Process intensification: engineering for efficiency, sustainability and flexibility
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Butterworth-Heinemann
2008
|
Ausgabe: | 1. ed. |
Schriftenreihe: | Butterworth-Heinemann/IChemE series
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXV, 444 S. Ill., graph. Darst. |
ISBN: | 0750689412 9780750689410 |
Internformat
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245 | 1 | 0 | |a Process intensification |b engineering for efficiency, sustainability and flexibility |c David Reay, Colin Ramshaw and Adam Harvey |
250 | |a 1. ed. | ||
264 | 1 | |a Amsterdam [u.a.] |b Butterworth-Heinemann |c 2008 | |
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adam_text | IMAGE 1
CONTENTS
FOREWORD BY DAVE TRENT, DOW IX
PREFACE XI
ACKNO~ LEDGEMENTS XIII
INTRODUCTION XXI
CHAPTER 1 ABRIEF HISTORY OF PROCESS INTENSIFICATION 1
1.1 INTRODUCTION 1
1.2 ROTATING BOILERS 2
1.3 THE ROTATING HEAT PIPE 6
1.4 THE CHEMICAL PROCESS INDUSTRY - THE PROCESS INTENSIFICATION
BREAKTHROUGH AT ICI 8
1.5 SEPARATORS 10
1.6 REACTORS 14
1.7 NON-CHEMICAL INDUSTRY RELATED APPLICATIONS OF ROTATING HEAT AND MASS
TRANSFER 16
1.8 WHERE ARE WE TODAY? 18
1.9 SUMMARY 18
REFERENCES 19
CHAPTER 2 PROCESS INTENSIFICATION - AN OVERVIEW 21
2.1 INTRODUCTION 21
2.2 WHAT IS PROCESS INTENSIFICATION? 21
2.3 THE ORIGINAL ICI PI STRATEGY 24
2.4 THE ADVANTAGES OF PI 26
2.5 SOME OBSTACLES TO PI 37
2.6 A WAY FORWARD 38
2.7 TO WHET THE READER S APPETITE 39
2.8 EQUIPMENT SUMMARY - FINDING YOUR WAY AROUND THIS BOOK 40
2.9 SUMMARY 40
REFERENCES 44
CHAPTER 3 THE MECHANISMS INVOLVED IN PROCESS INTENSIFICATION 47 3.1
INTRODUCTION 47
3.2 INTENSIFIED HEAT TRANSFER - THE MECHANISMS INVOLVED 49
3.3 INTENSIFIED MASS TRANSFER - THE MECHANISMS INVOLVED 63
V
IMAGE 2
VI CONTENTS
3.4 ELECTRICALLY ENHANCED PROCESSES - THE MECHANISMS 65
3.5 MICRO-F1UIDICS 70
3.6 PRESSURE 74
3.7 SUMMARY 74
REFERENCES 74
CHAPTER 4 COMPACT AND MICRO-HEAT EXCHANGERS 77
4.1 INTRODUCTION 77
4.2 COMPACT HEAT EXCHANGERS 78
4.3 MICRO-HEAT EXCHANGERS 91
4.4 WHAT ABOUT SMALL CHANNELS? 94
4.5 HEAT TRANSFER APPLICATIONS OF CHEMICAL REACTIONS 98
4.6 SUMMARY 100
REFERENCES 100
CHAPTER 5 REACTORS 103
5.1 REACTOR ENGINEERING THEORY 103
5.2 SPINNING DISC REACTORS 109
5.3 OSCILLATORY BAFFLED REACTORS (OBRS) 128
5.4 OTHER ROTATING REACTORS 137
5.5 MICRO-REACTORS (INCLUDING HEX-REACTORS) 141
5.6 FIELD-ENHANCED REACTIONS 159
5.7 REACTIVE SEPARATIONS 163
5.8 MEMBRANE REACTORS 167
5.9 SUPERCRITICAL OPERATION 170
5.10 MISCELLANEOUS INTENSIFIED REACTOR TYPES 172
5.11 SUMMARY 180
