Biomass to biofuels: strategies for global industries
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Chichester
Wiley
2010
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Ausgabe: | 1. publ. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXII, 559 S. Ill., graph. Darst. |
ISBN: | 9780470513125 |
Internformat
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650 | 0 | |a Biomass energy / International cooperation | |
650 | 0 | |a Biomass energy industries / International cooperation | |
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650 | 4 | |a Globalisierung | |
650 | 4 | |a Biomass energy industries | |
650 | 4 | |a Globalization | |
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Datensatz im Suchindex
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adam_text | CONTENTS FOREWORD PREFACE CONTRIBUTORS PART I: STRUCTURE OF THE
BIOENERGY BUSINESS 1 CHARACTERISTICS OF BLOFUELS AND RENEWABLE FUEL
STANDARDS ALAN C. HANSEN, DIMITRIOS C. KYRITSIS AND CHIA FON F. LEE 1.1
INTRODUCTION 1.2 MOLECULAR STRUCTURE 1.3 PHYSICAL PROPERTIES 1.4
CHEMICAL PROPERTIES 1.5 BIOFUEL STANDARDS 1.6 PERSPECTIVE REFERENCES 2
THE GLOBAL DEMAND FOR BIOFUELS: TECHNOLOGIES, MARKETS AND POLICIES
JUERGEN SCHEFFRAN 2.1 INTRODUCTION 2.2 MOTIVATION AND POTENTIAL OF
RENEWABLE FUE1S 2.3 RENEWABLE FUELS IN THE TRANSPORRATION SECTOR 2.4
STATUS AND POTENTIAL OF MAJOR BIOFUELS 2.5 BIOFUEL POLICIES AND MARKETS
IN SELECTED COUNTRIES 2.6 PERSPECTIVE REFERENCES 3 BIOFUEL DEMAND
REALIZATION STEPHEN R. HUGHES AND NASIB QURESHI 3.1 INTRODUCTION 3.2
AVAILABILITY OF RENEWABLE RESOURCES TO REALIZE BIOFUEL DEMAND 3.3
TECHNOLOGY IMPROVEMENTS TO ENHANCE BIOFUEL PRODUCTION ECONOMICS 3.4 US
REGULATORY REQUIREMENTS FOR ORGANISMS ENGINEERED TO MEET BIOFUEL DEMAND
3.5 PERSPECTIVE ACKNOWLEDGMENTS REFERENCES 4 ADVANCED BIOREFINERIES FOR
THE PRODUCTION OR FUEL ETHANOL STEPHEN R. HUGHES, WILLIAM GIBBONS AND
SCOTT KOHL 4.1 INTRODUCTION 4.2 ETHANOL PRODUCTION PLANTS USING SUGAR
FEEDSTOCKS XI XIII XIX 1 3 3 4 5 10 17 19 21 27 27 29 31 34 37 44 50 55
55 56 59 64 67 68 68 71 71 73 VI CONTENTS 4.3 DEDICATED DRY-GRIND AND
DRY-MILL STARCH ETHANOL PRODUCTION PLANTS 4.4 DEDICATED WET-MILL STARCH
ETHANOL PRODUCTION PLANTS 4.5 DEDICATED CELLULOSIC ETHANOL PRODUCTION
PLANTS 4.6 ADVANCED COMBINED BIEREFINERIES 4.7 PERSPECTIVE
ACKNOWLEDGMENTS REFERENCES PART IL: OIESEL FROM BIOMASS 75 79 81 83 84
86 86 89 5 BIOMASS LIQUEFACTION AND GASIFICATION 91 NICOLAUS DAHMEN.
