Andrzej Stankiewicz, Jacob A. Moulijn
Re-Engineering the Chemical Processing Plant (eBook, PDF)
Process Intensification
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Andrzej Stankiewicz, Jacob A. Moulijn
Re-Engineering the Chemical Processing Plant (eBook, PDF)
Process Intensification
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The first guide to compile current research and frontline developments in the science of process intensification (PI), Re-Engineering the Chemical Processing Plant illustrates the design, integration, and application of PI principles and structures for the development and optimization of chemical and industrial plants.
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The first guide to compile current research and frontline developments in the science of process intensification (PI), Re-Engineering the Chemical Processing Plant illustrates the design, integration, and application of PI principles and structures for the development and optimization of chemical and industrial plants.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 368
- Erscheinungstermin: 14. Dezember 2018
- Englisch
- ISBN-13: 9780203913291
- Artikelnr.: 38182928
- Verlag: Taylor & Francis
- Seitenzahl: 368
- Erscheinungstermin: 14. Dezember 2018
- Englisch
- ISBN-13: 9780203913291
- Artikelnr.: 38182928
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Andrzej Stankiewicz is Senior Scientist, DSM Research, Geleen, The Netherlands, and Associate Professor, Delft University of Technology, The Netherlands. The author or coauthor of more than 100 publications, he holds several patents in the field. He is founder and coordinator of the BLUEPRINT-DSM Center for Process Intensification and codirector of the Center for Professional Advancement international course on process intensification. A Fellow of the Alexander von Humboldt Foundation, he is a member of the Royal Dutch Chemical Society, the American Institute of Chemical Engineers, and Working Parties of the European Federation of Chemical Engineering, among other organizations. He received the M.Sc. degree (1977) in chemical engineering from Warsaw University of Technology, Poland, and the Ph.D. degree (1985) from the Industrial Chemistry Research Institute in Warsaw, Poland.
Jacob A. Moulijn is Full Professor of Chemical Engineering, Delft University of Technology, The Netherlands. He previously served as full professor at the University of Amsterdam (1985-1990) and visiting professor at the University of Delaware, the Technical University of Wroclav, the Technische Universitat Karlsruhe, and the University of Ghent. The author or coauthor of over 450 professional publications and eight books, he holds several patents and is European editor of CAITECH. He was the CTA for the United Nations in China (1995-2000) and is the recipient of the BP Energy Prize and the NWO-STW "Simon Stevin Meesterschap." He received the Ph.D. degree in chemincal engineering from the University of Amsterdam, The Netherlands.
Jacob A. Moulijn is Full Professor of Chemical Engineering, Delft University of Technology, The Netherlands. He previously served as full professor at the University of Amsterdam (1985-1990) and visiting professor at the University of Delaware, the Technical University of Wroclav, the Technische Universitat Karlsruhe, and the University of Ghent. The author or coauthor of over 450 professional publications and eight books, he holds several patents and is European editor of CAITECH. He was the CTA for the United Nations in China (1995-2000) and is the recipient of the BP Energy Prize and the NWO-STW "Simon Stevin Meesterschap." He received the Ph.D. degree in chemincal engineering from the University of Amsterdam, The Netherlands.
Preface
Contributors
1. Process Intensification: History
Philosophy
Principles
2. Chemical Processing in High-Gravity Fields
3. The Spinning Disc Reactor
4. Compact Multifunctional Heat Exchangers: A Pathway to Process Intensification
5. Process Intensification Through Microreaction Technology
6. Structured Catalysts and Reactors: A Contribution to Process Intensification
7. Inline and High Intensity Mixers
8. Reactive and Hybrid Separations: Incentives
Applications
Barriers
9. Reactive Separations in Fluid Systems
10. Multifunctional Reactors: Integration of Reaction and Heat Transfer
11. Process Synthesis/Integration
12. Process Intensification in Industrial Practice: Methodology and Application
13. Process Intensification for Safety
14. Process Intensification Contributions to Sustainable Development
Index
Contributors
1. Process Intensification: History
Philosophy
Principles
2. Chemical Processing in High-Gravity Fields
3. The Spinning Disc Reactor
4. Compact Multifunctional Heat Exchangers: A Pathway to Process Intensification
5. Process Intensification Through Microreaction Technology
6. Structured Catalysts and Reactors: A Contribution to Process Intensification
7. Inline and High Intensity Mixers
8. Reactive and Hybrid Separations: Incentives
Applications
Barriers
9. Reactive Separations in Fluid Systems
10. Multifunctional Reactors: Integration of Reaction and Heat Transfer
11. Process Synthesis/Integration
12. Process Intensification in Industrial Practice: Methodology and Application
13. Process Intensification for Safety
14. Process Intensification Contributions to Sustainable Development
Index
Preface
Contributors
1. Process Intensification: History
Philosophy
Principles
2. Chemical Processing in High-Gravity Fields
3. The Spinning Disc Reactor
4. Compact Multifunctional Heat Exchangers: A Pathway to Process Intensification
5. Process Intensification Through Microreaction Technology
6. Structured Catalysts and Reactors: A Contribution to Process Intensification
7. Inline and High Intensity Mixers
8. Reactive and Hybrid Separations: Incentives
Applications
Barriers
9. Reactive Separations in Fluid Systems
10. Multifunctional Reactors: Integration of Reaction and Heat Transfer
11. Process Synthesis/Integration
12. Process Intensification in Industrial Practice: Methodology and Application
13. Process Intensification for Safety
14. Process Intensification Contributions to Sustainable Development
Index
Contributors
1. Process Intensification: History
Philosophy
Principles
2. Chemical Processing in High-Gravity Fields
3. The Spinning Disc Reactor
4. Compact Multifunctional Heat Exchangers: A Pathway to Process Intensification
5. Process Intensification Through Microreaction Technology
6. Structured Catalysts and Reactors: A Contribution to Process Intensification
7. Inline and High Intensity Mixers
8. Reactive and Hybrid Separations: Incentives
Applications
Barriers
9. Reactive Separations in Fluid Systems
10. Multifunctional Reactors: Integration of Reaction and Heat Transfer
11. Process Synthesis/Integration
12. Process Intensification in Industrial Practice: Methodology and Application
13. Process Intensification for Safety
14. Process Intensification Contributions to Sustainable Development
Index