and restricted to only essential elements. The methods presented have been successfully applied in industry to solve real problems. Analysis of closedloop dynamics in the time ...

Process Modeling, Simulation and Control for Chemical ...

William L. Luyben (Author) › Visit Amazon's William L. Luyben Page. Find all the books, read about the author, and more. See search results for this author. Are you an author? Learn about Author Central. William L. Luyben (Author) 3.8 out of 5 stars 3 ratings. ISBN-13: 978-0070391598. ISBN-10: 0070391599. Why is ISBN important? ISBN. This bar-code number lets you verify that you're getting ...

Process Modeling, Simulation, and Control for Chemical ...

Process Modeling, Simulation, and Control for Chemical Engineers William L. Luyben No preview available - 1990. References to this book. Distillation: Principles and Practices Johann G. Stichlmair, James R. Fair, J. R. Fair Snippet view - 1998. Advances in Chemical Engineering, Volume 23 Thomas Bradford Drew No preview available - 1996. All Book Search results » Bibliographic information ...

Luyben - 1997 - American Institute of Chemical Engineers

William L. Luyben. Dept. of Chemical Engineering, Lehigh University, Bethlehem, PA 18015. Search for more papers by this author. Michael L. Luyben. Corresponding Author . DuPont Central Research & Development, Wilmington, DE 19880. DuPont Central Research & Development, Wilmington, DE 19880Search for more papers by this author. Bjorn D. Tyreus. DuPont Central Research & Development, Wilmington ...

Reactive Distillation Design and Control - William L ...

William L. Luyben, PHD, is Professor of Chemical Engineering at Lehigh University. In addition to forty years of teaching, Dr. Luyben spent nine years as an engineer with Exxon and DuPont. He has written nine books and more than 200 papers. He was the 2004 recipient of the Computing Practice Award from the CAST Division of the AIChE and was ...

E-Tree - William L. Luyben

Luyben WL. (2016) Economic trade-offs in acrylic acid reactor design Computers and Chemical Engineering. 93: 118-127: Luyben WL. (2016) Control comparison of conventional and thermally coupled ternary extractive distillation processes Chemical Engineering Research and Design. 106: 253-262: Luyben WL.

William Luyben at Lehigh University - RateMyProfessors.com

Bill Luyben is by far the best Chemical Engineering professor I have ever had. He gives great presentations and actually cares about the students learning. He is also the only one that is of any help for your ASPEN simulation. He is the reason Lehigh ChE is so well-respected. Try to get him for Unit Ops III as well, other professors are useless.

Chemical Reactor Design and Control (eBook, PDF) von ...

William L. Luyben, PhD, is a Professor of Chemical Engineering at Lehigh University. In addition to teaching for forty years, Dr. Luyben spent nine years as an engineer with Exxon and DuPont. He has written nine books, including Distillation Design and Control Using Aspen Simulation (Wiley), and more than 200 papers. He was awarded the AIChE CAST Division "Computing Practice Award" in 2003 and ...

Wiley: Principles and Case Studies of Simultaneous Design ...

WILLIAM L. LUYBEN, PhD, is a professor at Lehigh University, and the author/co-author of thirteen textbooks. He has published over 250 technical papers in the area of process control and design and has supervised thirty-five PhD dissertations He has nine years of industrial experience with Exxon and DuPont. See More. See Less. Reviews "I highly recommend the important and all encompassing book ...

CHEMICAL REACTOR DESIGN AND CONTROL

Luyben, William L. Chemical reactor design and control/William L. Luyben. p. cm. Includes index. ISBN 978-0-470-09770-0 (cloth) 1. Chemical reactors—Design and construction. I. Title. TP157.L89 2007 600’.2832--dc22 2006036208 Printed in the United States of America 10 9876 543 21. Dedicated to 40 classes of Lehigh Chemical Engineers. CONTENTS PREFACE xiii 1 REACTOR BASICS 1 1.1 ...

Chemical Reactor Design and Control - William L& Luyben ...

William L. Luyben, PhD, is a Professor of Chemical Engineering at Lehigh University. In addition to teaching for forty years, Dr. Luyben spent nine years as an engineer with Exxon and DuPont. He has written nine books, including Distillation Design and Control Using Aspen Simulation (Wiley), and more than 200 papers. He ...

