Handbook of biofuels production: processes and technologies
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Oxford [u.a.]
Woodhead Publ.
2011
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Ausgabe: | 1. publ. |
Schriftenreihe: | Woodhead publishing series in energy
15 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXIV, 659 S. Ill., graph. Darst. |
ISBN: | 9781845696795 |
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adam_text |
Titel: Handbook of biofuels production
Autor: Luque, Rafael
Jahr: 2011
Contents
Contributor contact details xiii
Woodhead Publishing Series in Energy xix
Foreword xxiii
Part I Key issues and assessment of biofuels production 1
1 Introduction: an overview of biofuels and production
technologies 3
R. Luque and J.M. Campelo, Universidad de C6rdoba,
Spain and J.H. Clark, University of York, UK
1.1 Introduction 3
1.2 Development of (bio)chemical conversion technologies 4
1.3 Development of biological conversion technologies 5
1.4 Development of thermochemical conversion
technologies 6
1.5 Integration of biofuels into biorefineries 6
1.6 Future trends 8
1.7 Acknowledgements 11
1.8 Sources of further information 11
1.9 References 11
2 Multiple objectives policy for biofuels production: 13
environmental, socio-economic and regulatory issues
C. De Lucia, University of York, UK and Technical
University of Ban, Italy
2.1 Introduction 13
2.2 Energy security and supply 14
2.3 Emission reductions, land use and other environmental
impacts 17
2.4 Food safety and development of rural areas 19
2.5 Biofuels support policies 24
© Woodhead Publishing Limited, 2011
vi Contents
2.6 Conclusions and future trends 29
2.7 List of selected economies in Fig. 2.1 and 2.2, and
Tables 2. land 2.2 32
2.8 References 33
3 Life cycle sustainability assessment of biofuels 37
A. Azapagic, The University of Manchester, UK and
H. Stichnothe, Johann Heinrich von Thiinen Institut - Institute
of Agricultural Technology and Biosystems Engineering, Germany
3.1 Introduction 37
3.2 Sustainability issues along the life cycle of biofuels 39
3.3 Environmental sustainability of biofuels 40
3.4 Economic sustainability of biofuels 50
3.5 Future trends 55
3.6 Appendix: Life cycle assessment (LCA) methodology 55
3.7 Sources of further information 57
3.8 References 58
4 Vegetable-based feedstocks for biofuels production 61
S. Pinzi and M.P. Dorado, University of C6rdoba, Spain
4.1 Introduction 61
4.2 Most frequent vegetable raw materials to produce
first-generation biodiesel 62
4.3 Raw materials to produce low-cost biodiesel 69
4.4 Vegetable raw materials to produce bioethanol 71
4.5 Vegetable raw materials to produce biofuels from
other technologies 82
4.6 Acknowledgements 86
4.7 References 86
Part II Biofuels from chemical and biochemical conversion
processes and technologies 95
5 Production of biodiesel via chemical catalytic conversion 97
R. Verhe and C. Echim, Ghent University, Belgium,
W. De Greyt, Desmet Ballestra Group, Belgium and
C. Stevens, Ghent University, Belgium
5.1 Introduction 97
5.2 Biodiesel definition 98
5.3 Treatment of the feedstocks prior to production of the
biodiesel 102
5.4 Current technologies of biodiesel production 102
5.5 Purification of biodiesel 120
5.6 Industrial production of biodiesel 122
) Woodhead Publishing Limited, 2011
Contents vii
5.7 Influence of the feedstock and technology on
biodiesel properties 123
5.8 Conclusions and future trends 127
5.9 References 127
6 Biochemical catalytic production of biodiesel S. Al-Zuhair, UAE University, UAE 134
6.1 Introduction 134
6.2 The enzymatic process 136
6.3 Limitations of the enzymatic approach 137
6.4 Sources of the enzyme: lipase 139
6.5 Feedstock 140
6.6 Acyl acceptors 142
6.7 Effect of temperature 144
6.8 Immobilized lipase 144
6.9 Kinetics of enzymatic production of biodiesel 149
6.10 Future trends 151
6.11 Sources of further information 154
6.12 References 155
7 Production of glycerol-free and alternative biodiesels 160
A. Macario and G. Giordano, University of Calabria, Italy,
F.M. Bautista, D. Luna, R. Luque and A.A. Romero, University of
Cordoba, Spain
7.1 Introduction 160
7.2 Novel types of biodiesel: biofuels that incorporate
glycerol into their composition 162
7.3 Advantages in the use of biofuels integrating glycerol 170
