Showing posts with label Chemical Processes. Show all posts
Showing posts with label Chemical Processes. Show all posts

Monday, June 8, 2020

Solution Manual for Separation process principles, Second Edition byJ D Seader, Ernest J Henley






Solution Manual for: Separation process principles, 2 nd Edition ByJ D Seader, Ernest J Henley


-- ch. 1. Separation process

-- ch. 2. Thermodynamics of separation operations

-- ch. 3. Mass transfer and diffusion

-- ch. 4. Single equilibrium stages and flash calculation s

-- ch. 5. cascades and hybrid systems

-- ch. 6. Absorption and stripping of dilute mixtures

-- ch. 7. Distillation of binary mixtures

 -- ch. 8. Liquid-liquid extraction with ternary systems

-- ch. 9. Approximate methods for multicomponent, multistage separations

-- ch. 10. Equilibrium-based methods for multicomponent absorption, stripping, distillation, and extraction

-- ch. 11. Enhanced distillation and supercritical extraction

-- ch. 12. Rate-based models for distillation

-- ch. 13. Batch distillation

-- ch. 14. Membrane separation s

-- ch. 15. Adsorption, ion exchange, and chromatography

-- ch. 16. Leaching and washing

-- ch. 17. Crystallization, desublimation, and evaporation

-- ch. 18. Drying of solids

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Thursday, January 28, 2016

Survey of Industrial Chemistry - Chenier, Third Edition



Survey of Industrial Chemistry (Topics in Applied Chemistry) 3rd Edition
by Philip J. Chenier  (Author), ISBN-13: 978-0306472466, ISBN-10: 0306472465, (6.50 MB)

Survey of Industrial Chemistry arose from a need for a basic text dealing with industrial chemistry for use in a one semester, three-credit senior level course taught at the University of Wisconsin-Eau Claire. This edition covers all important areas of the chemical industry, yet it is reasonable that it can be covered in 40 hours of lecture. Also an excellent resource and reference for persons working in the chemical and related industries, it has sections on all important technologies used by these industries: a one-step source to answer most questions on practical, applied chemistry. Young scientists and engineers just entering the workforce will find it especially useful as a readily available handbook to prepare them for a type of chemistry quite different than they have seen in their traditional coursework, whether graduate or undergraduate.

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Thursday, January 3, 2013

Model Based Control: Case Studies in Process Engineering, By: Arpad Imre-Lucaci, Mircea Vasile Cristea, P.S.Agashi, and Zoltan K.Nagy


Model Based Control: Case Studies in Process Engineering, By: Arpad Imre-Lucaci, Mircea Vasile Cristea, P.S.Agashi, and Zoltan K.Nagy. November 10, 2006 3527315454 978-3527315451 1

Filling a gap in the literature for a practical approach to the topic, this book is unique in including a whole section of case studies presenting a wide range of applications from polymerization reactors and bioreactors, to distillation column and complex fluid catalytic cracking units. A section of general tuning guidelines of MPC is also present. These thus aid readers in facilitating the implementation of MPC in process engineering and automation. At the same time many theoretical, computational and implementation aspects of model-based control are explained, with a look at both linear and nonlinear model predictive control. Each chapter presents details related to the modeling of the process as well as the implementation of different model-based control approaches, and there is also a discussion of both the dynamic behavior and the economics of industrial processes and plants. The book is unique in the broad coverage of different model based control strategies and in the variety of applications presented. A special merit of the book is in the included library of dynamic models of several industrially relevant processes, which can be used by both the industrial and academic community to study and implement advanced control strategies.

About Authors:

Professor Paul Serban Agachi graduated 1970 in Control Engineering at the Politehnica University of Bucharest and obtained his Ph.D. in Chemical Engineering from the University for Petroleum & Gas in Ploiesti, Romania. His professional experience ranges from design engineer and system analyst in process control design to researcher in fuel cells, process modeling, optimization and control, and also professor of process control at the Department of Chemical Engineering of Babes-Bolyai University, Cluj-Napoca. He was visiting associate at California Institute of Technology, invited professor at E?tv?s Lorand University, UNESCO Higher Education consultant, member of the Academy of Technical Sciences of Romania, chair of CAPE Forum 2005, and co-chair of ESCAPE 17. He has published 7 books and 85 scientific papers.

Zoltan K. Nagy received his M.S. and Ph.D. degrees in chemical engineering from Babes-Bolyai University of Cluj-Napoca in 1995 and 2001, respectively, where is currently working. Between 1999 and 2005 he was research associate and visiting lecturer in different international research teams, e.g., at ETH Z?rich, the University of Heidelberg, the University of Stuttgart, and the University of Illinois at Urbana-Champaign. He worked on industrial implementation of model-based control strategies with companies such as BASF and ABB, and has published over 60 papers in the field.
 
Cristea Vasile Mircea graduated the Faculty of Electrotechnics, Romania, with specialization on process control and computer science and holds a Ph.D. degree in process control. After 8 years spent in industry he is at present Associate Professor at Babes-Bolyai University, Cluj-Napoca; his interests lie in systems theory, chemical process control, advanced process control, data acquisition and control, linear and nonlinear model based predictive control, and fuzzy control. He was director of CNCSIS Projects and has published 3 books as well as over 55 scientific papers.
 
Arpad Imre-Lucaci received his M.S. and Ph.D. degrees in chemical engineering from Babes-Bolyai University of Cluj-Napoca in 1985 and 1999, respectively. Since 1988 he has worked in the Chemical Engineering Department of BBU Cluj-Napoca, Romania, and spent research stays at University of Stuttgart (1994) and ETH Zurich (in 2002 and 2003). His main research fields are mathematical modeling, simulation and optimization in process industries, on which he has published over 20 scientific papers.

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Sunday, March 25, 2012

Basic Principles and Calculations in Chemical Engineering. By David M. Himmelblau



Basic Principles and Calculations in Chemical Engineering  by David M. Himmelblau 
Prentice-Hall International Series in the Physical and Chemical Engineering Sciences
Prentice Hall | 1989 | ISBN: 013066572X| 753 pages | PDF | 22.9 Mb

For first and required introductory course taken by all undergraduate chemical engineering majors.
Self-contained in approach, it provides all necessary background information on units and measurement, physical properties, basic laws about the behavior of gases, liquids, and solids, and some basic mathematical tools.
This student-friendly introduction to the principles and calculations used in the field of chemical, petroleum, and environmental engineering is designed to help students:
1) develop systematic problem-solving skills, 
2) learn what material balances are, how to formulate, apply, and solve them, 
3) learn what energy balances are and how to apply them,
4) learn how to deal with the complexity of big problems.

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Saturday, March 24, 2012

Elementary Principles of Chemical Processes By Richard M. Felder, Ronald W. Rousseau







Elementary Principles of Chemical Processes, Third Edition, By Richard M. Felder, Ronald W. Rousseau
Publisher: Wiley | ISBN: 047168757X | edition 2005 | PDF | 712 pages | 8.43 MB

Gain a better understanding of chemical processes. This text will provide you with a realistic, informative introduction to chemical processes. This 3rd edition has been completely revised to provide you with increased clarity, including: Hundreds of new and revised problems and new case studies cover a broader spectrum of chemical engineering applications. Guidance for solving problems that require spread sheeting and equation-solving software.

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