Biofuels:
"Biofuels covers the use and conversion technologies of biomass as a renewable resource to produce bioenergy in a sustainable way, mainly in the form of liquid and gaseous biofuels. It gives a broad overview of biofuel developments from both a technical and an economical angle. The different pr...
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Chichester
Wiley
2009
|
Ausgabe: | 1. publ. |
Schriftenreihe: | Wiley series in renewable resources
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Zusammenfassung: | "Biofuels covers the use and conversion technologies of biomass as a renewable resource to produce bioenergy in a sustainable way, mainly in the form of liquid and gaseous biofuels. It gives a broad overview of biofuel developments from both a technical and an economical angle. The different production technologies for biofuels that exist or are under development are extensively covered in depth, dealing with both first generation as well as second generation technologies. Market developments in the sector, including trends on prices, markets and growth are also discussed. The link between the technical and economical developments are indicated throughout the text. The interactions between the technical, economical and ecological aspects are clearly expressed in this volume and are actually covered here for the first time in a single comprehensive volume." "This comprehensive text will prove useful for chemists, biologists and engineers working in the emerging biofuels industry, for researchers and academics interested in the field, as well as for those active in conventional fuel companies. The book is also relevant to people active in policy or financing, either within the government, industry or academia. This volume offers an excellent source of useful information and allows reflection about the bio-based economy in general."--BOOK JACKET. |
Beschreibung: | XIV, 242 S. Ill., graph. Darst. |
ISBN: | 9780470026748 |
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Datensatz im Suchindex
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---|---|
adam_text | CONTENTS SERIES PREFACE PREFACE LIST OF CONTRIBUTORS 1 BIOFUELS IN
PERSPECTIVE WIRN SOETAERT AND ERICK J, VANDAMME 1.1 FOSSIL VERSUS
RENEWABLE ENERGY RESOURCES 1.2 ECONOMIC IMPACT 1.3 COMPARISON OF
BIO-ENERGY SOURCES 1.4 CONC1USION REFERENCES 2 SUSTAINABLE PRODUCTION OF
CELLULOSIC FEEDSTOCK FOR BIOREFINERIES IN THE USA MATTHEW T. CARR AND
JAMES R. HETTENHAUS 2.1 INTRODUCTION 2.2 AVAILABILITY OF CELLULOSIC
FEEDSTOCKS 2.3 FEEDSTOCK OPTIONS 2.4 SUSTAINABLE REMOVAL 2.5 EROSION
CONTROL 2.6 TILLING PRACTICE 2.7 TRANSITIONING TO NO-TILL 2.8 REALIZING
REMOVAL 2.9 REMOVAL ECONOMICS 2.10 CLIMATE CHANGE MITIGATION 2.11
PRETREATMENT 2.12 FARMER IN VALUE CHAIN 2.13 THE START: PREPROCESSING
PENTOSE SUGARS AND LIGNIN 2.14 CONTINUING DOWNSTREAM: FUNGIBLE
FERMENTATION SUGARS 2.15 LOOKING UPSTREAM IX XI XIII 1 1 2 4 7 7 9 9 11