EDMUND HENRICH, ANDREA KRUSE AND KLAUS RAFFELT 5.1 INTRODUCTION 91 5.2
DIRECT LIQUEFACTION 92 5.3 BIOSYNFUELS FROM BIOSYNGAS 104 5.4
PERSPECTIVE 116 REFERENOES 118 6 DIESEL FROM SYNGAS 123 YONG-WAPLG LI,
JIAN XU AND YONG YANG 6.1 INTRODUCTION 123 6.2 OVERVIEW OF
FISCHER-TROPSCH SYNTHESIS 124 6.3 HISTORICAL DEVELOPMENT OF THE
FISCHER-TROPSCH SYNTHESIS PROCESS 125 6.4 MODEM FISCHER-TROPSCH
SYNTHESIS PROCESSES 128 6.5 ECONOMICS 135 6.6 PERSPECTIVE 136
ACKNOWLEDGMENTS 137 REFERENCES 138 7 BIODIESEL FROM VEGETABLE OUS 141
JOI1 VANGERPEN 7.1 INTRODUCTION 141 7.2 USE OF VEGETABLE OILS AS DIESEL
FUELS 142 7.3 RENEWABLE DIESEL 146 7.4 PROPERTIES 146 7.5 BIODIESEL
PRODUCTION 151 7.6 TRANSESTERIFICATION 152 7.7 BIODIESEL PURIFICATION
156 7.8 PERSPECTIVE 158 REFERENCES 160 8 BLOFUELS FROM MI.CROALGAE AND
SEAWEEDS 165 MICHAEL HUESEMANN, G. ROESJADI, LOHN BENEMANN AND F. BLAINE
METTING 8.1 INTRODUCNON 165 8.2 BIOFUELS FROM MICROALGAE: PRODUCTS,
PROCESSES, AND LIMITATIONS 167 8.3 BIOFUELS FROM SEAWEEDS: PRODUCTS,
PROCESSES, AND LIMITATIONS 174 8.4 PERSPECTIVE 179 REFERENCES 180
CONTENTS VII PART 111: ETHANOL AND BUTANOL 185 9 IMPROVEMENTS IN CORN TO
ETHANOL PRODUCTION TECHNOLOGY USING SACCHAROMYCES EEREVISIAE 187 VIJAY
SINGH, DAVID B. JOHNSTON, KENT D. RAUSCH AND M.E. TUMBLESON 9.1
INTRODUCTION 187 9.2 CURRENT INDUSTRIAL ETHANOL PRODUCTION TECHNOLOGY
187 9.3 GRANULAR STARCH HYDROLYSIS 191 9.4 COM FRACTIONATION 192 9.5
SIMULTANEOUS SSF AND DISTILLATION 193 9.6 DYNAMIC CONTROL OF SSF
PROCESSES 194 9.7 COST OF ETHANOL 195 9.8 PERSPECTIVE 196 REFERENCES 196
10 ADVANCED TECHNOLOGIES FOR BIOMASS HYDROLYSIS AND SACCHARIFICATION
USING NOVEL ENZYMES 199 MARGRET E. BERG MILLER, LENNIFER M. BRULC,
EDWARD A. BAYER, RAPHAEL LAMED, HARRY 1. FLINT AND BRYAN A. WHITE 10.1
INTRODUCTION 199 10.2 THE SUBSTRATE 200 10.3 GTYCOSYL HYDROLASES 200
10.4 THE CELLULOSOME CONCEPT 203 10.5 NEW APPROACHES FOR THE
IDENTIFICATION OF NOVE1 GLYCOSIDE HYDROLASES 205 10.6 PERSPECTIVE 209
REFERENCES 209 11 MASS BALANCES AND ANALYTICAL METHODS FOR BIOMASS
PRETREATMENT EXPERIMENTS 213 BRUCE S. DIEN 11.1 INTRODUCTION 213 11.2
ANALYSIS OF FEEDSTOCKS FOR COMPOSITION AND POTENTIAL ETHANOL YIELD 214
11.3 PRETREATMENT 218 11.4 ENZYMATIC EXTRACTION OF SUGARS 224 11.5
FERMENTATION OF PRETREATED HYDROLYSATES TO ETHANOL 226 11.6 FEEDSTOCK
AND PROCESS INTEGRATION 228 11.7 PERSPECTIVE 229 ACKNOWLEDGMENTS 229
REFERENCES 230 12 BIOMASS CONVERSION INHIBITORS AND IN SITU
DETOXITICATION 233 Z. LEWIS LIU AND HANS P. BLASCHEK 12.1 INTRODUCTION
233 12.2 INHIBITORY COMPOUNDS DERIVED FROM BIOMASS PRETREATMENT 234 12.3
INHIBITORY EFFECTS 239 12.4 REMOVAL OF INHIBITORS 242 12.5
INHIBITOR-TOLERANT STRAIN DEVELOPMENT 243 12.6 INHIBITOR CONVERSION
