Membrane operations: innovative separations and transformations
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2009
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Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XXV, 551 S. Ill., graph. Darst. |
ISBN: | 9783527320387 |
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CONTENTS LIST OF CONTRIBUTORS XVII INTRODUCTION XXIII PART ONE MOLECULAR
SEPARATION 1 1 MOLECULAR MODELING, A TOOL FOR THE KNOWLEDGE-BASED DESIGN
OF POLYMER-BASED MEMBRANE MATERIALS 3 DIETER HOFMANN AND ELENA TOCCI 1.1
INTRODUCTION 3 1.2 BASICS OF MOLECULAR MODELING OF POLYMER-BASED
MEMBRANE MATERIALS 5 1.3 SELECTED APPLICATIONS 7 1.3.1 HARD- AND
SOFTWARE 7 1.3.2 SIMULATION/PREDICTION OF TRANSPORT PARAMETERS AND MODEL
VALIDATION 8 1.3.2.1 PREDICTION OF SOLUBILITY PARAMETERS 9 1.3.2.2
PREDICTION OF DIFFUSION CONSTANTS 9 1.3.3 PERMEABILITY OF SMALL
MOLECULES AND FREE-VOLUME DISTRIBUTION 12 1.3.3.1 EXAMPLES OF POLYMERS
WITH LOW PERMEABILITY OF SMALL MOLECULES (E.G., PO 2 50 BARRER) 13
1.3.3.2 EXAMPLES OF POLYMERS WITH HIGH PERMEABILITY OF SMALL MOLECULES
(E.G., 50 BARRER PO 2 200 BARRER) 13 1.3.3.3 EXAMPLES OF POLYMERS
WITH ULTRAHIGH PERMEABILITY OF SMALL MOLECULES (E.G., PO 2 1000
BARRER) 14 1.4 SUMMARY 16 REFERENCES 17 1 POLYMERIC MEMBRANES FOR
MOLECULAR SEPARATIONS 19 BIBLIOGRAFISCHE INFORMATIONEN
HTTP://D-NB.INFO/991681118 DIGITALISIERT DURCH VI L CONTENTS 2.3
MEMBRANE POLYMER CHARACTERISTICS 22 2.3.1 POLYMER STRUCTURE AND
PROPERTIES 22 2.3.2 MEMBRANE POLYMER SELECTION 23 2.3.2.1 POLYMERS FOR
POROUS BARRIERS 23 2.3.2.2 POLYMERS FOR NONPOROUS BARRIER 25 2.3.2.3
POLYMERS FOR CHARGED BARRIER 26 2.4 MEMBRANE PREPARATION 26 2.4.1
TRACK-ETCHING OF POLYMER FILMS 26 2.4.2 PHASE SEPARATION OF POLYMER
SOLUTIONS 27 2.4.3 COMPOSITE MEMBRANE PREPARATION 30 IAA MIXED-MATRIX
MEMBRANES 32 2.5 MEMBRANE MODIFIKATION 32 2.6 ESTABLISHED AND NOVEL
POLYMER MEMBRANES FOR MOLECULAR SEPARATIONS 34 2.6.1 ULTRAFILTRATION 34
2.6.2 REVERSE OSMOSIS AND NANOFILTRATION 36 2.6.3 PERVAPORATION 37 2.6.4
SEPARATIONS USING ION-EXCHANGE MEMBRANES 38 2.7 CONDUSION AND OUTLOOK 40
REFERENCES 41 3 FUNDAMENTALS OF MEMBRANE SOLVENT SEPARATION AND
PERVAPORATION 45 BART CONTENTS VII 4.5 SUMMARY 79 REFERENCES 79 5
FUNDAMENTALS IN ELECTROMEMBRANE SEPARATION PROCESSES 83 HEINRICH
STRATHMANN 5.1 INTRODUCTION 83 5.2 THE STRUCTURES AND FUNCTIONS OF
ION-EXCHANGE MEMBRANES 84 5.2.1 ION-EXCHANGE MEMBRANE MATERIALS AND
STRUCTURES 85 5.2.2 PREPARATION OF ION-EXCHANGE MEMBRANES 85 5.2.2.1