13 16 18 19 21 22 25 27 29 32 32 32 33 VI CONTENTS 2.16 LOGISTICS 33
2.17 CONCLUSIONS 33 2.18 POLICY RECOMMENDATIONS 34 REFERENCES 35 3
BIO-ETHANOLDEVELOPMENTIN THE USA 39 BRENT ERICKSON AND MATTHEWT. CARR
3.1 INTRODUCTION 39 3.2 FEDERAL POLICY 40 3.3 THE US ETHANOL MARKET 41
3.4 CORNETHANOL TECHNOLOGY 46 3.5 CELLULOSIC ETHANOL 49 3.6 THE FUTURE
52 REFERENCES 53 4 BIO-ETHANOL DEVELOPMENT(S) IN BRAZIL 55 ARNALDOWALTER
4.1 OVERVIEW 55 4.2 INTRODUCTION 56 4.3 THE BRAZILIAN EXPERIENCE WITH
ETHANOL 56 4.4 POLICYAND REGULATORY INSTRUMENTS APPLIED TO DEPLOY
LARGE-SCALE ETHANOLPRODUCTION 59 4.5 COSTREDUCTIONS 61 4.6 TECHNOLOGICAL
DEVELOPMENT 62 4.7 IS THE ETHANOL PRODUCTION IN BRAZIL SUSTAINABLE? 65
4.8 IS THE BRAZILIAN EXPERIENCE REPLICABLE? 72 4.9 CONCLUSIONS 73
REFERENCES 74 5 PROCESSTECHNOLOGIES FOR BIODIESEL PRODUCTION 77 MARTIN
MITTELBACH 5.1 INTRODUCTION 77 5.2 BIODIESELPRODUCTION WORLDWIDE 77 5.3
FEEDSTOCKSFOR BIODIESEL PRODUCTION 79 5.4 CHEMICALPRINCIPLES OF
BIODIESEL PRODUCTION 80 5.5 CATALYSTSFOR TRANSESTERIFICATION AND
ESTERIFICATION REACTIONS 81 5.6 TRANSESTERIFICATION IN SUPERCRITICAL
ALCOHOLS 86 5.7 ALTERNATIVEAPPROACHES 87 5.8 OVERVIEWOF PROCESS
TECHNOLOGIES 87 REFERENCES 91 6 BIO-BASED FISCHER-TROPSCHDIESEL
PRODUCTION TECHNOLOGIES 95 ROBIN ZWART AND RENE VAN REE 6.1 INTRODUCTION
95 6.2 THEORETICALBACKGROUND CATALYTIC FR-DIESEL SYNTHESIS PROCESS 96
6.3 6.4 6.5 BIOMASS GASIFICATION-BASED PT-DIESEL PRODUCTION CONCEPTS
ECONOMICS OF BIOMASS-BASED FT-DIESEL PRODUCTION CONCEPTS CONCLUSIONS
REFERENCES CONTENTS VII 100 110 113 114 7 PLANT OLL BIOFUEL: RATIONALE,
PRODUCTION AND APPLICATION 117 BARNIM JESCHKE 7.1 INTRODUCTION 117 7.2
PLANT OIL BIOFUE1S: THE UNDERLYING IDEA 118 7.3 PERSPECTIVES OF THE
PLANT OU FUEL MARKET 119 7.4 SYSTEM REQUIREMENTS 122 7.5 PLANT OIL
CONVERSION TECHNOLOGY 124 7.6 THE USER PERSPECTIVE 125 REFERENCES 127 8
ENZYMATIC PRODUCTION OF BIODIESEL 129 HIDEKI FUKUDA 8.1 INTRODUCTION 129
8.2 ENZYMATIC TRANSESTERIFICATION BY LIPASE 130 8.3 USE OF EXTRACELLULAR
LIPASES 131 8.4 USE OF INTRACELLULAR LIPASE AS WHOLE-CELL BIOCATALYST
136 8.5 USE OF CELL-SURFACE DISPLAYING CELLS AS WHOLE-CELL BIOCATALYST
143 8.6 CONCLUSIONS AND FUTURE PROSPECTS 147 REFERENCES 147 9 PRODUCTION
OF BIODIESEL FROM WASTE LIPIDS 153 ROLAND VERHE AND CHRISTIAN V: STEVENS
9.1 INTRODUCTION 153 9.2 ALTERNATIVE RESOURCES FOR BIODIESEL PRODUCTION
155 9.3 CONVERSION OF WASTE FRYING AND COOKING AUS INTO BIODIESEL 155
9.4 CONCLUSION 168 REFERENCES 169 10 BIOMASS DIGESTION TO METHANE IN
AGRICULTURE: A SUCCESSFUL PATHWAY FOR THE ENERGY PRODUCTION AND WASTE
TREATMENT WORLDWIDE 171 PETER WEILAND, WILLY VERSTRAETE AND ADRIANUS VAN
HAANDEL 10.1 OVERVIEW 171 10.2 INTRODUCTION 172 10.3 BIOGAS PRODUCTION
POTENTIAL 174 10.4 BIOGAS PRODUCTION CONFIGURATIONS 183 10.5 OUTLOOK 191
10.6 CONCLUSIONS 193 REFERENCES 194 VIII CONTENTS 11 BIOLOGICAL HYDROGEN
PRODUCTION BY ANAEROBIC MICROORGANISMS SERVE W.M. KENGEN, HELEEN P.
