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| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
| International Standard Book Number |
9781836690177 |
| Qualifying information |
hardcover |
| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
| International Standard Book Number |
9781394372379 |
| Qualifying information |
electronic book |
| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
| International Standard Book Number |
139437237X |
| Qualifying information |
electronic book |
| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
| International Standard Book Number |
9781394372355 |
| Qualifying information |
electronic book |
| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
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1394372353 |
| Qualifying information |
electronic book |
| 020 ## - INTERNATIONAL STANDARD BOOK NUMBER |
| Cancelled/invalid ISBN |
1836690177 |
| Qualifying information |
hardcover |
| 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 |
2, |
| Name of part/section of a work |
Advanced processes, materials, and sustainability / |
| 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) |
| Date of publication, distribution, etc |
©2025 |
| 300 ## - PHYSICAL DESCRIPTION |
| Extent |
1 online resource. |
| 336 ## - CONTENT TYPE |
| Content type term |
text |
| Content type code |
txt |
| Source |
rdacontent |
| 337 ## - MEDIA TYPE |
| Media type term |
computer |
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c |
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rdamedia |
| 338 ## - CARRIER TYPE |
| Carrier type term |
online resource |
| Carrier type code |
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 xiii<br/>Raj Kumar ARYA, George D. VERROS and J. Paulo DAVIM<br/><br/>Part 1. Reaction Engineering 1<br/><br/>Chapter 1. Compaction, Compression and Consolidation in Pharmaceutical Industries 3<br/>Neha DHIMAN and Girish GUPTA<br/><br/>1.1. Introduction to compression, compaction and consolidation 3<br/><br/>1.2. Definition and importance in pharmaceutical manufacturing 4<br/><br/>1.3. Powder properties and their characterization 7<br/><br/>1.4. Powdered characterization techniques 12<br/><br/>1.5. Tablet compression, compaction process and consolidation mechanisms 15<br/><br/>1.6. Tablet properties and quality control 19<br/><br/>1.7. Tablet manufacturing challenges 23<br/><br/>1.8. Compaction data analysis 25<br/><br/>1.9. Conclusion 28<br/><br/>1.10. References 28<br/><br/>Chapter 2. Reactive Chromatography: A Concept of Multifunctional Reactors 31<br/>Praveen Kumar GHODKE, Sudip DAS and Rohidas BHOI<br/><br/>2.1. Introduction 31<br/><br/>2.2. Concept of multifunctional reactor 32<br/><br/>2.3. Reactive distillation 32<br/><br/>2.4. Reactive chromatography 33<br/><br/>2.5. Types of chromatographic reactors 34<br/><br/>2.6. Comparative discussion 41<br/><br/>2.7. Applications of chromatographic reactors 41<br/><br/>2.8. Mathematical modeling of chromatographic reactors 44<br/><br/>2.9. Mathematical modeling of FBCRs 44<br/><br/>2.10. Equilibrium-based continuous models 46<br/><br/>2.11. General rate model and simplified versions 46<br/><br/>2.12. Phase distribution 46<br/><br/>2.13. Model parameters 51<br/><br/>2.14. Adsorption equilibrium isotherms 51<br/><br/>2.15. Challenges and future prospect of chromatographic reactors 57<br/><br/>2.16. References 58<br/><br/>Chapter 3. Mathematical Modeling of a Batch Reactor and a Non-Isothermal CSTR with Their Respective Simulation Using MATLAB and ASPEN PLUS 63<br/>Karthikeyan C., Praveen Kumar V., Preetha V. and Faheem ARAKKAL<br/><br/>3.1. Introduction 63<br/><br/>3.2. Modeling of a batch reactor 64<br/><br/>3.4. Conclusion 74<br/><br/>3.5. References 75<br/><br/>Part 2. Material Properties and Advanced Applications 79<br/><br/>Chapter 4. Properties of Materials and Selection Criteria 81<br/>Dharmesh SUR, Abhishek GUPTA, Swati DUBEY and Avanish KUMAR<br/><br/>4.1. Introduction 81<br/><br/>4.2. Mechanical properties 83<br/><br/>4.3. Chemical properties 88<br/><br/>4.4. Other significant properties 91<br/><br/>4.5. Criteria for material selection with design consideration 94<br/><br/>4.6. References 106<br/><br/>Chapter 5. Hydrogen Production Pathways and Role of Catalysts 109<br/>Anjali BAUDH, Sweta SHARMA and Rajesh Kumar UPADHYAY<br/><br/>5.1. Introduction 109<br/><br/>5.2. Hydrogen production mechanisms 110<br/><br/>5.3. Renewable production methods 117<br/><br/>5.4. Conventional and membrane reformers 121<br/><br/>5.5. Catalysts for hydrogen production