Biocatalysts and enzyme technology:
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2005
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XVII, 448 S. Ill., graph. Darst. |
ISBN: | 3527304975 9783527304974 |
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245 | 1 | 0 | |a Biocatalysts and enzyme technology |c Klaus Buchholz ; Volker Kasche ; Uwe Theo Bornscheuer |
264 | 1 | |a Weinheim |b Wiley-VCH |c 2005 | |
300 | |a XVII, 448 S. |b Ill., graph. Darst. | ||
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500 | |a Literaturangaben | ||
650 | 7 | |a Biokatalyse |2 gtt | |
650 | 7 | |a Bioreactoren |2 gtt | |
650 | 7 | |a Enzymen |2 gtt | |
650 | 4 | |a Enzymkatalyse | |
650 | 4 | |a Enzymtechnologie | |
650 | 7 | |a Immobilisatie |2 gtt | |
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650 | 7 | |a Bioreactoren. |2 gtt | |
650 | 4 | |a Biotechnology | |
650 | 4 | |a Catalysis | |
650 | 7 | |a Enzymen. |2 gtt | |
650 | 4 | |a Enzymes | |
650 | 4 | |a Enzymes |x Biotechnology | |
650 | 4 | |a Enzymes |x Industrial applications | |
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650 | 7 | |a Karakterisering (algemeen) |2 gtt | |
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Datensatz im Suchindex
_version_ | 1804133262486929408 |
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adam_text | KLAUS BUCHHOLZ, VOLKER KASCHE, UWE THEO BOMSCHEUER BIOCATALYSTS AND
ENZYME TECHNOLOGY WIL1Y- VCH WILEY-VCH VERLAG GMBH & CO. KGAA XI
CONTENTS PREFACE V 1 INTRODUCTION TO ENZYME TECHNOLOGY 1 1.1
INTRODUCTION 1 1.1.1 WHAT ARE BIOCATALYSTS? 2 1.2 GOALS AND POTENTIAL OF
BIOTECHNOLOGICAL PRODUCTION PROCESSES 2 1.3 HISTORICAL HIGHLIGHTS OF
ENZYME TECHNOLOGY/APPLIED BIOCATALYSIS 1.3.1 EARLY DEVELOPMENTS 6 1.3.2
SCIENTIFIC PROGRESS SINCE 1890: THE BIOCHEMICAL PARADIGM; GROWING
SUCCESS IN APPLICATION 8 1.3.3 DEVELOPMENTS SINCE 1950 11 1.4
BIOTECHNOLOGICAL PROCESSES: THE USE OF ISOLATED OR INTRACELLULAR ENZYMES
AS BIOCATALYSTS 14 1.5 ADVANTAGES AND DISADVANTAGES OF ENZYME-BASED
PRODUCTION PROCESSES 25 1.6 GOALS, AND ESSENTIAL SYSTEM PROPERTIES FOR
NEW OR IMPROVED ENZYME PROCESSES 19 1.6.1 GOALS 19 1.6.2 ESSENTIAL
SYSTEM PROPERTIES FOR RATIONAL DESIGN OF AN ENZYME PROCESS 19 1.6.3
CURRENT USE AND POTENTIAL OF ENZYME TECHNOLOGY 23 1.7 EXERCISES 24
LITERATURE 25 2 BASICS OF ENZYMES AS BIOCATALYSTS 27 2.1 INTRODUCTION 29
2.2 ENZYME CLASSIFICATION 29 2.3 ENZYME SYNTHESIS AND STRUCTURE 31 2.4