GOORISSEN, MARCEL VERHAART, ALFONS J.M. STAMS, ED WJ. VAN NIEL AND
PIETERNEL A.M. CLAASSEN ABBREVIATIONS 11.1 INTRODUCTION 11.2 HYDROGEN
FORMATION IN NATURAL ECOSYSTEMS 11.3 THERMODYNAMICS OF HYDROGEN
FORMATION 11.4 ENZYMOLOGY 11.5 ENTEROBACTERIA 11.6 THE GENUS CLOSTRIDIUM
11.7 THE GENUS CALDICELLULOSIRUPTOR 11.8 THE GENUS THERMOANAEROBACTER
11.9 THE GENUS THERMOTOGA 11.10 THE GENUS PYROCOCCUSFFHERMOCOCCUS 11.11
APPROACHES FOR IMPROVING HYDROGEN PRODUCTION 11.12 CONCLUDINGREMARKS
REFERENCES 12 IMPROVING SUSTAINABILITY OF THE CORN-ETHANOL INDUSTRY PAUL
W GALLAGHER AND HOSEIN SHAPOURI 12.1 INTRODUCTION 12.2 ENERGY BALANCE
12.3 CROP PRODUCTION AND GREENHOUSE GAS EMISSIONS 12.4 CO Z ADJUSTMENT
IN ACHANGING ETHANOL INDUSTRY 12.5 CONCLUSIONS REFERENCES INDEX 197 197
198 198 199 204 206 207 208 210 211 212 213 214 215 223 223 224 226 228
232 233 235
|
adam_txt |
CONTENTS SERIES PREFACE PREFACE LIST OF CONTRIBUTORS 1 BIOFUELS IN
PERSPECTIVE WIRN SOETAERT AND ERICK J, VANDAMME 1.1 FOSSIL VERSUS
RENEWABLE ENERGY RESOURCES 1.2 ECONOMIC IMPACT 1.3 COMPARISON OF
BIO-ENERGY SOURCES 1.4 CONC1USION REFERENCES 2 SUSTAINABLE PRODUCTION OF
CELLULOSIC FEEDSTOCK FOR BIOREFINERIES IN THE USA MATTHEW T. CARR AND
JAMES R. HETTENHAUS 2.1 INTRODUCTION 2.2 AVAILABILITY OF CELLULOSIC
FEEDSTOCKS 2.3 FEEDSTOCK OPTIONS 2.4 SUSTAINABLE REMOVAL 2.5 EROSION
CONTROL 2.6 TILLING PRACTICE 2.7 TRANSITIONING TO NO-TILL 2.8 REALIZING
REMOVAL 2.9 REMOVAL ECONOMICS 2.10 CLIMATE CHANGE MITIGATION 2.11
PRETREATMENT 2.12 FARMER IN VALUE CHAIN 2.13 THE START: PREPROCESSING
PENTOSE SUGARS AND LIGNIN 2.14 CONTINUING DOWNSTREAM: FUNGIBLE
FERMENTATION SUGARS 2.15 LOOKING UPSTREAM IX XI XIII 1 1 2 4 7 7 9 9 11
13 16 18 19 21 22 25 27 29 32 32 32 33 VI CONTENTS 2.16 LOGISTICS 33
2.17 CONCLUSIONS 33 2.18 POLICY RECOMMENDATIONS 34 REFERENCES 35 3
BIO-ETHANOLDEVELOPMENTIN THE USA 39 BRENT ERICKSON AND MATTHEWT. CARR
3.1 INTRODUCTION 39 3.2 FEDERAL POLICY 40 3.3 THE US ETHANOL MARKET 41
3.4 CORNETHANOL TECHNOLOGY 46 3.5 CELLULOSIC ETHANOL 49 3.6 THE FUTURE
52 REFERENCES 53 4 BIO-ETHANOL DEVELOPMENT(S) IN BRAZIL 55 ARNALDOWALTER
4.1 OVERVIEW 55 4.2 INTRODUCTION 56 4.3 THE BRAZILIAN EXPERIENCE WITH
ETHANOL 56 4.4 POLICYAND REGULATORY INSTRUMENTS APPLIED TO DEPLOY
LARGE-SCALE ETHANOLPRODUCTION 59 4.5 COSTREDUCTIONS 61 4.6 TECHNOLOGICAL