technologies 122<br/><br/>5.6. Conclusion and future prospects 126<br/><br/>5.7. References 127<br/><br/>Chapter 6. Maximizing Vinyl Chloride Production: An ASPEN PLUS Simulation Approach 131<br/>Edwin Varghese THOMAS, Selva KUMAR RAJA K., Karthikeyan C., Muthamizhi K. and Akhila HARIHARAN<br/><br/>6.1. Introduction 131<br/><br/>6.2. Methodology 135<br/><br/>6.3. Results and discussion 137<br/><br/>6.4. Energy used 140<br/><br/>6.5. Conclusion 141<br/><br/>6.6. References 141<br/><br/>Chapter 7. Process Intensification and Advanced Materials 143<br/>Madhura A. BODKHE<br/><br/>7.1. Introduction 143<br/><br/>7.2. Process intensification technologies 146<br/><br/>7.3. Integration of process intensification and advanced materials 153<br/><br/>7.4. Conclusion and future prospects 165<br/><br/>7.5. References 167<br/><br/>Chapter 8. Nanotechnology in Chemical Engineering 173<br/>Nandlal PINGUA, Avinash CHANDRA, Arvind K. GAUTAM, Raj Kumar ARYA and Akash KUMAR<br/><br/>8.1. Introduction to nanotechnology 174<br/><br/>8.2. Role of nanotechnology in chemical engineering 174<br/><br/>8.3. Emerging trends in nanotechnology-based chemical engineering 177<br/><br/>8.4. Challenges and solutions in nanotechnology for chemical engineers 179<br/><br/>8.5. Impact of nanotechnology on the future of chemical engineering 181<br/><br/>8.6. Case studies on the application of nanotechnology in chemical engineering 184<br/><br/>8.7. Future prospects of nanotechnology in chemical engineering 192<br/><br/>8.8. Conclusion 196<br/><br/>8.9. References 199<br/><br/>Part 3. Sustainability and Safety 205<br/><br/>Chapter 9. Green Chemistry and Sustainable Processes 207<br/>Amit PARASHAR, Anurag TEWARI, Prahalad PRASAD PAROHA, Shikha GOVIL, Rajeev Kumar SINGH, Shailendra BADAL and Pastor ARGULLES<br/><br/>9.1. Introduction 208<br/><br/>9.2. The principles of green chemistry 209<br/><br/>9.3. Applications of green chemistry 218<br/><br/>9.4. Challenges and barriers 223<br/><br/>9.5. Sustainable processes 225<br/><br/>9.6. Case study: green chemistry in the textile industry 226<br/><br/>9.7. Conclusion 228<br/><br/>9.8. Acknowledgments 229<br/><br/>9.9. References 229<br/><br/>Chapter 10. Waste Minimization and Resource Recovery 235<br/>Swati DUBEY, Avanish KUMAR, Abhishek GUPTA and Dharmesh SUR<br/><br/>10.1. Introduction 235<br/><br/>10.2. Types of wastes and various waste minimization techniques 237<br/><br/>10.3. Advantages of waste minimization 240<br/><br/>10.4. Process enhancement through waste minimization in chemical engineering 240<br/><br/>10.5. Resource recovery as an efficient way to minimize waste 241<br/><br/>10.6. Sustaining waste minimization 243<br/><br/>10.7. References 244<br/><br/>Chapter 11. Safety Management: Hazard Identification and Risk Assessment at the Workplace 247<br/>Sushama AGARWALLA, Sunil Kumar SINGH, Mohammed Adil IBRAHIM and Suhanya DURAISWAMY<br/><br/>11.1. Introduction 247<br/><br/>11.2. Hazard identification 251<br/><br/>11.3. Process hazards checklist 252<br/><br/>11.4. Hazard survey 255<br/><br/>11.5. Hazards and operability (HAZOP) studies 264<br/><br/>11.6. Safety review 265<br/><br/>11.7. Other methods 267<br/><br/>11.8. Risk assessment 268<br/><br/>11.9. Quantitative risk analysis 269<br/><br/>11.10. Conclusion 272<br/><br/>11.11. References 272<br/><br/>List of Authors 277<br/><br/>Index 281 |
| 520 ## - SUMMARY, ETC. |
| Summary, etc |
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 June 26, 2026). |
| 650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM |
| Topical term or geographic name as entry element |
Chemical engineering. |
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http://id.loc.gov/authorities/subjects/sh85022900 |
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Electronic books. |
| 700 1# - ADDED ENTRY--PERSONAL NAME |
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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 |
| 700 1# - ADDED ENTRY--PERSONAL NAME |
| Personal name |
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 |
| Uniform title |
Chemical engineering series (ISTE Ltd.) |
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http://id.loc.gov/authorities/names/no2015061892 |
| 856 ## - ELECTRONIC LOCATION AND ACCESS |
| Uniform Resource Identifier |
https://onlinelibrary.wiley.com/doi/book/10.1002/9781394372379 |
| Link text |
Full text is available at Wiley Online Library. Click here to view |
| 942 ## - ADDED ENTRY ELEMENTS |
| Source of classification or shelving scheme |
|
| Item type |
EBOOK |