REFERENCES 180
CHAPTER 6 INTENSIFICATION OF SEPARATION PROCESSES 187
6.1 INTRODUCTION 187
6.2 DISTILLATION 188
6.3 CENTRIFUGES 198
6.4 MEMBRANES 201
6.5 DRYING 203
6.6 PRECIPITATION AND CRYSTALLISATION 205
6.7 MOP FAN/DEDUSTER 208
6.8 SUMMARY 212
REFERENCES 212
CHAPTER 7 INTENSIFIED MIXING 215
7. I INTRODUCTION 215
7.2 IN-LINE MIXERS 216
IMAGE 3
VII CONTENTS
7.3 MIXING ON A SPINNING DISC 220
7.4 INDUCTION-HEATED MIXER 220
7.5 SUMMARY 220
REFERENCES 221
CHAPTER 8 APPLICATION AREAS - PETROCHEMICALS AND FINE CHEMIEALS 223 8.1
INTRODUCTION 223
8.2 REFINERIES 225
8.3 BULK CHEMICALS 226
8.4 FINE CHEMICALS AND PHARMACEUTICALS 250
8.5 BIOPROCESSING OR PROCESSING OF BIODERIVED FEEDSTOCK 258
8.6 FURTHER READING 259
8.7 SUMMARY 260
REFERENCES 260
CHAPTER 9 APPLICATION AREAS - OFFSHORE PROCESSING 265
9.1 INTRODUCTION 265
9.2 SOME OFFSHORE SCENARIOS 266
9.3 OFFSHORE ON PLATFORMS OR SUBSEA 270
9.4 FPSO ACTIVITIES 281
9.5 SAFETY OFFSHORE - CAN PI HELP? 284
9.6 SUMMARY 285
REFERENCES 285
CHAPTER 10 APPLICATION AREAS - MISCELLANEOUS PROCESS INDUSTRIES 287 10.1
INTRODUCTION 287
LO.2 THE NUCLEAR INDUSTRY 287
10.3 THE FOOD AND DRINK SECTOR 293
10.4 TEXTILES 303
10.5 THE METAUURGICAL AND GLASS INDUSTRIES 308
10.6 AEROSPACE 312
10.7 BIOTECHNOLOGY 313
10.8 SUMMARY 320
REFERENCES 320
CHAPTER 11 APPLICATION AREAS - THE BUHT ENVIRONMENT, EIECTRONICS AND THE
HORNE 323
11.1 INTRODUCTION 323
11.2 REFRIGERATION/HEAT PUMPING 324
11.3 POWER GENERATION 334
11.4 MICROE1ECTRONICS 338
11.5 SUMMARY 352
REFERENCES 352
IMAGE 4
VIII CONTENTS
CHAPTER 12 SPECIFYING, MANUFAETURING AND OPERATING PI PLANT 355 12.1
INTRODUCTION 355
12.2 VARIOUS APPROACHES TO ADOPTING PI 356
12.3 INITIAL ASSESSMENT 359
12.4 EQUIPMENT SPECIFICATION 364
12.5 INSTALLATION FEATURES OF PI PLANT 369
12.6 POINTERS TO THE SUCCESSFUL OPERATION OF PI PLANT 369
12.7 THE SYSTEMATIC APPROACH TO SELECTING PI TECHNOLOGY 370
12.8 AN APPLICATION OF THE METHODOLOGY TO SYNTHESIS GAS/HYDROGEN
PRODUCTION 375
12.9 THE ULTIMATE GOAL- WHOLE PLANT INTENSIFICATION 384
12.10 SUMMARY 386
REFERENCES 387
APPENDICES
APPENDIX 1 ABBREVIATIONS USED 389
APPENDIX 2 NOMENCLATURE 391
APPENDIX 3 RELEVANT REVIEW PAPERSTREXTS 393
APPENDIX 4 EQUIPMENT SUPPLIERS 397
APPENDIX 5 R&D ORGANISATIONS, CONSUITANTS AND MISCELLANEOUS GROUPS
AETIVE IN PI 415
APPENDIX 6 A SELECTION OF OTHER USEFUL CONTAET POINTS, INCLUDING
NETWORKS AND WEB SITES 429
A6.1 UK ASSISTANCE/INFORMATION/SUPPORT PROGRAMMES 429
A6.2 CENTRES OF EXCELLENCE/GROUPINGS 430
A6.3 PATENT SOURCES 431
A6.4 NETWORKS 432
INDEX 435
|
adam_txt |
IMAGE 1
CONTENTS