PREPARATION PROCEDURE OF HETEROGENEOUS ION-EXCHANGE MEMBRANES 86 5.2.2.2
PREPARATION OF HOMOGENEOUS ION-EXCHANGE MEMBRANES 86 5.2.2.3 SPECIAL
PROPERTY MEMBRANES 88 5.3 TRANSPORT OF IONS IN MEMBRANES AND SOLUTIONS
88 5.3.1 ELECTRIC CURRENT AND OHM'S LAW IN ELECTROLYTE SOLUTIONS 89
5.3.2 MASS TRANSPORT IN MEMBRANES AND SOLUTIONS 91 5.3.2.1 THE DRIVING
FORCE AND FLUXES IN ELECTROMEMBRANE PROCESSES 91 5.3.2.2 ELECTRICAL
CURRENT AND FLUXES OF IONS 91 5.3.2.3 THE TRANSPORT NUMBER AND THE
MEMBRANE PERMSELECTIVITY 92 5.3.2.4 MEMBRANE COUNTERION PERMSELECTIVITY
93 5.3.2.5 WATER TRANSPORT IN ELECTRODIALYSIS 94 5.4 THE PRINCIPLE OF
ELECTROMEMBRANE PROCESSES 95 VIII CONTENTS 6.2.1 6.2.2 6.2.3 6.2.4
6.2.4.1 6.2.4.2 6.3 6.3.1 6.3.2 6.3.3 6.3.4 6.4 PARTICULATE FOULING 126
COLLOIDAL AND MACROSOLUTE FOULING 127 BIOFOULING AND BIOFILMS 128 CASE
STUDIES 128 WATER TREATMENT AND MEMBRANE PRETREATMENT MEMBRANE
BIOREACTOR (MBR) 129 HIGH-PRESSURE PROCESSES 130 PARTICULATE AND
COLLOIDAL FOULING 130 BIOFOULING 132 SCALE FORMATION 133 CAKE-ENHANCED
OSMOTIC PRESSURE 135 CONDUSIONS 136 REFERENCES 136 128 7 ENERGY AND
ENVIRONMENTAL ISSUES AND IMPACTS OF MEMBRANES IN INDUSTRY 139 WILLIAM J.
KOROS, ADAM KRATOCHVIL, SHU SHU, AND SHABBIR HUSAIN 7.1 INTRODUCTION 139
7.2 HYDRODYNAMIC SIEVING (MF AND UF) SEPARATIONS 141 7.3 FRACTIONATION
OF LOW MOLECULAR WEIGHT MIXTURES (NF, D, RO, GS) 142 7.4 REVERSE OSMOSIS
- THE PROTOTYPE LARGE-SCALE SUCCESS 144 7. CONTENTS IX 8.3.2 AIR DRYING
173 8.3.3 HYDROGEN SEPARATION 175 8.3.4 NATURAL-GAS TREATMENT 178
8.3.4.1 CARBON-DIOXIDE SEPARATION 179 8.3.4.2 SEPARATION OF HEAVY
HYDROCARBONS 182 8.3.4.3 NITROGEN SEPARATION FROM HIGH-NITROGEN GAS 182
8.3.5 VAPOR/GAS SEPARATIONS IN PETROCHEMICAL OPERATIONS 183 8.4 FUTURE
APPLICATIONS 186 8.4.1 CO 2 /N 2 SEPARATIONS 186 8.4.2 CO 2 /H 2
SEPARATIONS 188 8.4.3 WATER/ETHANOL SEPARATIONS 189 8.4.4 SEPARATION
OFORGANIC VAPOR MIXTURES 191 8.5 SUMMARY/CONCLUSION 191 REFERENCES 192 9
CO 2 CAPTURE WITH MEMBRANE SYSTEMS 195 RUNE BREDESEN, IZUMI KUMAKIRI,
AND THIJS PETERS 9.1 INTRODUCTION 195 9.1.1 CO 2 AND GREENHOUSE-GAS
PROBLEM 195 9.1.2 CO 2 CAPTURE PROCESSES AND TECHNOLOGIES 196 X CONTENTS
9.4.1 DIFFUSION LIMITATION IN GAS-PHASE AND MEMBRANE SUPPORT 212 9.4.2
MEMBRANE MODULE DESIGN AND CATALYST INTEGRATION 214 9.5 CONCLUDING
REMARKS 216 REFERENCES 216 10 SEAWATER AND BRACKISH-WATER DESALINATION
WITH MEMBRANE OPERATIONS 221 RAPHAEL SEMIAT AND DAVID HASSON 10.1