ENZYME FUNCTION AND ITS GENERAL MECHANISM 34 2.5 FREE ENERGY CHANGES AND
THE SPECIFICITY OF ENZYME-CATALYZED REACTIONS 40 BIOCATALYSTS AND ENZYME
TECHNOLOGY. K. BUCHHOLZ, V. KASCHE, U.T. BORNSCHEUER COPYRIGHT 2005
WILEY-VCH VERLAG GMBH & CO. KGAA, WEINHEIM ISBN: 3-527-30497-5 XII
CONTENTS 2.6 EQUILIBRIUM- AND KINETICALLY CONTROLLED REACTIONS CATALYZED
BY ENZYMES 42 2.7 KINETICS OF ENZYME-CATALYZED REACTIONS 46 2.7.1
QUANTITATIVE RELATIONS FOR KINETIC CHARACTERISTICS AND SELECTIVITIES OF
ENZYME-CATALYZED REACTIONS 47 2.7.1.1 TURNOVER NUMBER (FC CAT ) AND
MICHAELIS-MENTEN CONSTANT (K M ) 47 2.7.1.2 STEREOSELECTIVITIES FOR
EQUILIBRIUM- AND KINETICALLY CONTROLLED REACTIONS 53 2.7.2 DEPENDENCY OF
FC CAT , K M AND SELECTIVITIES ON PH, TEMPERATURE, INHIBITORS,
ACTIVATORS AND IONIC STRENGTH IN AQUEOUS SOLUTIONS 57 2.7,.2.1 PH
DEPENDENCY 57 2.7.2.2 TEMPERATURE DEPENDENCY 59 2.7.2.3 BINDING OF
ACTIVATOR AND INHIBITOR MOLECULES 62 2.7.2 A INFLUENCE OF IONIC STRENGTH
63 2.8 END-POINTS OF ENZYME PROCESSES AND AMOUNT OF ENZYME REQUIRED TO
REACH THE ENDPOINT IN A GIVEN TIME 65 2.8.1 TEMPERATURE-DEPENDENCY OF
THE PRODUCT YIELD 67 2.8.2 PH-DEPENDENCY OF THE YIELD AT THE END-POINT
68 2.8.3 END-POINTS FOR KINETIC RACEMATE RESOLUTIONS 70 2.9
ENZYME-CATALYZED PROCESSES WITH SLIGHTLY SOLUBLE PRODUCTS AND SUBSTRATES
71 2.9.1 ENZYME-CATALYZED PROCESSES IN AQUEOUS SUSPENSIONS 72 2.9.1.1
CHANGES IN RATES, K CAT , K M , AND SELECTIVITIES IN THESE SYSTEMS
COMPARED WITH HOMOGENEOUS AQUEOUS SOLUTIONS 73 2.9.2 ENZYME-CATALYZED
PROCESSES IN NON-CONVENTIONAL SOLVENTS WHERE PRODUCTS AND SUBSTRATES ARE
DISSOLVED 74 2.9.2.1 CHANGES IN RATES, K CAT , K M , AND SELECTIVITIES
IN THESE SYSTEMS COMPARED WITH HOMOGENEOUS AQUEOUS SOLUTIONS 7 7 2.10
STABILITY, DENATURATION, AND RENATURATION OF ENZYMES 78 2.11 BETTER
ENZYMES BY NATURAL EVOLUTION, IN VITRO EVOLUTION, OR RATIONAL ENZYME
ENGINEERING 80 2.11.1 CHANGES IN ENZYME PROPERTIES BY NATURAL EVOLUTION
83 2.11.2 METHODS TO IMPROVE THE PROPERTIES OF ENZYMES BY IN VITRO
EVOLUTION 87 2.11.2.1 METHODS TO CREATE MUTANT LIBRARIES 88 2.11.2.2
ASSAY SYSTEMS 92 2.11.3 RATIONAL ENZYME ENGINEERING 97 2.11.4 NEW
ENZYMES BY BIOSYNTHESIS (CATALYTIC ANTIBODIES) OR CHEMICAL SYNTHESIS
(SYNZYMES) 200 2.12 EXERCISES 200 LITERATURE 104 CONTENTS XIII 3 ENZYMES
IN ORGANIC CHEMISTRY 209 3.1 INTRODUCTION 109 3.1.1 KINETIC RESOLUTION
OR ASYMMETRIC SYNTHESIS 220 3.2 EXAMPLES 222 3.2.1 OXIDOREDUCTASES (EC
1) 222 3.2.1.1 DEHYDROGENASES (EC 1.1.1-, EC 1.2.1-, EC 1.4.1-) 222