FOREWORD BY DAVE TRENT, DOW IX
PREFACE XI
ACKNO~'LEDGEMENTS XIII
INTRODUCTION XXI
CHAPTER 1 ABRIEF HISTORY OF PROCESS INTENSIFICATION 1
1.1 INTRODUCTION 1
1.2 ROTATING BOILERS 2
1.3 THE ROTATING HEAT PIPE 6
1.4 THE CHEMICAL PROCESS INDUSTRY - THE PROCESS INTENSIFICATION
BREAKTHROUGH AT ICI 8
1.5 SEPARATORS 10
1.6 REACTORS 14
1.7 NON-CHEMICAL INDUSTRY RELATED APPLICATIONS OF ROTATING HEAT AND MASS
TRANSFER 16
1.8 WHERE ARE WE TODAY? 18
1.9 SUMMARY 18
REFERENCES 19
CHAPTER 2 PROCESS INTENSIFICATION - AN OVERVIEW 21
2.1 INTRODUCTION 21
2.2 WHAT IS PROCESS INTENSIFICATION? 21
2.3 THE ORIGINAL ICI PI STRATEGY 24
2.4 THE ADVANTAGES OF PI 26
2.5 SOME OBSTACLES TO PI 37
2.6 A WAY FORWARD 38
2.7 TO WHET THE READER'S APPETITE 39
2.8 EQUIPMENT SUMMARY - FINDING YOUR WAY AROUND THIS BOOK 40
2.9 SUMMARY 40
REFERENCES 44
CHAPTER 3 THE MECHANISMS INVOLVED IN PROCESS INTENSIFICATION 47 3.1
INTRODUCTION 47
3.2 INTENSIFIED HEAT TRANSFER - THE MECHANISMS INVOLVED 49
3.3 INTENSIFIED MASS TRANSFER - THE MECHANISMS INVOLVED 63
V
IMAGE 2
VI CONTENTS
3.4 ELECTRICALLY ENHANCED PROCESSES - THE MECHANISMS 65
3.5 MICRO-F1UIDICS 70
3.6 PRESSURE 74
3.7 SUMMARY 74
REFERENCES 74
CHAPTER 4 COMPACT AND MICRO-HEAT EXCHANGERS 77
4.1 INTRODUCTION 77
4.2 COMPACT HEAT EXCHANGERS 78
4.3 MICRO-HEAT EXCHANGERS 91
4.4 WHAT ABOUT SMALL CHANNELS? 94
4.5 HEAT TRANSFER APPLICATIONS OF CHEMICAL REACTIONS 98
4.6 SUMMARY 100
REFERENCES 100
CHAPTER 5 REACTORS 103
5.1 REACTOR ENGINEERING THEORY 103
5.2 SPINNING DISC REACTORS 109
5.3 OSCILLATORY BAFFLED REACTORS (OBRS) 128
5.4 OTHER ROTATING REACTORS 137
5.5 MICRO-REACTORS (INCLUDING HEX-REACTORS) 141
5.6 FIELD-ENHANCED REACTIONS 159
5.7 REACTIVE SEPARATIONS 163
5.8 MEMBRANE REACTORS 167
5.9 SUPERCRITICAL OPERATION 170
5.10 MISCELLANEOUS INTENSIFIED REACTOR TYPES 172
5.11 SUMMARY 180
REFERENCES 180
CHAPTER 6 INTENSIFICATION OF SEPARATION PROCESSES 187
6.1 INTRODUCTION 187
6.2 DISTILLATION 188
6.3 CENTRIFUGES 198
6.4 MEMBRANES 201
6.5 DRYING 203
6.6 PRECIPITATION AND CRYSTALLISATION 205
6.7 MOP FAN/DEDUSTER 208
6.8 SUMMARY 212
REFERENCES 212
CHAPTER 7 INTENSIFIED MIXING 215
7. I INTRODUCTION 215
7.2 IN-LINE MIXERS 216
IMAGE 3
VII CONTENTS
7.3 MIXING ON A SPINNING DISC 220
7.4 INDUCTION-HEATED MIXER 220
7.5 SUMMARY 220
REFERENCES 221
CHAPTER 8 APPLICATION AREAS - PETROCHEMICALS AND FINE CHEMIEALS 223 8.1
INTRODUCTION 223
8.2 REFINERIES 225
8.3 BULK CHEMICALS 226
8.4 FINE CHEMICALS AND PHARMACEUTICALS 250
8.5 BIOPROCESSING OR PROCESSING OF BIODERIVED FEEDSTOCK 258
8.6 FURTHER READING 259
8.7 SUMMARY 260
REFERENCES 260
