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| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
| International Standard Book Number |
9781786309846 |
| Qualifying information |
hardcover |
| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
| International Standard Book Number |
9781394372348 |
| Qualifying information |
electronic book |
| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
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1394372345 |
| Qualifying information |
electronic book |
| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
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9781394372324 |
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electronic book |
| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
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1394372329 |
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electronic book |
| 041 ## - LANGUAGE CODE |
| Language code of text/sound track or separate title |
eng |
| 050 #4 - LIBRARY OF CONGRESS CALL NUMBER |
| Classification number |
TP155 |
| Item number |
.C44 2025 |
| 082 00 - DEWEY DECIMAL CLASSIFICATION NUMBER |
| Edition number |
23 |
| Classification number |
660 |
| 245 00 - TITLE STATEMENT |
| Title |
Chemical engineering essentials. |
| Number of part/section of a work |
1, |
| Name of part/section of a work |
Comprehensive chemical engineering / |
| Statement of responsibility, etc |
edited by Raj Kumar Arya, George D. Verros, J. Paulo Davim. |
| 264 #1 - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT) |
| Place of publication, distribution, etc |
London, UK : |
| Name of publisher, distributor, etc |
ISTE Ltd ; |
| Place of publication, distribution, etc |
Hoboken, NJ : |
| Name of publisher, distributor, etc |
John Wiley & Sons, Inc., |
| Date of publication, distribution, etc |
2025. |
| 264 #4 - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT) |
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©2025 |
| 300 ## - PHYSICAL DESCRIPTION |
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1 online resource. |
| 336 ## - CONTENT TYPE |
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text |
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txt |
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rdacontent |
| 337 ## - MEDIA TYPE |
| Media type term |
computer |
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c |
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rdamedia |
| 338 ## - CARRIER TYPE |
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online resource |
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cr |
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rdacarrier |
| 490 1# - SERIES STATEMENT |
| Series statement |
Chemical engineering series |
| 505 0# - CONTENTS |
| Miscellaneous information |
Table of Contents<br/>Preface xv<br/>Raj Kumar ARYA, George D. VERROS and J. Paulo DAVIM<br/><br/>Part 1. Fundamental Principles 1<br/><br/>Chapter 1. Overview of Chemical Engineering 3<br/>Devyani THAPLIYAL, Kshitij TEWARI, Chitresh Kumar BHARGAVA, Avinash CHANDRA, Pramita SEN, Rahul KUMAR, Amit K. THAKUR, George D. VERROS and Raj Kumar ARYA<br/><br/>1.1. Introduction 3<br/><br/>1.2. History of chemical engineering 4<br/><br/>1.3. Chemical engineering profession 5<br/><br/>1.4. Features and challenges in chemical engineering 6<br/><br/>1.5. Conclusions 14<br/><br/>1.6. References 15<br/><br/>Chapter 2. Fundamentals of Material and Energy Balances 17<br/>Kshitij TEWARI, Devyani THAPLIYAL, Chitresh Kumar BHARGAVA, Avinash CHANDRA, Pramita SEN, Rahul KUMAR, Amit K. THAKUR, George D. VERROS and Raj Kumar ARYA<br/><br/>2.1. Introduction 17<br/><br/>2.2. Process term definitions 18<br/><br/>2.3. Engineering calculations - introduction 21<br/><br/>2.4. International system of units (SI) 22<br/><br/>2.5. Analysis of processes and variables affecting density 25<br/><br/>2.6. Classification of material balances in process fundamentals 29<br/><br/>2.7. General balance equation 30<br/><br/>2.8. Flow charts and process balancing 33<br/><br/>2.9. Degree-of-freedom analysis. 