PATHWAYS 245 12.7 MOLECULAR MECHANISMS OF IN SITU DETOXIFICATION 247
12.8 PERSPECTIVE 253 ACKNOWLEDGMENTS 254 REFERENCES 254 VIII CONTENTS 13
FUEL ETHANOL PRODUCTION FROM LIGNOCELLULOSIC RAW MATERIALS USING
RECOMBLNANT YEASTS GRAFIT STANLEY AND BARHEL HAHN-HAGERDAL 13. I
LNTRODNCTICN 13.2 CONSOLIDATCD BIOPROCESSING AND ETHANOL PRODUCTION L3.3
PCNTOSC-FERMCNTING S. CEREVISIAE STRAINS !3.4 LIGUOCCLLULOSC
FERMENTATION AND ETHANOL INHIBITION 13.5 PCRSPCCTIVC ACKNOWLCDGRNCNTS
RCFCRCNCCS 14 CONVERSION OF BIOMASS TO ETHANOL BY OTHER ORGANISMS SIQING
LIU 1.1.1 LNTRODUCTION 14.2 DCSIRCD BIOCATALYSTS FOR BIOMASS 10
BIOETHANOL 14.3 GRAM-NEGATIVE BNCTCRIA 1.1.4 GRAM-POSITIVE BUCTCRIA
L LOS PCRSPCCTIVC ACK NOWLCDGMCMS RCLCRCNCCS I S ADVUNCED FEMRENTATINN
TECHNOLOGIES MASAVUKI LNUI. I LAIN A. VER/ES AND HIDEAKI }I/KAWA 15.1
INTRODUCTION 15.2 BRUCH PROCESSES J 5.3 FELL-BATEH PROCESSES 15.4
CONTINUOUS PROCESSES 15.5 IMMOHILIZCD CCLL SYSTEMS 15.(1 GROWLH-ARRCSLCD
PROCCSS J 5.7 11I1CGR:1ICD BIOPROCCSSCS 15.~ CONSOLIDATCD BIOPROCCSSING
(CBP) 15.9 PCRSPCCTIVE RCFCRCNCES 16 ADVANCED PRODUCT RECOVERY
TECHNOLOGLES NLTLDDL /IS C. EZ.EJI AND YCBO LI 16.1 INTRODUCLION 1(1.2
L KIL1I1L 1L1LC SEPARATION . I(I.J I DV:LNCCD TECHNOLOGICS FUER BIOFUEL
RECOVERY: INDUSTNALLY RELEVANT PROCESSES 16.4 PERSPCCTIVC
ACKNOWLCDGRNCNTS RCFERCNCCS T 7 C10STRIDIA AND PROCESS ENGINEERING FOR
ENERGY GENERATION NASIB QURESHI AND HANS P. BLASETICK 17.1 LNTRODUCTION
17.2 SUBSTRATES. CULTURCS, UND TRADITIONAL TECHNOLOGIES 17..,
AGRICULTUML RESIDUCS AS SUBSTRATES IOR THE FUTURE 17.4 BULANOL-PRODUCING
MICROBIAL CULTURES 17.5 REGULATION 01 BUTANOL PRODUETION AND MICROBIAL
GENERIES 261 261 265 271 275 281 282 282 293 293 294 295 300 305 306 306
311 311 312 3]4 315 317 319 322 324 325 327 331 33] 333 336 343 343 343
347 347 348 348 349 350 CONTENTS IX 17.6 NOVEL FENNENTATION TECHNOLOGIES
35 I 17.7 NOVEL PRODUCT RECOVERY TECHNOLOGIES 35 I 17.8 FERMENTATION OF
LIGNOCELLULOSIC SUBSTRATES IN INTEGRATED SYSTEMS 353 17.9 INTEGRATED OR
CONSOLIDATED PROCESSES 355 17.10 PERSPECTIVE 355 ACKNOWLEDGMENTS 355
REFERENCES 356 PART IV: HYDROGEN, METHANE AND METHANOL 359 18 HYDROGEN
GENERATION BY MICROBIAL CULTURES 361 ANJA HEMSCHEMEIER; KATRIN MUELLNER,
THILO RUHLE AND THOMAS HAPPE 18.1 INTRODUCTION: WHY BIOLOGICAL HYDROGEN
PRODUCTION? 361 J 8.2 BIOLOGIEAL HYDROGEN PRODUCTION 362 18.3 METABOLIE
BASICS FOR HYDROGEN PRODUCTION: FERMENTATION AND PHOTOSYNTHESIS 366 18.4
H2 PRODUCTION IN APPLICATION: CASES IN POINT 370 ]8.5 PERSPECTIVE 378
REFERENCES 380 19 ENGINEERING PHOTOSYNTHESIS FOR H2 PRODUCTION FROM H20:
CYANOBACTERIA AS DESIGN ORGANISMS 387 NADINE WASCHEWSKI, GABOR BERNAT,
AND MATTHIAS ROEGNER 19.1 THE BASIC IDEA: WHY HYDROGEN FROM WATER? 387