7.4 Processing of oils and fats in the current oil refining
plants 171
7.5 Future trends 172
7.6 References 173
8 Biodiesel production from microbial oil 177
A.A. Koutinas and S. Papanikolaou, Agricultural
University of Athens, Greece
8.1 Introduction 177
8.2 Microorganisms and raw materials used for microbial
oil production 178
8.3 The biochemistry of lipid accumulation in the
oleaginous microorganisms 183
8.4 Biodiesel production from single cell oil 190
8.5 Future trends 191
8.6 References 192
) Woodhead Publishing Limited, 2011
viii Contents
Biochemical production of bioethanol 199
M. Arshadi, Swedish University of Agricultural Sciences,
Sweden and H. Grundberg, Processum Biorefinery
Initiative AB, Sweden
9.1 Introduction 199
9.2 Properties 200
9.3 Feedstocks 201
9.4 Processing technology 208
9.5 Pilot plant for ethanol production from
lignocellulosic feedstock 217
9.6 Environmental aspects of ethanol as a biofuel 217
9.7 Future trends 218
9.8 References 219
10 Biochemical production of biobutanol 221
M. Kopke and P. Durre, Universitat Ulm, Germany
10.1 Introduction 221
10.2 Principles, materials and feedstocks 222
10.3 Process technologies and techniques 230
10.4 Modeling and optimization 235
10.5 Advantages and limitations 240
10.6 Future trends 241
10.7 Sources of further information and advice 242
10.8 Acknowledgments 242
10.9 References 242
11 Biochemical production of other bioalcohols:
biomethanol, biopropanol, bioglycerol, and
bioethylene glycol 258
S.D. Minteer, St Louis University, USA
11.1 Introduction 258
11.2 Biomethanol 259
11.3 Biopropanol 260
11.4 Bioglycerol 261
11.5 Bio-ethylene glycol 261
11.6 Other possible bioalcohols 262
11.7 Advantages and limitations 263
11.8 Conclusions and future trends 263
11.9 Sources of further information and advice 264
11.10 References 264
Woodhead Publishing Limited, 2011
Contents ix
12 Production of biogas via anaerobic digestion 266
K. Stamatelatou, G. Antonopoulou and G. Lyberatos,
University of Patras, Greece
12.1 Introduction: the anaerobic digestion process 266
12.2 Factors affecting the anaerobic digestion process 268
12.3 Advantages and limitations 272
12.4 Process integration for biogas production 274
12.5 Process modelling 281
12.6 Process monitoring and control 284
12.7 Biogas utilisation 289
12.8 Existing biogas installations 290
12.9 Conclusions and future trends 294
12.10 Sources of further information and advice 295
12.11 References 296
13 Biological and fermentative production of hydrogen 305
G. Antonopoulou, I. Ntaikou, K. Stamatelatou and
G. Lyberatos, University of Patras, Greece
13.1 Hydrogen 305
13.2 Biological hydrogen production methods 306
13.3 Fermentative hydrogen production 318
13.4 Hydrogen economy 333
13.5 Advantages and limitations 335
13.6 Future trends 336
13.7 Sources of further information and advice 336
13.8 References 337
Part III Biofuels from thermal and thermo-chemical
conversion processes and technologies 347
14 Production of bio-oils via catalytic pyrolysis 349
M.A. Morris, University College Cork, Ireland
14.1 Introduction 349
14.2 Pyrolysis: a brief background 350
14.3 Pyrolysis economics 356
14.4 Catalytic pyrolysis: catalysis 357
14.5 Catalytic pyrolysis for improved pyrolysis-oil
generation 361
14.6 Reactors for catalytic pyrolysis 363
14.7 Catalysts used in catalytic pyrolysis 368
14.8 Conclusions and future trends 376
14.9 Acknowledgements 378
14.10 References 378
© Woodhead Publishing Limited, 2011
x Contents
15 Production of biofuels via catalytic cracking 390
J.A. Melero, A. Garcia and M. Clavero, Rey Juan Carlos
University, Spain
15.1 Introduction 390
15.2 Catalytic cracking of highly oxygenated biomass-derived
feedstocks 393
15.3 Catalytic cracking of triglyceride-based feedstocks 397
15.4 Co-processing of triglycerides and petrol feedstocks
mixtures in fluid catalytic cracking refinery units 404
15.5 Future trends 414
15.6 References 415
16 Production of bio-syngas and biohydrogen via
gasification 420
A. Dutta, University of Guelph, Canada and B. Acharya,
Dalhousie University, Canada
16.1 Introduction 420
16.2 Mechanism of gasification 425
16.3 Factors affecting performance of gasification 427
16.4 Types of gasifier 429
16.5 Modeling of the gasifier 442
16.6 Designing of gasifier 450
16.7 Conclusions 456
16.8 Sources of further information and advice 456