33<br/><br/>2.10. Procedure for calculating material balances in single unit processes 35<br/><br/>2.11. Recycling and bypassing 35<br/><br/>2.12. Limiting reactant 36<br/><br/>2.13. Product separation and recycling 37<br/><br/>2.14. Combustion 37<br/><br/>2.15. Single-phase systems 38<br/><br/>2.16. Clausius-Clapeyron equation 39<br/><br/>2.17. Mass balance problem 42<br/><br/>2.18. Energy and the concept of energy balance 46<br/><br/>2.18.1. Energy balances for closed systems 46<br/><br/>2.19. Energy balances on open systems in the steady state 47<br/><br/>2.19.1. Steady-state energy balance of the open system 48<br/><br/>2.20. Estimation of heat capacity 51<br/><br/>2.21. Estimation and correlation of latent heat 52<br/><br/>2.22. Heats of solution and mixing 53<br/><br/>2.23. Heat of reaction measurement 55<br/><br/>2.24. Energy balance problem 60<br/><br/>2.25. References 63<br/><br/>Chapter 3. Laws of Thermodynamics 65<br/>Girish GUPTA and Neha DHIMAN<br/><br/>3.1. Introduction 65<br/><br/>3.2. Thermodynamical systems 66<br/><br/>3.3. Types of system 68<br/><br/>3.4. Macroscopic system and properties 69<br/><br/>3.5. State of system and state variables 70<br/><br/>3.6. Zeroth law of thermodynamics 71<br/><br/>3.7. Heat 72<br/><br/>3.8. Work 73<br/><br/>3.9. State functions and path functions 73<br/><br/>3.10. First law of thermodynamics 74<br/><br/>3.11. Internal energy is a state function 74<br/><br/>3.12. Work and heat are path functions 75<br/><br/>3.13. Second law of thermodynamics 76<br/><br/>3.14. Thermal energy reservoir 76<br/><br/>3.15. Heat engines 77<br/><br/>3.16. The second law: Kelvin-Plank statement 77<br/><br/>3.17. The second law: Clausius’ statement 78<br/><br/>3.18. Refrigerator and heat pumps 78<br/><br/>3.19. References 78<br/><br/>Chapter 4. Thermodynamic Properties and Equations of States 79<br/>Dipaloy DATTA<br/><br/>4.1. Thermodynamic property relations of pure substances 80<br/><br/>4.2. Equations of states 99<br/><br/>4.3. References 102<br/><br/>Chapter 5. Thermodynamics and Phase Equilibrium 103<br/>Vyomesh M. PARSANA, Abhishek GUPTA, Dharmesh SUR and Kedar JOSHI<br/><br/>5.1. Introduction 103<br/><br/>5.2. Fundamentals of thermodynamics 104<br/><br/>5.3. Vapor-liquid equilibrium 111<br/><br/>5.4. Solid-liquid equilibrium 128<br/><br/>5.5. Liquid-liquid equilibrium 130<br/><br/>5.6. References 132<br/><br/>5.7. Further reading 133<br/><br/>Part 2. Fluid Mechanics and Transport Phenomena 135<br/><br/>Chapter 6. Basics of Flow Through Equipment 137<br/>Devyani THAPLIYAL, Kshitij TEWARI, Chitresh Kumar BHARGAVA, Avinash CHANDRA, Pramita SEN, Rahul KUMAR, Amit K. THAKUR, George D. VERROS and Raj Kumar ARYA<br/><br/>6.1. Fundamental laws of fluid mechanics 137<br/><br/>6.2. Pumps, compressors and flowmeters 153<br/><br/>6.3. Pressure drop in designing equipment 164<br/><br/>6.4. Computational fluid dynamics 175<br/><br/>6.5. Conclusions 183<br/><br/>6.6. References 183<br/><br/>Chapter 7. Conduction, Convection and Radiation 189<br/>Thangallapalli SRINIVAS, G. SRINIVAS, B.K. PUROHIT and A.V. RAGHAVENDRA RAO<br/><br/>7.1. Fundamentals of heat transfer mechanisms 189<br/><br/>7.2. Conduction 193<br/><br/>7.3. Convection heat transfer 207<br/><br/>7.4. Radiation heat transfer 220<br/><br/>7.5. References 226<br/><br/>Chapter 8. Diffusion and Mass Transfer Coefficients 229<br/>A.V. RAGHAVENDRA RAO, Rompicherla SRIVIDYA, V. Sravani SAMEERA, K.S.N.V. PRASAD and Thangallapalli SRINIVAS<br/><br/>8.1. Introduction 229<br/><br/>8.2. Diffusion mass transfer 231<br/><br/>8.3. Mass transfer coefficients 244<br/><br/>8.4. Nomenclature 252<br/><br/>8.5. References 253<br/><br/>Part 3. Separation Processes 263<br/><br/>Chapter 9. Extraction 265<br/>Juli DAS, Diptanu DE, Aanchal MITTAL, G.C. JEEVITHA and Sangeeta GARG<br/><br/>9.1. Introduction 265<br/><br/>9.2. Conventional extraction methods 266<br/><br/>9.3. Modern extraction methods 286<br/><br/>9.4. Conclusion 294<br/><br/>9.5. References 295<br/><br/>Chapter 10. Distillation 303<br/>Neha DHIMAN and Girish GUPTA<br/><br/>10.1. Introduction 303<br/><br/>10.2. Applications of distillation process 304<br/><br/>10.3. Relative volatility 305<br/><br/>10.4. Classification of distillation 307<br/><br/>10.5. References 330<br/><br/>Chapter 11. Mathematical Modeling of Binary and Multicomponent Distillation 331<br/>Ananya MUNNANGI, MUTHAMIZHI K., KARTHIKEYAN C., K. TAMILSELVI and A.B. MOHAMMED BASITH<br/><br/>11.1. Introduction 331<br/><br/>11.2. Ideal simple distillation 332<br/><br/>11.3. Nonideal multicomponent distillation 337<br/><br/>11.4. Batch distillation 340<br/><br/>11.5. Applications and advancements 342<br/><br/>11.6. Conclusion 