19.2 REALIZATION: THREE MUTUALLY SUPPORTING STRATEGIES 388 19.3 THE
BIOLOGICAL STRATEGY: HOW TO DESIGN A HYDROGEN-PRODUCING (CYANO-)
BACTERIAL CELL 390 19.4 ENGINEERING THE ENVIRONMENT OF THE CELLS:
REACTOR DESIGN 395 19.5 HOW MUCH CAN WE EXPECT? THE LIMIT OF NATURAL
SYSTEMS 397 19.6 PERSPECTIVE 397 ACKNOWLEDGMENTS 399 REFERENCES 399 20
PRODUCTION AND UTILIZATION OF METHANE BIOGAS AS RENEWAEHLE FUEL 403
ZHONGTANG YU, MARK MORRISON, AND FLOYD L. SCHANBACHER 20.1 INTRODUCTION
403 20.2 THE MICROBES AND METABOLISRNS UNDERPINNING BIOMETHANATION 404
20.3 POTENTIAL FEEDSTOCKS USED FOR METHANE BIOGAS PRODUCTION 408 20.4
BIOMETHANATION TECHNOLOGIES FOR PRODUCTION 01 METHANE BIOGAS 413 20.5
UTILIZATION OF METHANE BIOGAS AS A FUEL 426 20.6 PERSPECTIVE 427 20.7
CONCLUDING REMARKS 428 DISCLAIMER 429 REFERENCES 429 21 METHANOL
PRODUCTION AND UTILIZATION 435 GREGORY A. DOLAN 21.1 INTRODUCTION 435
21.2 BIOMASS GASIFICATION: MATURE AND IMMATURE 438 21.3 FEEDSTOCKS:
DIVERSE AND PLENTIFUL 439 21.4 BIOMETHANOL: ICES, FFVS, AND FCVS 441 X
CONTENTS 21.5 CASC STUDY: WASTE WOOD BIOREFINERY 21.6 CASE STUDY:
TWO-STEP THERMOCHEMICAL CONVERSION PROCESS 21.7 CASE STUDY: MOBILE
METHANOL MACHINE 21.8 CASE STUDY: SCANDINAVIA LEADING THE WAY WITH BLACK
LIQUOR METHANOL PRODUCIION 21.9 CASC STUDY: METHANOL FERMENTATION
THROUGH ANAEROBIC DIGESTION RCFERENCES PART V: PERSPECUEVES 443 444 446
447 450 454 457 22 ENHANCING PRIMARY RAW MATERIALS FOR BIOFUELS 459
TAKAHISA HAYASHI, RUM; KAIDA, NOBUTAKA MITSUDA, MASARU OHME-TAKAGI,
NOBUVUKI NISHIKUBO, SHIN-ICHIRO KIDOU AND KOUKI YOSHIDA 22.1
INTRODUCTION 459 22.2 IN-FIHRIL MODIFICATION 460 22.3 111-WALL
MODIFICATIONS 464 22.4 LN-PLANTA MODIFICATIONS 466 22.5 IN-CRES-T
MODILICATION 468 22.6 A CATALOGUE OF GENE FAMILIES FOR GLYCAN SYNTHASES
AND HYDROLASES 471 22.7 PCRSPCCTIVC 481 ACKNOWLCDGMENRS 481 REFCRCNCCS
482 23 AXES 01 DEVELOPMENT IN CHEMICAL AND PROCESS ENGINEERING FOR
CONVCRTING BIOMASS TO ENERGY 491 ALAIN A B !T~S 23.1 GLOBALOUTLOOK 491
23.2 ENHANCCRNENT 01 RAW MATERIAL BIOMASS 500 23.3 CONVCRSION OF
BIOMASS TO FUELS ANEL CHEMIEALS 502 23.4 CHCRNICAL ENGINEERING
DEVELOPRNENT 506 23.5 PCRSPECTIVC 509 RCFERCNCES 515 24 FINANCING
STRATEGIES FOR INDUSTRIAL-SEALE BIOFUEAE PRODUCTLON AND TECHNOLOGY
DEVELOPRNENT START-UPS 523 ALAIN A VCRFT AND SARIT SOCCARY BEN
YOCHANAN 24.1 BACKGROUND: THC FINANCIAL ENVIRONMENT 523 24.2 BIOFUCLS
PROJCCT: STEPS IN VALUE CREATION AND REQUIRED FUNDING AT EACH STAGE 530
24.3 GOVCRNRNCNTAL INCENTIVES TO SUPPORT THE NASCENT BIOFUEL AND
BIOMATCRIAL INDUSTRY 538 24.4 PCRSPCCTIVE: WHAT IS THE BEST FUNDING
SOUREE FOR EACH STEP IN A CORNPANY S DEVELOPMCNT? 540 REFCRCNCES 543
INDEX 547
|