3.2.1.2 OXYGENASES 226 3.2.1.3 PEROXIDASES (E.G., EC 1.11.1.10) 226
3.2.2 HYDROLASES (EC 3.1) 227 3.2.2.1 LIPASES (EC 3.1.1.3) 227 3.2.2.2
ESTERASES (EC 3.1.1.1) 134 3.2.2.3 PEPTIDASES, ACYLASES, AND AMIDASES
138 3.2.2.4 EPOXIDE HYDROLASES (EC 3.3.2.3) 242 3.2.2.5 NITRILASES (EC
3.5.5.1) 246 3.2.2.6 HYDANTOINASES (EC 3.5.2.-) 250 3.2.3 LYASES (EC 4)
252 3.2.3.1 HYDROXYNITRILE LYASES (EC 4.1.2.-) 152 3.2.3.2 ALDOLASES (EC
4.1.2.-; 4.1.3.-) 257 3.2.4 ISOMERASES (EC 5) 161 3.3 EXERCISES 263
LITERATURE 164 4 ENZYME PRODUCTION AND PURIFICATION 272 4.1 INTRODUCTION
272 4.2 ENZYME SOURCES 273 4.2.1 ANIMAL AND PLANT TISSUES 273 4.2.2
WILD-TYPE MICROORGANISMS 175 4.3 IMPROVING ENZYME YIELD 277 4.3.1
PROCESSES THAT INFLUENCE ENZYME YIELD 177 4.4 INCREASING THE YIELD OF
PERIPLASMIC AND EXTRACELLULAR ENZYMES 280 4.4.1 PENICILLIN AMIDASE 180
4.4.2 LIPASE 284 4.5 DOWNSTREAM PROCESSING OF ENZYMES 286 4.5.1
TECHNICAL ENZYMES 189 4.5.2 ENZYMES FOR THERAPY AND DIAGNOSTICS 292 4.6
EXERCISES 192 LITERATURE 194 5 APPLICATION OF ENZYMES IN SOLUTION:
SOLUBLE ENZYMES AND ENZYME SYSTEMS 197 5.1 INTRODUCTION AND AREAS OF
APPLICATION 298 5.1.1 THE IMPACT OF GENETIC ENGINEERING 200 5.1.2 MEDIUM
DESIGN 201 5.1.3 SAFETY ASPECTS 202 XIV CONTENTS 5.2 SPACE-TIME-YIELD
AND PRODUCTIVITY 203 5.3 EXAMPLES FOR THE APPLICATION OF ENZYMES IN
SOLUTION 208 5.3.1 SURVEY 208 5.3.1.1 FOOD APPLICATIONS 222 5.3.1.2
TEXTILE APPLICATIONS 222 5.3.2 STARCH PROCESSING 222 5.3.2.1 MECHANISM
224 5.3.2.2 PROCESS STEPS 228 5.3.3 FURTHER EXAMPLES AND PERSPECTIVES
220 5.3.3.1 DETERGENTS 220 5.3.3.2 FOOD PROCESSING 222 5.4 MEMBRANE
SYSTEMS AND PROCESSES 227 5.5 EXERCISES 234 5.5.1 EXERCISE 1: PRODUCTION
OF INVERT SUGAR BY INVERTASE 234 5.5.2 EXERCISE 2: CALCULATION OF ENZYME
INACTIVATION UNDER DIFFERENT CONDITIONS 236 5.5.3 EXERCISE 3: HYDROLYSIS
OF PENICILLIN WITH PENICILLIN AMIDASE 237 LITERATURE 238 6
IMMOBILIZATION OF ENZYMES (INCLUDING APPLICATIONS) 243 6.1 PRINCIPLES
244 6.1.1 PARAMETERS OF IMMOBILIZATION 247 6.2 CARRIERS 248 6.2.1
INORGANIC CARRIERS 252 6.2.2 POLYSACCHARIDES 252 6.2.3 SYNTHETIC
POLYMERS 254 6.3 BINDING METHODS 258 6.3.1 ADSORPTION 258 6.3.2 COVALENT
BINDING 259 6.4 EXAMPLES: APPLICATION OF IMMOBILIZED ENZYMES 262 6.4.1
HYDROLYSIS AND MODIFICATION OF CARBOHYDRATES 263 6.4.2 HYDROLYSIS AND
SYNTHESIS OF PENICILLINS AND CEPHALOSPORINS 272 6.4.3 FURTHER PROCESSES
273 6.4.3.1 SOME FURTHER PRINCIPLES FOR AMINO ACID SYNTHESIS 274 6.5