INTRODUCTION: THE NEED FOR WATER 221 10.2 MEMBRANE TECHNIQUES IN WATER
TREATMENT 221 10.3 REVERSE-OSMOSIS DESALINATION: PROCESS AND COSTS 226
10.3.1 QUALITYOFDESALINATED WATER 228 10.3.2 ENVIRONMENTAL ASPECTS 229
10.3.3 ENERGY ISSUES 230 10.4 TREATMENT OF SEWAGE AND POLLUTED WATER 232
10.4.1 MEMBRANE BIOREACTORS 234 10.4.2 REDAIMED WASTEWATER PRODUCT
QUALITY 234 10.5 FOULING AND PREVENTION 235 10.5.1 HOW TO PREVENT 236
10.5.2 MEMBRANE CLEANING 237 10.6 R&D DIRECTIONS 237 10.6.1 IMPENDING
WATER SCARCITY 237 10.6.2 BETTER MEMBRANES 237 10.6.3 NEW
MEMBRANES-BASED DESALINATION PROCESSES 238 CONTENTS XI 12 INTEGRATED
MEMBRANE PROCESSES 265 ENRICO DRIOLI AND ENRICA FONTANANOVA 12.1
INTRODUCTION 265 12.2 INTEGRATED MEMBRANE PROCESSES FOR WATER
DESALINATION 266 12.3 INTEGRATED MEMBRANE PROCESS FOR WASTEWATER
TREATMENT 271 12.4 INTEGRATED MEMBRANE SYSTEM FOR FRUIT-JUICES INDUSTRY
274 12.5 INTEGRATED MEMBRANE PROCESSES IN CHEMICAL PRODUCTION 276 12.6
CONCLUSIONS 281 REFERENCES 281 PART TWO TRANSFORMATION 285 13
FUNDAMENTAL OF CHEMICAL MEMBRANE REACTORS 287 GIUSEPPE BARBIERI AND
FRANCESCO SCURA 13.1 INTRODUCTION 287 13.2 MEMBRANES 289 13.3 MEMBRANE
REACTORS 294 13.3.1 MASS BALANCE 294 13.3.2 ENERGY BALANCE 296 13.4
CATALYTIC MEMBRANES 302 13.5 THERMODYNAMIC EQUILIBRIUM IN PD-ALLOY
MEMBRANE REACTOR 301 13.6 CONCLUSIONS 303 REFERENCES 306 14 MATHEMATICAL
MODELING OF BIOCHEMICAL MEMBRANE REACTORS 309 ENDRE NAGY 14.1
INTRODUCTION 309 14.2 MEMBRANE BIOREACTORS WITH MEMBRANE AS BIOREACTOR
310 XII CONTENTS 14.4.5 MASS TRANSPORT IN THE FEED SIDE OF THE
HOLLOW-FIBER MEMBRANE BIOREACTOR 325 14.5 MODELING OF THE MBR WITH
MEMBRANE SEPARATION UNIT 327 14.5.1 MOVING-BED-BIOFILM MEMBRANE REACTOR
327 14.5.2 SUBMERGED OR EXTERNAL MBR PROCESS 327 14.5.3 FOULING IN
SUBMERGED MEMBRANE MODULE 328 14.6 CONCLUSIONS AND FUTURE PROSPECTS 328
REFERENCES 332 15 PHOTOCATALYTIC MEMBRANE REACTORS IN THE CONVERSION OR
DEGRADATION OF ORGANIC COMPOUNDS 335 RAFFAELE MOLINARI, ANGELA CARUSO,
AND LEONARDO PALMISANO 15.1 INTRODUCTION 335 15.2 FUNDAMENTALS ON
HETEROGENEOUS PHOTOCATALYSIS 336 15.2.1 MECHANISM 336 15.2.2
PHOTOCATALYSTS: PROPERTIES AND NEW SEMICONDUCTOR MATERIALS USED FOR
PHOTOCATALYTIC PROCESSES 336 15.2.2.1 TITANIUM DIOXIDE 338 15.2.2.2
MODIFIED PHOTOCATALYSTS 338 15.3 PHOTOCATALYTIC PARAMETERS 340 15.4
APPLICATIONS OF PHOTOCATALYSIS 341 15.4.1 TOTAL OXIDATIONS 341 15.4.2
SELECTIVE OXIDATIONS 343 15.4.3 REDUCTION REACTIONS 344 CONTENTS XIII 16
WASTEWATER TREATMENT BY MEMBRANE BIOREACTORS 363 TOROVE LEIKNES 16.1
