Distillation Theory and its Application to Optimal Design of Separation Units

Distillation Theory and its Application to Optimal Design of Separation Units
Author: F. B. Petlyuk
Publsiher: Cambridge University Press
Total Pages: 368
Release: 2004-10-18
Genre: Technology & Engineering
ISBN: 113945563X

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Originally published in 2004, Distillation Theory and Its Application to Optimal Design of Separation Units presents a clear, multidimensional geometric representation of distillation theory that is valid for all distillation column types, splits, and mixtures. This representation answers such fundamental questions as: what are the feasible separation products for a given mixture? What minimum power is required to separate a given mixture? What minimum number of trays is necessary to separate a given mixture at a fixed power input? This book is intended for students and specialists in the design and operation of separation units in the chemical, pharmaceutical, food, wood, petrochemical, oil-refining, and natural gas industries and for software designers.

Distillation Theory and Its Application to Optimal Design of Separation Units

Distillation Theory and Its Application to Optimal Design of Separation Units
Author: Anonim
Publsiher: Unknown
Total Pages: 135
Release: 2011
Genre: Electronic Book
ISBN: OCLC:723238578

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Distillation Theory and Its Application to Optimal Design of Separation Units

Distillation Theory and Its Application to Optimal Design of Separation Units
Author: Anonim
Publsiher: Unknown
Total Pages: 336
Release: 2004
Genre: Distillation
ISBN: 0511230796

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Understanding Distillation Using Column Profile Maps

Understanding Distillation Using Column Profile Maps
Author: Daniel Beneke,Mark Peters,David Glasser,Diane Hildebrandt
Publsiher: John Wiley & Sons
Total Pages: 386
Release: 2012-12-10
Genre: Technology & Engineering
ISBN: 9781118145401

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Researchers share their pioneering graphical method for designing almost any distillation structure Developed by the authors in collaboration with other researchers at the Centre of Material and Process Synthesis, column profile maps (CPMs) enable chemical engineers to design almost any distillation structure using novel graphical techniques. The CPM method offers tremendous advantages over other design methods because it is generalized and not constrained to a particular piece of equipment. Understanding Distillation Using Column Profile Maps enables readers to understand, analyze, and design distillation structures to solve common distillation problems, including distillation by simple columns, side rectifiers and strippers, multiple feed columns, and fully thermally coupled columns. In addition, the book presents advanced topics such as reactive distillation, membrane permeation, and validation of thermodynamic models. For all these processes, the authors set forth easy-to-follow design techniques, solution strategies, and insights gained using CPMs. This book offers everything needed to fully understand and use CPMs as a design tool: Figures help readers understand how to use CPMs as design and optimization tools Examples clearly illustrate how to solve specific problems using CPMs Tutorials allow readers to explore key concepts through experimentation Design and Optimization of Distillation Systems software package, developed for this book, enables readers to reproduce the examples in the book, follow the tutorials, and begin designing their own distillation systems With its many examples and step-by-step tutorials, Understanding Distillation Using Column Profile Maps is recommended for students in chemical engineering in advanced undergraduate and graduate courses. The book also provides new practical techniques that can be immediately applied by chemical engineering professionals in industry.

Advanced Distillation Technologies

Advanced Distillation Technologies
Author: Anton A. Kiss
Publsiher: John Wiley & Sons
Total Pages: 301
Release: 2013-02-26
Genre: Science
ISBN: 9781118544815

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Distillation has historically been the main method for separating mixtures in the chemical process industry. However, despite the flexibility and widespread use of distillation processes, they still remain extremely energy inefficient. Increased optimization and novel distillation concepts can deliver substantial benefits, not just in terms of significantly lower energy use, but also in reducing capital investment and improving eco-efficiency. While likely to remain the separation technology of choice for the next few decades, there is no doubt that distillation technologies need to make radical changes in order to meet the demands of the energy-conscious society. Advanced Distillation Technologies: Design, Control and Applications gives a deep and broad insight into integrated separations using non-conventional arrangements, including both current and upcoming process intensification technologies. It includes: Key concepts in distillation technology Principles of design, control, sizing and economics of distillation Dividing-wall column (DWC) – design, configurations, optimal operation and energy efficient and advanced control DWC applications in ternary separations, azeotropic, extractive and reactive distillation Heat integrated distillation column (HIDiC) – design, equipment and configurations Heat-pump assisted applications (MVR, TVR, AHP, CHRP, TAHP and others) Cyclic distillation technology – concepts, modeling approach, design and control issues Reactive distillation – fundamentals, equipment, applications, feasibility scheme Results of rigorous simulations in Mathworks Matlab & Simulink, Aspen Plus, Dynamics and Custom Modeler Containing abundant examples and industrial case studies, this is a unique resource that tackles the most advanced distillation technologies – all the way from the conceptual design to practical implementation. The author of Advanced Distillation Technologies, Dr. Ir. Anton A. Kiss, has been awarded the Hoogewerff Jongerenprijs 2013. Find out more (website in Dutch)...

Distillation Fundamentals and Principles

Distillation  Fundamentals and Principles
Author: Andrzej Gorak,Eva Sorensen
Publsiher: Academic Press
Total Pages: 450
Release: 2014-07-22
Genre: Science
ISBN: 9780123865489

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Distillation: Fundamentals and Principles — winner of the 2015 PROSE Award in Chemistry & Physics — is a single source of authoritative information on all aspects of the theory and practice of modern distillation, suitable for advanced students and professionals working in a laboratory, industrial plants, or a managerial capacity. It addresses the most important and current research on industrial distillation, including all steps in process design (feasibility study, modeling, and experimental validation), together with operation and control aspects. This volume features an extra focus on the conceptual design of distillation. Winner of the 2015 PROSE Award in Chemistry & Physics from the Association of American Publishers Practical information on the newest development written by recognized experts Coverage of a huge range of laboratory and industrial distillation approaches Extensive references for each chapter facilitates further study

Distillation

Distillation
Author: Alfons Vogelpohl
Publsiher: Walter de Gruyter GmbH & Co KG
Total Pages: 122
Release: 2021-03-08
Genre: Science
ISBN: 9783110739732

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Distillation basedon Mass Transfer Processes, starting from the basic equation of ternary distillation published by Hausen in 1932 and exploiting the properties of this equation covering all modes of distillation. The material is intended as a graduate textbook for an advanced course on distillation but will also help the practicing engineer to better understand the complex interrelationships of multi-component distillation.

Reactive Separation for Process Intensification and Sustainability

Reactive Separation for Process Intensification and Sustainability
Author: Carlos Ariel Cardona Alzate,Mariana Ortiz Sanchez,Pisarenko Yury Andrianovich
Publsiher: CRC Press
Total Pages: 225
Release: 2019-12-23
Genre: Technology & Engineering
ISBN: 9781000751017

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This book describes, analyses and discusses the main principles, phenomena and design strategies of reactive separation processes with an emphasis on the intensification as a basis of the sustainability. Different reactive separation processes are explained in detail to show the phenomena and with the purpose of understanding when their use allows advantages based on the output results. Case examples are analysed and the perspective of these processes in the future is discussed. The overall sustainability of reactive separation processes in the industry is also explained separately.