EXERCISES 275 6.5.1 IMMOBILIZATION OF ENZYMES ON ION EXCHANGERS 275
LITERATURE 279 7 IMMOBILIZATION OF MICROORGANISMS AND CELLS 283 7.1
INTRODUCTION 283 7.1.1 FUNDAMENTAL ASPECTS 285 7.2 IMMOBILIZATION BY
AGGREGATION/FLOCCULATION 287 7.3 IMMOBILIZATION BY ENTRAPMENT 291 7.3.1
ENTRAPMENT IN POLYMERIC NETWORKS 292 CONTENTS XV 7.3.2 ENTRAPMENT IN
IONOTROPIC GELS 293 7.3.2.1 PRINCIPLE 293 7.3.2.2 EXAMPLES 296 7.4
ADSORPTION 301 7.5 ADHESION 302 7.5.1 BASIC CONSIDERATIONS 303 7.5.2
APPLICATIONS 309 7.5.2.1 ANAEROBIC WASTEWATER TREATMENT 309 7.5.2.2
NITROGEN ELIMINATION (NITRIFICATION AND DENITRIFICATION) 327 7.5.2.3
EXHAUST GAS PURIFICATION 328 7.6 OUTLOOK: DESIGNED CELLS 322 7.7
EXERCISES 325 7.7.1 ENTRAPMENT OF YEAST IN CALCIUM ALGINATE FOR ETHANOL
PRODUCTION 325 7.7.2 CHARACTERIZATION OF AN ANAEROBIC FLUIDIZED-BED
REACTOR 327 LITERATURE 328 8 CHARACTERIZATION OF IMMOBILIZED
BIOCATALYSTS 333 8.1 INTRODUCTION 334 8.2 FACTORS INFLUENCING THE
SPACE-TIME YIELD OF IMMOBILIZED BIOCATALYSTS 334 8.3 EFFECTIVENESS
FACTORS FOR IMMOBILIZED BIOCATALYSTS 336 8.4 MASS TRANSFER AND REACTION
338 8.4.1 MAXIMAL REACTION RATE OF IMMOBILIZED BIOCATALYSTS AS FUNCTION
OF PARTICLE RADIUS 338 8.4.2 CALCULATION OF EFFECTIVENESS FACTORS AND
CONCENTRATION PROFILES INSIDE AND OUTSIDE THE PARTICLES 340 8.5
SPACE-TIME YIELDS AND EFFECTIVENESS FACTORS FOR DIFFERENT REACTORS 343
8.5.1 CONTINUOUS STIRRED-TANK REACTOR 344 8.5.3 COMPARISON OF CST AND PB
REACTORS 346 8.6 DETERMINATION OF ESSENTIAL PROPERTIES OF IMMOBILIZED
BIOCATALYSTS 347 8.6.1 PHYSICO-CHEMICAL PROPERTIES 347 8.6.2 KINETIC
CHARACTERIZATION OF IMMOBILIZED BIOCATALYSTS; INFLUENCE OF SUPPORT
PROPERTIES ON THE NANO- AND MICROMETER LEVEL IN AQUEOUS AND OTHER
SYSTEMS 349 8.6.2.1 DETERMINATION OF V MAX AND K CAT 352 8.6.2.2 K M AND
K { 354 8.6.2.3 SELECTIVITIES 355 8.6.2.4 DETERMINATIONS OF
EFFECTIVENESS FACTORS 356 8.6.3 PRODUCTIVITY AND STABILITY UNDER PROCESS
CONDITIONS 356 8.7 COMPARISON OF CALCULATED AND EXPERIMENTAL DATA FOR
IMMOBILIZED BIOCATALYSTS 357 XVI I CONTENTS 8.8 APPLICATION OF
IMMOBILIZED BIOCATALYSTS FOR ENZYME PROCESSES IN AQUEOUS SUSPENSIONS 359
8.9 IMPROVING THE PERFORMANCE OF IMMOBILIZED BIOCATALYSTS 362 8.10
EXERCISES 363 LITERATURE 365 9 REACTORS AND PROCESS TECHNOLOGY 369 9.1
TYPES OF REACTORS 372 9.1.1 BASIC TYPES AND MASS BALANCES 371 9.1.2
FURTHER REACTOR TYPES AND CONFIGURATIONS: APPLICATION EXAMPLES 376 9.2
CASE STUDY 1: THE ENZYMATIC PRODUCTION OF 7-AC A FROM CEPHALOSPORIN C