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discipline | Chemie-Ingenieurwesen Energietechnik Wirtschaftswissenschaften |
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indexdate | 2024-07-09T22:05:45Z |
institution | BVB |
isbn | 9780470513125 |
language | English |
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record_format | marc |
spelling | Biomass to biofuels strategies for global industries ed. by Alain Vertès ... 1. publ. Chichester Wiley 2010 XXII, 559 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Biomass energy / International cooperation Biomass energy industries / International cooperation Globalization Globalisierung Biomass energy industries Biokraftstoff (DE-588)4145658-0 gnd rswk-swf Biomasse (DE-588)4006877-8 gnd rswk-swf Bioenergieerzeugung (DE-588)4145597-6 gnd rswk-swf Bioenergieerzeugung (DE-588)4145597-6 s DE-604 Biomasse (DE-588)4006877-8 s Biokraftstoff (DE-588)4145658-0 s Vertes, Alain A. edt OEBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018694625&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Biomass to biofuels strategies for global industries Biomass energy / International cooperation Biomass energy industries / International cooperation Globalization Globalisierung Biomass energy industries Biokraftstoff (DE-588)4145658-0 gnd Biomasse (DE-588)4006877-8 gnd Bioenergieerzeugung (DE-588)4145597-6 gnd |
subject_GND | (DE-588)4145658-0 (DE-588)4006877-8 (DE-588)4145597-6 |
title | Biomass to biofuels strategies for global industries |
title_auth | Biomass to biofuels strategies for global industries |
title_exact_search | Biomass to biofuels strategies for global industries |
title_full | Biomass to biofuels strategies for global industries ed. by Alain Vertès ... |
title_fullStr | Biomass to biofuels strategies for global industries ed. by Alain Vertès ... |
title_full_unstemmed | Biomass to biofuels strategies for global industries ed. by Alain Vertès ... |
title_short | Biomass to biofuels |
title_sort | biomass to biofuels strategies for global industries |
title_sub | strategies for global industries |
topic | Biomass energy / International cooperation Biomass energy industries / International cooperation Globalization Globalisierung Biomass energy industries Biokraftstoff (DE-588)4145658-0 gnd Biomasse (DE-588)4006877-8 gnd Bioenergieerzeugung (DE-588)4145597-6 gnd |
topic_facet | Biomass energy / International cooperation Biomass energy industries / International cooperation Globalization Globalisierung Biomass energy industries Biokraftstoff Biomasse Bioenergieerzeugung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018694625&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT vertesalaina biomasstobiofuelsstrategiesforglobalindustries |