CHAPTER 9 APPLICATION AREAS - OFFSHORE PROCESSING 265
9.1 INTRODUCTION 265
9.2 SOME OFFSHORE SCENARIOS 266
9.3 OFFSHORE ON PLATFORMS OR SUBSEA 270
9.4 FPSO ACTIVITIES 281
9.5 SAFETY OFFSHORE - CAN PI HELP? 284
9.6 SUMMARY 285
REFERENCES 285
CHAPTER 10 APPLICATION AREAS - MISCELLANEOUS PROCESS INDUSTRIES 287 10.1
INTRODUCTION 287
LO.2 THE NUCLEAR INDUSTRY 287
10.3 THE FOOD AND DRINK SECTOR 293
10.4 TEXTILES 303
10.5 THE METAUURGICAL AND GLASS INDUSTRIES 308
10.6 AEROSPACE 312
10.7 BIOTECHNOLOGY 313
10.8 SUMMARY 320
REFERENCES 320
CHAPTER 11 APPLICATION AREAS - THE BUHT ENVIRONMENT, EIECTRONICS AND THE
HORNE 323
11.1 INTRODUCTION 323
11.2 REFRIGERATION/HEAT PUMPING 324
11.3 POWER GENERATION 334
11.4 MICROE1ECTRONICS 338
11.5 SUMMARY 352
REFERENCES 352
IMAGE 4
VIII CONTENTS
CHAPTER 12 SPECIFYING, MANUFAETURING AND OPERATING PI PLANT 355 12.1
INTRODUCTION 355
12.2 VARIOUS APPROACHES TO ADOPTING PI 356
12.3 INITIAL ASSESSMENT 359
12.4 EQUIPMENT SPECIFICATION 364
12.5 INSTALLATION FEATURES OF PI PLANT 369
12.6 POINTERS TO THE SUCCESSFUL OPERATION OF PI PLANT 369
12.7 THE 'SYSTEMATIC' APPROACH TO SELECTING PI TECHNOLOGY 370
12.8 AN APPLICATION OF THE METHODOLOGY TO SYNTHESIS GAS/HYDROGEN
PRODUCTION 375
12.9 THE ULTIMATE GOAL- WHOLE PLANT INTENSIFICATION 384
12.10 SUMMARY 386
REFERENCES 387
APPENDICES
APPENDIX 1 ABBREVIATIONS USED 389
APPENDIX 2 NOMENCLATURE 391
APPENDIX 3 RELEVANT REVIEW PAPERSTREXTS 393
APPENDIX 4 EQUIPMENT SUPPLIERS 397
APPENDIX 5 R&D ORGANISATIONS, CONSUITANTS AND MISCELLANEOUS GROUPS
AETIVE IN PI 415
APPENDIX 6 A SELECTION OF OTHER USEFUL CONTAET POINTS, INCLUDING
NETWORKS AND WEB SITES 429
A6.1 UK ASSISTANCE/INFORMATION/SUPPORT PROGRAMMES 429
A6.2 CENTRES OF EXCELLENCE/GROUPINGS 430
A6.3 PATENT SOURCES 431
A6.4 NETWORKS 432
INDEX 435 |
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discipline_str_mv | Chemie / Pharmazie Chemie-Ingenieurwesen |
edition | 1. ed. |
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index_date | 2024-07-02T21:44:16Z |
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spelling | Reay, David A. 1943- Verfasser (DE-588)108360296 aut Process intensification engineering for efficiency, sustainability and flexibility David Reay, Colin Ramshaw and Adam Harvey 1. ed. Amsterdam [u.a.] Butterworth-Heinemann 2008 XXV, 444 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Butterworth-Heinemann/IChemE series Umwelt Chemical process control Chemical processes Environmental aspects Prozessinnovation (DE-588)4214088-2 gnd rswk-swf Effizienzsteigerung (DE-588)4443806-0 gnd rswk-swf Chemische