Chemical & Biomolecular Engineering | P.C. Rossin College ...

Webinar: An Overview of Chemical Engineering Graduate Studies at LehighMORE: Webinar (Video) | Overview (PDF)Welcome and thank you for your interest in the chemical and biomolecular engineering (ChBE) department at Lehigh University.We offer an internationally recognized education and research focus areas in materials processing, environment and energy, bioengineering, and

William L. Luyben | Open Library

Author of Distillation design and control using Aspen simulation, Design and control of distillation systems for separating azeotropes, Principles and case studies of simultaneous design, Reactive distillation design and control, Process Modelling Chem Engg -Ise, Chemical Reactor Design and Control, Process modelling, simulation and control for chemical engineers, Process modeling, simulation ...

Process Modeling, Simulation, And Control For Chemical ...

Process Modeling, Simulation, And Control For Chemical Engineers book. Read reviews from world’s largest community for readers. This long-awaited revisio...

William L. Luyben - Amazon.com: Online Shopping for ...

by William L. Luyben , I-Lung Chien ... For most of these chemical systems, the authors explain how to achieve economically optimum steady-state designs. Moreover, readers learn how to implement practical control structures that provide effective load rejection to manage disturbances in throughput and feed composition. Trade-offs between steady-state energy savings and dynamic controllability ...

Personal webpages at NTNU

William La Luyben Department of Chemical Engineering Lehigh University Björn D. Tyréus Michael L. Luyben Central Research & Development E. l. du Pont de Nemours & Co., Inc. McGraw-Hill New York San Francisco Washington, D.C. Auckland Bogotá Caracas Lisbon London Madrid Mexico City Milan Montreal New Delhi San Juan Singapore Sydney Tokyo Toronto . Library of Congress Cataloging-in ...

William L. Luyben (Author of Process Modeling, Simulation ...

William L. Luyben is the author of Process Modeling, Simulation, And Control For Chemical Engineers (3.81 avg rating, 26 ratings, 1 review, published 197...

Chemical Reactor Design and Control | Wiley

William L. Luyben, PhD, is a Professor of Chemical Engineering at Lehigh University. In addition to teaching for forty years, Dr. Luyben spent nine years as an engineer with Exxon and DuPont. He has written nine books, including Distillation Design and Control Using Aspen Simulation (Wiley), and more than 200 papers. He was awarded the AIChE CAST Division "Computing Practice Award" in 2003 and ...

Results for William L. Luyben

William L. Luyben has written 11 work(s) Search for other authors with the same name. displaying 1 to 11 | at end show results in order: alphabetically | oldest to newest | newest to oldest. Distillation Design And Control Using Aspen Simulation . Product Description: The new edition of this book greatly updates and expands the previous edition. It boasts new chapters on the divided wall ...

ERIC - Search Results

Luyben, William L. – Chemical Engineering Education, 2007. Students frequently confuse and incorrectly apply the several "deltas" that are used in chemical engineering. The deltas come in three different flavors: "out minus in", "big minus little" and "now versus then." The first applies to a change in a stream property as the stream flows through a process. For example, the "[delta]H" in an ...

Design and Control of a Methanol Reactor/Column Process ...

Patrick J. Robinson and William L. Luyben. Plantwide Control of a Hybrid Integrated Gasification Combined Cycle/Methanol Plant. Industrial & Engineering Chemistry Research 2011, 50 (8) , 4579-4594.

Luyben William L - AbeBooks

Process Modeling, Simulation and Control for Chemical Engineers. William L. Luyben. Published by McGraw-Hill Companies 1989-08-01 (1989) ISBN 10: 0070391599 ISBN 13: 9780070391598. Used. Hardcover. Quantity available: 1. From: Lost Books (AUSTIN, TX, U.S.A.) Seller Rating: Add to Basket US$ 74.00 ...

Chemical Reactor Design and Control - William L. Luyben ...

Chemical Reactor Design and Control uses process simulators like Matlab®, Aspen Plus, and Aspen Dynamics to study the design of chemical reactors and their dynamic control. There are numerous books that focus on steady-state reactor design. There are no books that consider practical control systems for real industrial reactors. This unique reference addresses the simultaneous design and ...

9780470097700: Chemical Reactor Design and Control ...