382 9.2.1 ENZYME PROCESSES IN THE PRODUCTION OF P-LACTAM ANTIBIOTICS 382
9.2.2 OVERALL PROCESS FOR THE PRODUCTION OF 7-ACA 384 9.2.3 CONVERSION
OF CEPHALOSPORIN C TO 7-ACA 385 9.2.4 REACTION CHARACTERIZATION AND
IDENTIFICATION OF CONSTRAINTS 386 9.2.4.1 ENZYMATIC DEAMINATION AND
CHEMICAL DECARBOXYLATION 386 9.2.4.2 HYDROLYSIS OF GLU-7-ACA 386 9.2.5
ENZYME CHARACTERIZATION AND IDENTIFICATION OF CONSTRAINTS 388 9.2.5.1
(R)-AMINO ACID OXIDASE 388 9.2.5.2 GLUTARYL AMIDASE (ALSO NAMED ACYLASE)
388 9.2.6 EVALUATION OF PROCESS OPTIONS 389 9.2.6.1 PROCESS WINDOWS 389
9.2.6.2 SUITABLE REACTORS AND PH-CONTROLLING BUFFERS 389 9.2.6.3
REACTION ENDPOINT AND IMMOBILIZED ENZYME REQUIREMENT FOR MINIMUM
SPACE-TIME YIELD 392 9.3 RESIDENCE TIME DISTRIBUTION, MIXING, PRESSURE
DROP AND MASS TRANSFER IN REACTORS 392 9.3.1 SCALE-UP, DIMENSIONLESS
NUMBERS 392 9.3.2 RESIDENCE TIME DISTRIBUTION 393 9.3.3 MIXING IN
STIRRED-TANK REACTORS 397 9.3.4 MASS TRANSFER IN REACTORS 402 9.3.5
PRESSURE DROP AND FLUIDIZATION IN TUBULAR REACTORS 403 9.4 PROCESS
TECHNOLOGY 404 9.4.1 SURVEY 404 9.4.2 CASE STUDY 2: THE MANUFACTURE OF
GLUCOSE-FRUCTOSE SYRUP 406 9.4.3 REACTOR INSTRUMENTATION 420 9.4.4
OUTLOOK: PERSPECTIVES FOR INTEGRATED PROCESS ENGINEERING 422 9.5
EXERCISES 423 9.5.1 EXERCISES RELATING TO CASE STUDY 9.2 413 9.5.2
EXERCISES RELATING TO MIXING AND SHEAR 423 LITERATURE 414 CONTENTS XVII
APPENDIX I THE WORLD OF BIOTECHNOLOGY INFORMATION: EIGHT POINTS FOR
REFLECTING ON YOUR INFORMATION BEHAVIOR 419 1 THINKING ABOUT YOUR
INFORMATION BEHAVIOR 429 2 PLAYING WITH DATABASES AND SEARCH TERMS 420 3
TUTORIALS, SUBJECT GATEWAYS AND LITERATURE GUIDES 420 4 USING YOUR LOCAL
LIBRARY 422 5 USING ENCYCLOPEDIAS 422 6 SEARCHING JOURNAL ARTICLES,
PATENTS, AND DATA 422 7 AFTER SEARCHING: EVALUATING AND PROCESSING
INFORMATION 425 8 INFORMATION AND THE WORLD 426 LITERATURE 426 APPENDIX
II SYMBOLS 427 SUBJECT INDEX 432
|
any_adam_object | 1 |
author | Buchholz, Klaus 1941- Kasche, Volker 1939-2017 Bornscheuer, Uwe Theo 1964- |
author_GND | (DE-588)118071696 (DE-588)11807170X (DE-588)121061841 |
author_facet | Buchholz, Klaus 1941- Kasche, Volker 1939-2017 Bornscheuer, Uwe Theo 1964- |
author_role | aut aut aut |
author_sort | Buchholz, Klaus 1941- |
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building | Verbundindex |
bvnumber | BV019779194 |
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callnumber-search | TP248.E5 |