DEVELOPMENT 62 4.7 IS THE ETHANOL PRODUCTION IN BRAZIL SUSTAINABLE? 65
4.8 IS THE BRAZILIAN EXPERIENCE REPLICABLE? 72 4.9 CONCLUSIONS 73
REFERENCES 74 5 PROCESSTECHNOLOGIES FOR BIODIESEL PRODUCTION 77 MARTIN
MITTELBACH 5.1 INTRODUCTION 77 5.2 BIODIESELPRODUCTION WORLDWIDE 77 5.3
FEEDSTOCKSFOR BIODIESEL PRODUCTION 79 5.4 CHEMICALPRINCIPLES OF
BIODIESEL PRODUCTION 80 5.5 CATALYSTSFOR TRANSESTERIFICATION AND
ESTERIFICATION REACTIONS 81 5.6 TRANSESTERIFICATION IN SUPERCRITICAL
ALCOHOLS 86 5.7 ALTERNATIVEAPPROACHES 87 5.8 OVERVIEWOF PROCESS
TECHNOLOGIES 87 REFERENCES 91 6 BIO-BASED FISCHER-TROPSCHDIESEL
PRODUCTION TECHNOLOGIES 95 ROBIN ZWART AND RENE VAN REE 6.1 INTRODUCTION
95 6.2 THEORETICALBACKGROUND CATALYTIC FR-DIESEL SYNTHESIS PROCESS 96
6.3 6.4 6.5 BIOMASS GASIFICATION-BASED PT-DIESEL PRODUCTION CONCEPTS
ECONOMICS OF BIOMASS-BASED FT-DIESEL PRODUCTION CONCEPTS CONCLUSIONS
REFERENCES CONTENTS VII 100 110 113 114 7 PLANT OLL BIOFUEL: RATIONALE,
PRODUCTION AND APPLICATION 117 BARNIM JESCHKE 7.1 INTRODUCTION 117 7.2
PLANT OIL BIOFUE1S: THE UNDERLYING IDEA 118 7.3 PERSPECTIVES OF THE
PLANT OU FUEL MARKET 119 7.4 SYSTEM REQUIREMENTS 122 7.5 PLANT OIL
CONVERSION TECHNOLOGY 124 7.6 THE USER PERSPECTIVE 125 REFERENCES 127 8
ENZYMATIC PRODUCTION OF BIODIESEL 129 HIDEKI FUKUDA 8.1 INTRODUCTION 129
8.2 ENZYMATIC TRANSESTERIFICATION BY LIPASE 130 8.3 USE OF EXTRACELLULAR
LIPASES 131 8.4 USE OF INTRACELLULAR LIPASE AS WHOLE-CELL BIOCATALYST
136 8.5 USE OF CELL-SURFACE DISPLAYING CELLS AS WHOLE-CELL BIOCATALYST
143 8.6 CONCLUSIONS AND FUTURE PROSPECTS 147 REFERENCES 147 9 PRODUCTION
OF BIODIESEL FROM WASTE LIPIDS 153 ROLAND VERHE AND CHRISTIAN V: STEVENS
9.1 INTRODUCTION 153 9.2 ALTERNATIVE RESOURCES FOR BIODIESEL PRODUCTION
155 9.3 CONVERSION OF WASTE FRYING AND COOKING AUS INTO BIODIESEL 155
9.4 CONCLUSION 168 REFERENCES 169 10 BIOMASS DIGESTION TO METHANE IN
AGRICULTURE: A SUCCESSFUL PATHWAY FOR THE ENERGY PRODUCTION AND WASTE
TREATMENT WORLDWIDE 171 PETER WEILAND, WILLY VERSTRAETE AND ADRIANUS VAN
HAANDEL 10.1 OVERVIEW 171 10.2 INTRODUCTION 172 10.3 BIOGAS PRODUCTION
POTENTIAL 174 10.4 BIOGAS PRODUCTION CONFIGURATIONS 183 10.5 OUTLOOK 191
10.6 CONCLUSIONS 193 REFERENCES 194 VIII CONTENTS 11 BIOLOGICAL HYDROGEN
PRODUCTION BY ANAEROBIC MICROORGANISMS SERVE W.M. KENGEN, HELEEN P.