16.9 References 457
17 Production of bioalcohols via gasification 460
J.M.N. Van Kasteren, Eindhoven University of Technology,
The Netherlands
17.1 Introduction 460
17.2 Gasification routes for alcohol production 462
17.3 Conceptual design of a bio waste ethanol plant 466
17.4 Conclusions and future trends 475
17.5 Acknowledgements 476
17.6 Notes 476
17.7 References 476
18 Production of biofuels via hydrothermal conversion 478
S.R.A. Kersten and D. Knezevic\ University of Twente,
The Netherlands and R.H. Venderbosch, BTG Biomass
Technology Group B.V., The Netherlands
18.1 Introduction 478
18.2 Chemistry, product characteristics and product distribution 479
18.3 Process layout 484
Woodhead Publishing Limited, 2011
Contents xi
18.4 Process development and demonstration activities 485
18.5 Current research 488
18.6 Conclusions and future trends 488
18.7 References 489
19 Production of biofuels via Fischer-Tropsch synthesis:
biomass-to-liquids 493
A. Lappas and E. Heracleous, CPERI - Chemical Process
Engineering Research Institute, Greece
19.1 Introduction 493
19.2 Biomass-to-liquids-Fischer-Tropsch process technologies
and techniques 496
19.3 Biomass gasification to syngas 497
19.4 Synthesis of biofuels via Fischer-Tropsch 501
19.5 Upgrading of biomass-to-liquids-Fischer-Tropsch products 509
19.6 Biomass-to-liquids-Fischer-Tropsch final fuel products 517
19.7 Commercial status of the biomass-to-liquids-Fischer-
Tropsch processes 521
19.8 Future trends 522
19.9 References 524
20 Production of biofuels via biomass reforming 530
G. van Rossum and S.R.A. Kersten, University of Twente,
The Netherlands
20.1 Introduction 530
20.2 Related technologies 533
20.3 Chemical thermodynamics 535
20.4 Feedstocks and processes 537
20.5 Description of the ongoing research and status of
proposed and tested technologies for biomass reforming 541
20.6 Conclusions 550
20.7 References 551
Part IV Integrated production and application of biofuels:
biorefineries, by-product valorisation and engine
utilisation 557
21 Biofuel-driven biorefineries for the co-production of
transportation fuels and added-value products 559
R. van Ree, J. Sanders, R. Barker and R. Blaauw, Wageningen
University and Research Centre (WUR), The Netherlands
and R. Zwart and B. van der Drift, Energy Research
Center of The Netherlands (ECN), The Netherlands
21.1 Introduction 559
©Woodhead Publishing Limited, 2011
xii Contents
21.2 Biofuel-driven biorefineries: conventional biofuels 564
21.3 Biofuel-driven biorefineries: advanced biofuels 565
21.4 Optimising biomass value chains 574
21.5 Current status and future trends 576
21.6 Sources of further information 577
21.7 References 578
22 Valorization of by-products for the production of
biofuels 581
C. Echim, R. Verhe and C. Stevens, Ghent University,
Belgium and W. De Greyt, Desmet Ballestra Group, Belgium
22.1 Composition of deodorizer distillate 581
22.2 Applications and estimates of deodorizer distillates 582
22.3 Production of biodiesel/biofuel from deodorizer distillates 584
22.4 Recovery of sterols, tocopherols and squalene from
deodorizer distillate 590
22.5 Future trends 606
22.6 Acknowledgements 606
22.7 References 606
23 Utilisation of biofuels in diesel engines 611
T. Le Anh, School of Transportation Engineering,
Hanoi University of Science and Technology, Vietnam,
I.K. Reksowardojo, Institut Teknologi Bandung, Indonesia
and K. Wattanavichien, Chulalongkorn University, Thailand
23.1 Introduction 611
23.2 Utilisation of vegetable pure plant oil and crude oil in
diesel engines 612
23.3 Utilisation of biodiesel based palm oil, jatropha oil,
coconut oil and kapok nut oil in diesel engines 632
23.4 Utilisation of biodiesel B5 based cat-fish fat in diesel engines 634
23.5 The concept of using biofuel in engines (prime movers) 642
23.6 Conclusions 643
23.7 References 644
Index 647
©Woodhead Publishing Limited, 2011 |
any_adam_object | 1 |
building | Verbundindex |
bvnumber | BV036694797 |
classification_rvk | ZP 3760 |
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ctrlnum | (OCoLC)705874559 (DE-599)BVBBV036694797 |
discipline | Energietechnik, Energiewirtschaft Chemie-Ingenieurwesen Energietechnik |
edition | 1. publ. |
format | Book |
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id | DE-604.BV036694797 |
illustrated | Illustrated |