Luyben, William L. 3.43 avg rating • (7 ratings by Goodreads) Hardcover ISBN 10: 0470097701 ISBN 13: 9780470097700. Publisher: Wiley-Interscience, 2007. This specific ISBN edition is currently not available. View all copies of this ISBN edition: Synopsis; About this title; Chemical Reactor Design and Control uses process simulators like Matlab®, Aspen Plus, and Aspen Dynamics to study the ...

Wikipedia:WikiProject Chemical and Bio Engineering

Victorleezhiyu (talk · contribs) - Chemical Engineering Student at Lehigh University fortunate enough to take a class with Prof. William L Luyben. Vramasub (talk · contribs) - Chemical Engineering Undergraduate Student; Vriezer44Vriezer44 (talk · contribs) - Chemical engineer and PhD student

William L. Luyben: Z-Library pulsuz elektron kitabxanası

William L. Luyben: Z-Library pulsuz elektron kitabxanası | Z-Library. Download books for free. Find books

Plantwide dynamic simulators in chemical processing and ...

William L. Luyben is Professor of Chemical Engineering, Lehigh University, Bethlehem, Pennsylvania. The author of numerous professional papers and books, he is a member of the American Institute of Chemical Engineers. He received the B.S. degree (1955) from the Pennsylvania State University, University Park, and the Ph.D. degree (1963) from the ...

William L Luyben | Book Depository

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William L Luyben - AbeBooks

Process Modeling, Simulation, and Control for Chemical Engineers by Luyben, William L. and a great selection of related books, art and collectibles available now at AbeBooks.co.uk.

Practical Distillation Control | W.L. Luyben | Springer

Distillation column control has been the the "Lehigh inquisition" and survived! So it subject of many, many papers over the last has been tested by the fire of both actual half century. Several books have been de­ review by a hard-nosed plant experience and voted to various aspects of the subject.

(PDF) Plantwide Dynamic Simulators in Chemical Processing ...

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Distillation Design and Control Using Aspen Simulation von ...

Entdecken Sie "Distillation Design and Control Using Aspen Simulation" von William L. Luyben und finden Sie Ihren Buchhändler. Learn how to develop optimal steady-state designs for distillation systems As the search for new energy sources grows ever more urgent, distillation remains at the forefront among separation methods in the chemical, petroleum, and energy industries. Most importantly ...

PLANTWIDE DYNAMIC SIMULATORS IN CHEMICAL PROCESSING AND By ...

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Principles and Case Studies of Simultaneous Design von ...

Entdecken Sie "Principles and Case Studies of Simultaneous Design" von William L. Luyben und finden Sie Ihren Buchhändler. There are many comprehensive design books, but none of them provide a significant number of detailed economic design examples of typically complex industrial processes. Most of the current design

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Volker Hessel Chemical Micro Process Engineering


Micro process engineering is approaching both academia and industry. With the provision of micro devices, systems and whole plants by commercial suppliers, one main barrier for using these units has been eliminated. This book focuses on processes and their plants rather than on devices: what is 'before', 'behind' and 'around' micro device fabrication – and gives a comprehensive and detailed overview on the micro-reactor plants and three topic-class applications which are mixing, fuel processing, and catalyst screening. Thus, the book reflects the current level of development from 'micro-reactor design' to 'micro-reactor process design'.

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Luyben William L. Design and Control of Distillation Systems for Separating Azeotropes


Hands-on guidance for the design, control, and operation of azeotropic distillation systems Following this book's step-by-step guidance, readers learn to master tested and proven methods to overcome a major problem in chemical processing: the distillation and separation of azeotropes. Practical in focus, the book fully details the design, control, and operation of azeotropic distillation systems, using rigorous steady-state and dynamic simulation tools. Design and Control of Distillation Systems for Separating Azeotropes is divided into five parts: Fundamentals and tools Separations without adding other components Separations using light entrainer (heterogeneous azeotropic distillation) Separations using heavy entrainer (extractive distillation) Other ways for separating azeotropes The distillation methods presented cover a variety of important industrial chemical systems, including the processing of biofuels. For most of these chemical systems, the authors explain how to achieve economically optimum steady-state designs. Moreover, readers learn how to implement practical control structures that provide effective load rejection to manage disturbances in throughput and feed composition. Trade-offs between steady-state energy savings and dynamic controllability are discussed, helping readers design and implement the distillation system that best meets their particular needs. In addition, economic and dynamic comparisons between alternative methods are presented, including an example of azeotropic distillation versus extractive distillation for the isopropanol/water system. With its focus on practical solutions, Design and Control of Distillation Systems for Separating Azeotropes is ideal for engineers facing a broad range of azeotropic separation problems. Moreover, this book is recommended as a supplemental text for undergraduate and graduate engineering courses in design, control, mass transfer, and bio-processing.