callnumber-sort | TP 3248 E5 |
callnumber-subject | TP - Chemical Technology |
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ctrlnum | (OCoLC)249900246 (DE-599)BVBBV019779194 |
dewey-full | 660.634 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 660 - Chemical engineering |
dewey-raw | 660.634 |
dewey-search | 660.634 |
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dewey-tens | 660 - Chemical engineering |
discipline | Chemie / Pharmazie Biologie Chemie Chemie-Ingenieurwesen Biotechnologie |
format | Book |
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genre | 1\p (DE-588)4151278-9 Einführung gnd-content 2\p (DE-588)4123623-3 Lehrbuch gnd-content |
genre_facet | Einführung Lehrbuch |
id | DE-604.BV019779194 |
illustrated | Illustrated |
indexdate | 2024-07-09T20:05:55Z |
institution | BVB |
isbn | 3527304975 9783527304974 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-013105189 |
oclc_num | 249900246 |
open_access_boolean | |
owner | DE-91G DE-BY-TUM DE-703 DE-19 DE-BY-UBM DE-M49 DE-BY-TUM DE-20 DE-1046 DE-29T DE-1102 DE-634 DE-83 DE-91S DE-BY-TUM DE-11 |
owner_facet | DE-91G DE-BY-TUM DE-703 DE-19 DE-BY-UBM DE-M49 DE-BY-TUM DE-20 DE-1046 DE-29T DE-1102 DE-634 DE-83 DE-91S DE-BY-TUM DE-11 |
physical | XVII, 448 S. Ill., graph. Darst. |
publishDate | 2005 |
publishDateSearch | 2005 |
publishDateSort | 2005 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Buchholz, Klaus 1941- Verfasser (DE-588)118071696 aut Biokatalysatoren und Enzymtechnologie engl. Biocatalysts and enzyme technology Klaus Buchholz ; Volker Kasche ; Uwe Theo Bornscheuer Weinheim Wiley-VCH 2005 XVII, 448 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturangaben Biokatalyse gtt Bioreactoren gtt Enzymen gtt Enzymkatalyse Enzymtechnologie Immobilisatie gtt Karakterisering (algemeen) gtt Synthese (chemie) gtt Zuiveringstechnieken gtt Biokatalyse. gtt Bioreactoren. gtt Biotechnology Catalysis Enzymen. gtt Enzymes Enzymes Biotechnology Enzymes Industrial applications Immobilisatie. gtt Zuiveringstechnieken. gtt Biokatalyse (DE-588)4393622-2 gnd rswk-swf Enzymkatalyse (DE-588)4152480-9 gnd rswk-swf Enzymtechnologie (DE-588)4135962-8 gnd rswk-swf 1\p (DE-588)4151278-9 Einführung gnd-content 2\p (DE-588)4123623-3 Lehrbuch gnd-content Enzymtechnologie (DE-588)4135962-8 s DE-604 Enzymkatalyse (DE-588)4152480-9 s Biokatalyse (DE-588)4393622-2 s 3\p DE-604 Kasche, Volker 1939-2017 Verfasser (DE-588)11807170X aut Bornscheuer, Uwe