indexdate | 2024-07-20T05:54:22Z |
institution | BVB |
isbn | 9781845696795 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-020613359 |
oclc_num | 705874559 |
open_access_boolean | |
owner | DE-91S DE-BY-TUM DE-29T DE-1046 DE-634 |
owner_facet | DE-91S DE-BY-TUM DE-29T DE-1046 DE-634 |
physical | XXIV, 659 S. Ill., graph. Darst. |
publishDate | 2011 |
publishDateSearch | 2011 |
publishDateSort | 2011 |
publisher | Woodhead Publ. |
record_format | marc |
series | Woodhead publishing series in energy |
series2 | Woodhead publishing series in energy |
spelling | Handbook of biofuels production processes and technologies Ed. by Rafael Luque ... 1. publ. Oxford [u.a.] Woodhead Publ. 2011 XXIV, 659 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Woodhead publishing series in energy 15 Chemische Synthese (DE-588)4133806-6 gnd rswk-swf Nachwachsender Rohstoff (DE-588)4171069-1 gnd rswk-swf Alternativkraftstoff (DE-588)4125883-6 gnd rswk-swf Biokraftstoff (DE-588)4145658-0 gnd rswk-swf Bioverfahrenstechnik (DE-588)4307166-1 gnd rswk-swf Gemisch (DE-588)4132151-0 gnd rswk-swf Pflanzlicher Rohstoff (DE-588)4174078-6 gnd rswk-swf Kraftstoffherstellung (DE-588)4165454-7 gnd rswk-swf Gemischaufbereitung (DE-588)4489196-9 gnd rswk-swf Bioenergieerzeugung (DE-588)4145597-6 gnd rswk-swf Biokraftstoff (DE-588)4145658-0 s Bioenergieerzeugung (DE-588)4145597-6 s DE-604 Bioverfahrenstechnik (DE-588)4307166-1 s Alternativkraftstoff (DE-588)4125883-6 s Kraftstoffherstellung (DE-588)4165454-7 s 1\p DE-604 Nachwachsender Rohstoff (DE-588)4171069-1 s Pflanzlicher Rohstoff (DE-588)4174078-6 s 2\p DE-604 Gemisch (DE-588)4132151-0 s Gemischaufbereitung (DE-588)4489196-9 s 3\p DE-604 Chemische Synthese (DE-588)4133806-6 s 4\p DE-604 Luque, Rafael Sonstige oth Erscheint auch als Online-Ausgabe 978-0-85709-049-2 Woodhead publishing series in energy 15 (DE-604)BV036553081 15 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020613359&sequence=000002&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 4\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Handbook of biofuels production processes and technologies Woodhead publishing series in energy Chemische Synthese (DE-588)4133806-6 gnd Nachwachsender Rohstoff (DE-588)4171069-1 gnd Alternativkraftstoff (DE-588)4125883-6 gnd Biokraftstoff (DE-588)4145658-0 gnd Bioverfahrenstechnik (DE-588)4307166-1 gnd Gemisch (DE-588)4132151-0 gnd Pflanzlicher Rohstoff (DE-588)4174078-6 gnd Kraftstoffherstellung (DE-588)4165454-7 gnd Gemischaufbereitung (DE-588)4489196-9 gnd Bioenergieerzeugung (DE-588)4145597-6 gnd |
subject_GND | (DE-588)4133806-6 (DE-588)4171069-1 (DE-588)4125883-6 (DE-588)4145658-0 (DE-588)4307166-1 (DE-588)4132151-0 (DE-588)4174078-6 (DE-588)4165454-7 (DE-588)4489196-9 (DE-588)4145597-6 |
title | Handbook of biofuels production processes and technologies |
title_auth | Handbook of biofuels production processes and technologies |
title_exact_search | Handbook of biofuels production processes and technologies |
title_full | Handbook of biofuels production processes and technologies Ed. by Rafael Luque ... |
title_fullStr | Handbook of biofuels production processes and technologies Ed. by Rafael Luque ... |
title_full_unstemmed | Handbook of biofuels production processes and technologies Ed. by Rafael Luque ... |
title_short | Handbook of biofuels production |
title_sort | handbook of biofuels production processes and technologies |
title_sub | processes and technologies |
topic | Chemische Synthese (DE-588)4133806-6 gnd Nachwachsender Rohstoff (DE-588)4171069-1 gnd Alternativkraftstoff (DE-588)4125883-6 gnd Biokraftstoff (DE-588)4145658-0 gnd Bioverfahrenstechnik (DE-588)4307166-1 gnd Gemisch (DE-588)4132151-0 gnd Pflanzlicher Rohstoff (DE-588)4174078-6 gnd Kraftstoffherstellung (DE-588)4165454-7 gnd Gemischaufbereitung (DE-588)4489196-9 gnd Bioenergieerzeugung (DE-588)4145597-6 gnd |
topic_facet | Chemische Synthese Nachwachsender Rohstoff Alternativkraftstoff Biokraftstoff Bioverfahrenstechnik Gemisch Pflanzlicher Rohstoff Kraftstoffherstellung Gemischaufbereitung Bioenergieerzeugung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020613359&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV036553081 |
work_keys_str_mv | AT luquerafael handbookofbiofuelsproductionprocessesandtechnologies |