343<br/><br/>11.7. References 343<br/><br/>Chapter 12. Filtration and Membrane Processes 345<br/>Esmaeil ALLAHKARAMI and Ebrahim ALLAHKARAMI<br/><br/>12.1. Introduction 346<br/><br/>12.2. Types of membranes 349<br/><br/>12.3. Membrane fabrication techniques 363<br/><br/>12.4. Application of membrane processes 367<br/><br/>12.5. Membrane fouling 374<br/><br/>12.6. Conclusion 380<br/><br/>12.7. References 381<br/><br/>Chapter 13. Pervaporation 393<br/>Tapas PALAI, Abhishek KUMAR and Leela Manohar AESHALA<br/><br/>13.1. Introduction 393<br/><br/>13.2. Basics of membrane separation processes 394<br/><br/>13.3. Pervaporation 401<br/><br/>13.4. Selection of membrane 413<br/><br/>13.5. Recent developments 418<br/><br/>13.6. Future scope and emerging trends 420<br/><br/>13.7. References 421<br/><br/>List of Authors 427<br/><br/>Index 431<br/><br/>Summary of Volume 2 435 |
| 520 ## - SUMMARY, ETC. |
| Summary, etc |
In an era of rapid innovation and with a focus on sustainability, Chemical Engineering Essentials provides a definitive guide to mastering the discipline. Divided into two volumes, this series offers a seamless blend of foundational knowledge and advanced applications to address the evolving needs of academia and industry.<br/><br/>This volume lays a strong foundation with topics such as material and energy balances, thermodynamics, phase equilibrium, fluid mechanics, transport phenomena, and essential separation processes such as distillation and membrane technologies.<br/><br/>Volume 2 builds on these principles, delving into reaction engineering, reactor modeling with MATLAB and ASPEN PLUS, material properties, process intensification and nanotechnology. It also addresses critical global challenges, emphasizing green chemistry, waste minimization, resource recovery, and workplace safety.<br/><br/>Together, these volumes provide a holistic understanding of chemical engineering, equipping readers with the tools to innovate and lead in a dynamic and sustainable future. |
| 545 0# - BIOGRAPHICAL OR HISTORICAL DATA |
| Biographical or historical note |
About the Author<br/>Raj Kumar Arya works at the Dr. B. R. Ambedkar National Institute of Technology in Jalandhar, India.<br/><br/>George D. Verros works in the Public Sector in Thessaloniki, Greece.<br/><br/>J. Paulo Davim works at the University of Aveiro in Aveiro, Portugal. |
| 588 ## - SOURCE OF DESCRIPTION NOTE |
| Source of description note |
Description based on online resource; title from digital title page (viewed on April 30, 2025). |
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Chemical engineering. |
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http://id.loc.gov/authorities/subjects/sh85022900 |
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Génie chimique. |
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chemical engineering. |
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aat |
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Electronic books. |
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Arya, Raj Kumar, |
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editor. |
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http://id.loc.gov/authorities/names/no2023118968 |
| 700 1# - ADDED ENTRY--PERSONAL NAME |
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Verros, George D., |
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editor. |
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http://id.loc.gov/authorities/names/no2023118972 |
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Davim, J. Paulo, |
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editor. |
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https://id.oclc.org/worldcat/entity/E39PBJgRW8hfBbTftdMR7kBXVC |
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http://id.loc.gov/authorities/names/n2008057681 |
| 830 #0 - SERIES ADDED ENTRY--UNIFORM TITLE |
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Chemical engineering series (ISTE Ltd.) |
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http://id.loc.gov/authorities/names/no2015061892 |
| 856 40 - ELECTRONIC LOCATION AND ACCESS |
| Uniform Resource Identifier |
https://onlinelibrary.wiley.com/doi/book/10.1002/9781394372348 |
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John Wiley and Sons |
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EBOOK |