Verfahrenstechnik (DE-588)4069941-9 gnd rswk-swf Chemische Verfahrenstechnik (DE-588)4069941-9 s Effizienzsteigerung (DE-588)4443806-0 s Prozessinnovation (DE-588)4214088-2 s DE-604 Ramshaw, Colin Verfasser aut Harvey, Adam Verfasser aut OEBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016681564&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Reay, David A. 1943- Ramshaw, Colin Harvey, Adam Process intensification engineering for efficiency, sustainability and flexibility Umwelt Chemical process control Chemical processes Environmental aspects Prozessinnovation (DE-588)4214088-2 gnd Effizienzsteigerung (DE-588)4443806-0 gnd Chemische Verfahrenstechnik (DE-588)4069941-9 gnd |
subject_GND | (DE-588)4214088-2 (DE-588)4443806-0 (DE-588)4069941-9 |
title | Process intensification engineering for efficiency, sustainability and flexibility |
title_auth | Process intensification engineering for efficiency, sustainability and flexibility |
title_exact_search | Process intensification engineering for efficiency, sustainability and flexibility |
title_exact_search_txtP | Process intensification engineering for efficiency, sustainability and flexibility |
title_full | Process intensification engineering for efficiency, sustainability and flexibility David Reay, Colin Ramshaw and Adam Harvey |
title_fullStr | Process intensification engineering for efficiency, sustainability and flexibility David Reay, Colin Ramshaw and Adam Harvey |
title_full_unstemmed | Process intensification engineering for efficiency, sustainability and flexibility David Reay, Colin Ramshaw and Adam Harvey |
title_short | Process intensification |
title_sort | process intensification engineering for efficiency sustainability and flexibility |
title_sub | engineering for efficiency, sustainability and flexibility |
topic | Umwelt Chemical process control Chemical processes Environmental aspects Prozessinnovation (DE-588)4214088-2 gnd Effizienzsteigerung (DE-588)4443806-0 gnd Chemische Verfahrenstechnik (DE-588)4069941-9 gnd |
topic_facet | Umwelt Chemical process control Chemical processes Environmental aspects Prozessinnovation Effizienzsteigerung Chemische Verfahrenstechnik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016681564&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT reaydavida processintensificationengineeringforefficiencysustainabilityandflexibility AT ramshawcolin processintensificationengineeringforefficiencysustainabilityandflexibility AT harveyadam processintensificationengineeringforefficiencysustainabilityandflexibility |