Introduction to Supercritical Fluids: A Spreadsheet-based Approach

Author:   Richard Smith (Research Center of Supercritical Fluid Technology, Tohoku University, Japan) ,  Hiroshi Inomata (Tohoku University, Japan) ,  Cor Peters (Distinguished Professor, Petroleum Institute, Chemical Engineering Department, Abu Dhabi, United Arab Emirates)
Publisher:   Elsevier Science & Technology
Volume:   4
ISBN:  

9780444522153


Pages:   752
Publication Date:   13 December 2013
Replaced By:   9780443137433
Format:   Hardback
Availability:   Manufactured on demand   Availability explained
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Introduction to Supercritical Fluids: A Spreadsheet-based Approach


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Overview

This text provides an introduction to supercritical fluids with easy-to-use Excel spreadsheets suitable for both specialized-discipline (chemistry or chemical engineering student) and mixed-discipline (engineering/economic student) classes. Each chapter contains worked examples, tip boxes and end-of-the-chapter problems and projects. Part I covers web-based chemical information resources, applications and simplified theory presented in a way that allows students of all disciplines to delve into the properties of supercritical fluids and to design energy, extraction and materials formation systems for real-world processes that use supercritical water or supercritical carbon dioxide. Part II takes a practical approach and addresses the thermodynamic framework, equations of state, fluid phase equilibria, heat and mass transfer, chemical equilibria and reaction kinetics of supercritical fluids. Spreadsheets are arranged as Visual Basic for Applications (VBA) functions and macros that are completely (source code) accessible for students who have interest in developing their own programs. Programming is not required to solve problems or to complete projects in the text.

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Author:   Richard Smith (Research Center of Supercritical Fluid Technology, Tohoku University, Japan) ,  Hiroshi Inomata (Tohoku University, Japan) ,  Cor Peters (Distinguished Professor, Petroleum Institute, Chemical Engineering Department, Abu Dhabi, United Arab Emirates)
Publisher:   Elsevier Science & Technology
Imprint:   Elsevier Science Ltd
Volume:   4
Dimensions:   Width: 15.20cm , Height: 5.10cm , Length: 22.90cm
Weight:   1.250kg
ISBN:  

9780444522153


ISBN 10:   0444522158
Pages:   752
Publication Date:   13 December 2013
Audience:   College/higher education ,  Professional and scholarly ,  Postgraduate, Research & Scholarly ,  Professional & Vocational
Replaced By:   9780443137433
Format:   Hardback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Preface Part I – for Multi-disciplinary instruction Chapter 1. Chemical Vocabulary and Essentials Chapter 2. Systems, Devices and Processes Chapter 3. Chemical information and Know-How Chapter 4. Historical background and Applications Part II – for Specialized discipline instruction Chapter 5. Underlying thermodynamics and fundamentals Chapter 6. Equations of state and formulations Chapter 7. Phase equilibria and Mass transfer Chapter 8. Heat transfer and Finite-difference methods Chapter 9. Chemical equilibria and Kinetics Appendices

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Author Information

Richard L. Smith, Jr., Ph.D in Chemical Engineering, Georgia Institute of Technology, Asia Regional Editor of The Journal of Supercritical Fluids. Hi is the author of more than 150 scientific papers related to properties, separations and materials with supercritical fluids. Hiroshi Inomata received his Doctor of Engineering from Tohoku University in 1986. He is former Director of the Research Center of Supercritical Fluid Technology and Professor at Tohoku University, Japan. He is the author of more than 250 scientific papers related to thermodynamics, phase equilibria and molecular simulation of supercritical fluids. Cor J. Peters, Ph.D. in Chemical Engineering, Delft University of Technology is the author of more than 250 scientific papers related to high pressure phase behavior and separations with supercritical fluids.

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