INTRODUCTION 363 16.2 MEMBRANES IN WASTEWATER TREATMENT 364 16.2.1
BACKGROUND 364 16.2.2 MEMBRANES APPLIED TO WASTEWATER TREATMENT 365 16.3
MEMBRANE BIOREACTORS (MBR) 368 16.3.1 MEMBRANE-BIOREACTOR CONFIGURATIONS
368 16.3.1.1 MEMBRANE MATERIALS AND OPTIONS 368 16.3.1.2 PROCESS
CONFIGURATIONS 371 16.3.2 MEMBRANE-BIOREACTOR BASICS 372 16.3.3 MEMBRANE
FOULING 374 16.3.3.1 UNDERSTANDING FOULING 374 16.3.3.2 DEALING WITH
FOULING 376 16.3.3.3 CLEANING FOULED MEMBRANES 378 16.3.4 DEFINING
OPERATING CONDITIONS AND PARAMETERS IN MBR PROCESSES 379 16.3.4.1
BIOLOGICAL OPERATING CONDITIONS 379 16.3.4.2 MEMBRANE FILTRATION
OPERATION 382 16.3.4.3 OPTIMIZING MBR OPERATIONS 383 16.4 PROSPECTS AND
PREDICTIONS OF THE MBR PROCESS 384 16.4.1 DEVELOPMENTS AND MARKET TRENDS
384 16.4.2 AN OVERVIEW OF COMMERCIALLY AVAILABLE SYSTEMS 386 16.4.2. XIV
CONTENTS 18.2.3 DIALYSIS REQUIREMENTS 415 18.2.4 MASS TRANSFERS IN A
HEMODIALYZER 426 18.2.4.1 CHARACTERIZATION OF HEMODIALYZERS PERFORMANCE
416 18.2.5 HEMOFILTRATION AND HEMODIAFILTRATION 417 18.2.6 VARIOUS TYPES
OF HEMODIALYZERS 418 18.2.6.1 VARIOUS TYPES OF MEMBRANES 419 18.2.6.2
OPTIMIZATION OF HEMODIALYZER PERFORMANCE 420 18.3 PLASMA SEPARATION AND
PURIFICATION BY MEMBRANE 421 18.3.1 INTRODUCTION 421 18.3.2 THE BAXTER
AUTOPHERESIS C SYSTEM FOR PLASMA COLLECTION FROM DONORS 421 18.3.3
THERAPEUTIC APPLICATIONS OF PLASMA SEPARATION 422 18.3.3.1 PLASMA
EXCHANGE 423 18.3.3.2 SELECTIVE PLASMA PURIFICATION BY CASCADE
FILTRATION 423 18.4 ARTIFICIAL IIVER 426 18.4.1 INTRODUCTION 426 18.4.2
PHYSICAL PRINCIPLES 426 18.4.3 CONVECTION + ADSORPTION SYSTEMS 428
18.4.4 DIFFUSION + ADSORPTION SYSTEMS 428 18.4.5 FUTURE OF ARTIFICIAL
LIVERS 429 18.4.6 CONCLUSIONS 430 REFERENCES 430 19 MEMBRANES IN
REGENERATIVE MEDICINE AND TISSUE ENGINEERIN CONTENTS XV 21 MEMBRANE
EMULSIFICATION: PRINCIPLES AND APPLICATIONS 463 LIDIETTA CIORNO, GIORGIO
DE LUCA, ALBERTO FIGOLI, EMMA PIACENTINI, AND ENRICO DRIOLI 21.1
INTRODUCTION 463 21.2 MEMBRANE EMULSIFICATION BASIC CONCEPTS 465 21.3
EXPERIMENTAL BASES OF MEMBRANE EMULSIFICATION 468 21.3.1
POST-EMULSIFICATION STEPS FOR MICROCAPSULES PRODUCTION 474 21.3.2
MEMBRANE EMULSIFICATION DEVICES 476 21.4 THEORETICAL BASES OF MEMBRANE
EMULSIFICATION 479 21.4.1 TORQUE AND FORCE BALANCES 480 21.4.2
SURFACE-ENERGY MINIMIZATION 485 21 A3 MICROFLUID DYNAMICS APPROACHES:
THE SHAPE OF THE DROPLETS 486 21.5 MEMBRANE EMULSIFICATION APPLICATIONS
488 21.5.1 APPLICATIONS IN THE FOOD INDUSTRY 488 21.5.2 APPLICATIONS IN