GOORISSEN, MARCEL VERHAART, ALFONS J.M. STAMS, ED WJ. VAN NIEL AND
PIETERNEL A.M. CLAASSEN ABBREVIATIONS 11.1 INTRODUCTION 11.2 HYDROGEN
FORMATION IN NATURAL ECOSYSTEMS 11.3 THERMODYNAMICS OF HYDROGEN
FORMATION 11.4 ENZYMOLOGY 11.5 ENTEROBACTERIA 11.6 THE GENUS CLOSTRIDIUM
11.7 THE GENUS CALDICELLULOSIRUPTOR 11.8 THE GENUS THERMOANAEROBACTER
11.9 THE GENUS THERMOTOGA 11.10 THE GENUS PYROCOCCUSFFHERMOCOCCUS 11.11
APPROACHES FOR IMPROVING HYDROGEN PRODUCTION 11.12 CONCLUDINGREMARKS
REFERENCES 12 IMPROVING SUSTAINABILITY OF THE CORN-ETHANOL INDUSTRY PAUL
W GALLAGHER AND HOSEIN SHAPOURI 12.1 INTRODUCTION 12.2 ENERGY BALANCE
12.3 CROP PRODUCTION AND GREENHOUSE GAS EMISSIONS 12.4 CO Z ADJUSTMENT
IN ACHANGING ETHANOL INDUSTRY 12.5 CONCLUSIONS REFERENCES INDEX 197 197
198 198 199 204 206 207 208 210 211 212 213 214 215 223 223 224 226 228
232 233 235 |
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discipline | Chemie / Pharmazie Agrarwissenschaft Chemie-Ingenieurwesen Energietechnik Biotechnologie Wirtschaftswissenschaften Pflanzenbau |
discipline_str_mv | Chemie / Pharmazie Agrarwissenschaft Chemie-Ingenieurwesen Energietechnik Biotechnologie Wirtschaftswissenschaften Pflanzenbau |
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id | DE-604.BV023305541 |
illustrated | Illustrated |
index_date | 2024-07-02T20:48:20Z |
indexdate | 2024-07-09T21:15:27Z |
institution | BVB |
isbn | 9780470026748 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016489919 |
oclc_num | 154798420 |
open_access_boolean | |
owner | DE-29T DE-1046 DE-634 DE-83 DE-91S DE-BY-TUM DE-91G DE-BY-TUM |
owner_facet | DE-29T DE-1046 DE-634 DE-83 DE-91S DE-BY-TUM DE-91G DE-BY-TUM |
physical | XIV, 242 S. Ill., graph. Darst. |
publishDate | 2009 |
publishDateSearch | 2009 |
publishDateSort | 2009 |
publisher | Wiley |
record_format | marc |
series2 | Wiley series in renewable resources |
spelling | Biofuels ed. by Wim Soetaert ... 1. publ. Chichester Wiley 2009 XIV, 242 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Wiley series in renewable resources "Biofuels covers the use and conversion technologies of biomass as a renewable resource to produce bioenergy in a sustainable way, mainly in the form of liquid and gaseous biofuels. It gives a broad overview of biofuel developments from both a technical and an economical angle. The different production technologies for biofuels that exist or are under development are extensively covered in depth, dealing with both first generation as well as second generation technologies. Market developments in the sector, including trends on prices, markets and growth are also discussed. The link between the technical and economical developments are indicated throughout the text. The interactions between the technical, economical and ecological aspects are clearly expressed in this volume and are actually covered here for the first time in a single comprehensive volume." "This comprehensive text will prove useful for chemists, biologists and engineers working in the emerging biofuels industry, for researchers and academics interested in the field, as well as for those active in conventional fuel companies. The book is also relevant to people active in policy or financing, either within the government, industry or academia. This volume offers an excellent source of useful information and allows reflection about the bio-based economy in general."--BOOK JACKET. Biomass energy Economic aspects Biomass energy Technological innovations Renewable natural resources Biokraftstoff (DE-588)4145658-0 gnd rswk-swf Energiepflanzen (DE-588)4473008-1 gnd rswk-swf Erneuerbare Energien (DE-588)4068598-6 gnd rswk-swf Energiepflanzen (DE-588)4473008-1 s Erneuerbare Energien (DE-588)4068598-6 s 1\p DE-604 Biokraftstoff (DE-588)4145658-0 s 2\p DE-604 Soetaert, Wim 1964- Sonstige (DE-588)141169036 oth OEBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016489919&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 |
spellingShingle | Biofuels Biomass energy Economic aspects Biomass energy Technological innovations Renewable natural resources Biokraftstoff (DE-588)4145658-0 gnd Energiepflanzen (DE-588)4473008-1 gnd Erneuerbare Energien (DE-588)4068598-6 gnd |
subject_GND | (DE-588)4145658-0 (DE-588)4473008-1 (DE-588)4068598-6 |
title | Biofuels |
title_auth | Biofuels |
title_exact_search | Biofuels |
title_exact_search_txtP | Biofuels |
title_full | Biofuels ed. by Wim Soetaert ... |
title_fullStr | Biofuels ed. by Wim Soetaert ... |
title_full_unstemmed | Biofuels ed. by Wim Soetaert ... |
title_short | Biofuels |
title_sort | biofuels |
topic | Biomass energy Economic aspects Biomass energy Technological innovations Renewable natural resources Biokraftstoff (DE-588)4145658-0 gnd Energiepflanzen (DE-588)4473008-1 gnd Erneuerbare Energien (DE-588)4068598-6 gnd |
topic_facet | Biomass energy Economic aspects Biomass energy Technological innovations Renewable natural resources Biokraftstoff Energiepflanzen Erneuerbare Energien |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016489919&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT soetaertwim biofuels |