Theo 1964- Verfasser (DE-588)121061841 aut HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013105189&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Buchholz, Klaus 1941- Kasche, Volker 1939-2017 Bornscheuer, Uwe Theo 1964- Biocatalysts and enzyme technology Biokatalyse gtt Bioreactoren gtt Enzymen gtt Enzymkatalyse Enzymtechnologie Immobilisatie gtt Karakterisering (algemeen) gtt Synthese (chemie) gtt Zuiveringstechnieken gtt Biokatalyse. gtt Bioreactoren. gtt Biotechnology Catalysis Enzymen. gtt Enzymes Enzymes Biotechnology Enzymes Industrial applications Immobilisatie. gtt Zuiveringstechnieken. gtt Biokatalyse (DE-588)4393622-2 gnd Enzymkatalyse (DE-588)4152480-9 gnd Enzymtechnologie (DE-588)4135962-8 gnd |
subject_GND | (DE-588)4393622-2 (DE-588)4152480-9 (DE-588)4135962-8 (DE-588)4151278-9 (DE-588)4123623-3 |
title | Biocatalysts and enzyme technology |
title_alt | Biokatalysatoren und Enzymtechnologie engl. |
title_auth | Biocatalysts and enzyme technology |
title_exact_search | Biocatalysts and enzyme technology |
title_full | Biocatalysts and enzyme technology Klaus Buchholz ; Volker Kasche ; Uwe Theo Bornscheuer |
title_fullStr | Biocatalysts and enzyme technology Klaus Buchholz ; Volker Kasche ; Uwe Theo Bornscheuer |
title_full_unstemmed | Biocatalysts and enzyme technology Klaus Buchholz ; Volker Kasche ; Uwe Theo Bornscheuer |
title_short | Biocatalysts and enzyme technology |
title_sort | biocatalysts and enzyme technology |
topic | Biokatalyse gtt Bioreactoren gtt Enzymen gtt Enzymkatalyse Enzymtechnologie Immobilisatie gtt Karakterisering (algemeen) gtt Synthese (chemie) gtt Zuiveringstechnieken gtt Biokatalyse. gtt Bioreactoren. gtt Biotechnology Catalysis Enzymen. gtt Enzymes Enzymes Biotechnology Enzymes Industrial applications Immobilisatie. gtt Zuiveringstechnieken. gtt Biokatalyse (DE-588)4393622-2 gnd Enzymkatalyse (DE-588)4152480-9 gnd Enzymtechnologie (DE-588)4135962-8 gnd |
topic_facet | Biokatalyse Bioreactoren Enzymen Enzymkatalyse Enzymtechnologie Immobilisatie Karakterisering (algemeen) Synthese (chemie) Zuiveringstechnieken Biokatalyse. Bioreactoren. Biotechnology Catalysis Enzymen. Enzymes Enzymes Biotechnology Enzymes Industrial applications Immobilisatie. Zuiveringstechnieken. Einführung Lehrbuch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013105189&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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