THE PHARMACEUTICAL INDUSTRY 489 21.5.3 APPLICATIONS IN THE ELECTRONICS
INDUSTRY 490 21.5.4 OTHER APPLICATIONS 491 21.6 CONCLUSIONS 493
REFERENCES 494 22 MEMBRANE CONTACTORS IN INDUSTRIAL APPLICATIONS 499
SOCCORSO GAETA 22.1 AIR DEHUMIDIFICATION: RESULTS OF DEMONSTRATION TESTS
WITH REFRIGERATED STORAGE CELLS AND WITH REFRIGERATED TRACKS 505 XVI
CONTENTS 23.6 COMPARISON OF EXTRACTIVE PROCESSES IN HF CONTACTORS AND
PERTRACTION THROUGH ELM 529 23.7 OUTIOOK 529 REFERENCES 531 INDEX 543 |
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publisher | Wiley-VCH |
record_format | marc |
spelling | Membrane operations innovative separations and transformations ed. by Enrico Drioli ... Weinheim Wiley-VCH 2009 XXV, 551 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturangaben Membrane separation Membranes (Technology) Membranverfahren (DE-588)4231727-7 gnd rswk-swf Membranverfahren (DE-588)4231727-7 s DE-604 Drioli, Enrico 1941- (DE-588)1081314486 edt text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3192375&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017629744&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Membrane operations innovative separations and transformations Membrane separation Membranes (Technology) Membranverfahren (DE-588)4231727-7 gnd |
subject_GND | (DE-588)4231727-7 |
title | Membrane operations innovative separations and transformations |
title_auth | Membrane operations innovative separations and transformations |
title_exact_search | Membrane operations innovative separations and transformations |
title_full | Membrane operations innovative separations and transformations ed. by Enrico Drioli ... |
title_fullStr | Membrane operations innovative separations and transformations ed. by Enrico Drioli ... |
title_full_unstemmed | Membrane operations innovative separations and transformations ed. by Enrico Drioli ... |
title_short | Membrane operations |
title_sort | membrane operations innovative separations and transformations |
title_sub | innovative separations and transformations |
topic | Membrane separation Membranes (Technology) Membranverfahren (DE-588)4231727-7 gnd |
topic_facet | Membrane separation Membranes (Technology) Membranverfahren |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=3192375&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017629744&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT driolienrico membraneoperationsinnovativeseparationsandtransformations |