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CCPS (Center for Chemical Process Safety) Guidelines for Chemical Reactivity Evaluation and Application to Process Design


Drawn from international sources, this book provides principles and strategies for the evaluation of chemical reactions, and for using this information in process design and management. A useful resource for engineers who design, start-up, operate, and manage chemical and petrochemical plants, the book places special emphasis on the use of state-of-the-art technology in theory, testing methods, and applications in design and operations.

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George DeLancey Principles of Chemical Engineering Practice


Enables chemical engineering students to bridge theory and practice Integrating scientific principles with practical engineering experience, this text enables readers to master the fundamentals of chemical processing and apply their knowledge of such topics as material and energy balances, transport phenomena, reactor design, and separations across a broad range of chemical industries. The author skillfully guides readers step by step through the execution of both chemical process analysis and equipment design. Principles of Chemical Engineering Practice is divided into two sections: the Macroscopic View and the Microscopic View. The Macroscopic View examines equipment design and behavior from the vantage point of inlet and outlet conditions. The Microscopic View is focused on the equipment interior resulting from conditions prevailing at the equipment boundaries. As readers progress through the text, they'll learn to master such chemical engineering operations and equipment as: Separators to divide a mixture into parts with desirable concentrations Reactors to produce chemicals with needed properties Pressure changers to create favorable equilibrium and rate conditions Temperature changers and heat exchangers to regulate and change the temperature of process streams Throughout the book, the author sets forth examples that refer to a detailed simulation of a process for the manufacture of acrylic acid that provides a unifying thread for equipment sizing in context. The manufacture of hexyl glucoside provides a thread for process design and synthesis. Presenting basic thermodynamics, Principles of Chemical Engineering Practice enables students in chemical engineering and related disciplines to master and apply the fundamentals and to proceed to more advanced studies in chemical engineering.

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Andreas Jess Chemical Technology


This textbook provides an integral and integrated treatment of industrial-relevant problems for students of both chemistry and chemical engineering. As such, this work combines the four disciplines of chemical technology – chemistry, thermal and mechanical unit operations, chemical reaction engineering and general chemical technology – and is organized into two main parts. The first covers the fundamentals, as well as the analysis and design of industrial processes, while the second section presents 20 concrete processes, exemplifying the inherent applied nature of chemical technology. These are selected so that they all differ with respect to at least one important aspect, such as the type and design of the reactor, the chemistry involved or the separation process used. As a result, readers will recapitulate, deepen and exercise the chemical and engineering principles and their interplay, as well as being able to apply them to industrial practice. Instructive figures, rules of thumb for swift but reliable estimating of parameters, data of chemical media, and examples utilizing data from industrial processes facilitate and enhance the study process. A small general survey of selected modern trends, such as multifunctional and micro reactors, or new solvents for homogeneous catalysis, such as ionic liquids, point out to the reader that this is not a concluded discipline, but a developing field with many challenges waiting to be solved.

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American Institute of Chemical Engineers (AIChE) Dow's Chemical Exposure Index Guide


Dow Chemical developed the Chemical Exposure Index to help its engineers design and operate safer facilities. This seminal guide to rating the relative acute health hazard potential of a chemical release to workers and the neighboring community is available to the chemical process community. The index uses a methodology for estimating airborne quantity released, which allows for more sophisticated process analyses. Special Details: Softcover. The Dow Chemical Exposure Index and the Dow Fire and Explosion Index Hazard Classification Guide and the are designed to complement each other, helping engineers evaluate the total hazard potential of new installations These guides are invaluable resources for process design engineers, plant managers, and others involved in the safe design and operation of chemical plants. Don't take your plant's safety analysis only halfway–Purchase both books and take $10 off the combined list price.

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