Advances in biorefineries: biomass and waste supply chain exploitation
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Elsevier, Woodhead
2014
|
Schriftenreihe: | Woodhead Publishing series in energy
53 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | XXXIV, 902 S. Ill., graph. Darst. |
ISBN: | 9780857095213 |
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Datensatz im Suchindex
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adam_text | Contents
Contributor
contact
details
xv
Woodhead
Publishing Series in Energy
xxiii
Foreword
xxix
Preface
xxxiii
Part I Development and optimisation
of biorefining processes
1
1
Green chemistry, biorefineries and second
generation strategies for re-use of waste:
an overview
3
L. A. Pfaltzcjraff and J. H. Clark,
University of York, UK
1.1
Introduction
3
1.2
Introduction to biorefineries
14
1.3
New renewable feedstocks
17
1.4
Conclusion and future trends
28
1.5
Sources of further information and advice
28
1.6
References
29
2
Techno-economic assessment (TEA) of advanced
biochemical and thermochemical biorefineries
34
T. R. Brown, Iowa State University, USA,
M. M. Wright and
Y. Román-Leshkov,
Massachusetts Institute of Technology, USA and
R. C. Brown, Iowa State University, USA
2.1
Introduction
34
2.2
Biorefinery economic assessment
36
2.3
Trade of biomass and subsidies
47
2.4
Market establishment: national/regional facilities
53
2.5
Conclusion and future trends
59
2.6
References
63
vi
Contents
3
Environmental and sustainability
assessment of biorefineries
67
L. Schebek and O. Mr
ani,
Technische Universität
Darmstadt,
Germany
3.1
Introduction
67
3.2
Methodological foundations of environmental
and sustainability assessment of technologies
68
3.3
Life cycle assessment (LCA) for biorefineries
74
3.4
Sustainability issues: synopsis of results from
assessment of economic and social aspects
81
3.5
Conclusion and future trends
83
3.6
References
84
4
Biorefinery plant design, engineering
and process optimisation
89
J. B. Holm-Nielsen and E. A. Ehimen,
Aalborg University, Denmark
4.1
Introduction
89
4.2
Microalgae biomass for biorefinery systems
91
4.3
Planning, design and development of biorefinery systems
92
4.4
Case study: a second generation lignocellulosic biorefinery
(Inbicon® Biorefinery)
101
4.5
Upgrading biorefinery operations
104
4.6
Optimising biorefinery processes using process analysis
106
4.7
Conclusion and future trends
107
4.8
References
108
5
Current and emerging separations
technologies in biorefining
112
S. Datta, Y. J. Lin and S. W. Snyder,
Argonne National Laboratory, USA
5.1
Introduction
112
5.2
Separations technologies
114
5.3
Removal of impurities from lignocellulosic biomass
hydrolysate liquor for production of cellulosic sugars
121
5.4
Glycerin desalting as a value added co-product from
biodiesel
production
126
5.5
Succinic acid production
128
5.6
Solvent extraction: the example of recovery of value
added proteins from distiller s grains and solubles (DGS)
130
Contents
vii
5.7
Biofuels
recovery
by solvent extraction in an ionic
liquid assisted membrane contactor
134
5.8
Emerging trends in separations technology
for advanced biofuels
141
5.9
Performance indices
144
5.10
Conclusion
147
5.11
Acknowledgements
148
5.12
References
148
6
Catalytic processes and catalyst development
in biorefining
152
S. Morales-Delarosa and
J. M. Campos-Martin,
Instituto
de Catálisis y Petroleoquímica,
CSIC,
Spain
6.1
Introduction
152
6.2
Catalysts for depolymerization of biomass
153
6.3
Catalysts for biomass products upgrading
160
6.4
Conclusion and future trends
. 184
6.5
References
186
7
Enzymatic processes and enzyme
development in biorefining
199
S. A. Teter, K.
Brandon Sutton and
B.
Emme,
Novozymes, USA
7.1
Introduction
199
7.2
Biochemical conversion
200
7.3
Development of enzyme technology and techniques
211
7.4
Optimizing enzymes
212
7.5
Benchmarking enzymes and enzymatic
conversion processes
220
7.6
Advantages and limitations of techniques
225
7.7
Conclusion and future trends
225
7.8
Sources of further information and advice
226
7.9
References
226
8
Biomass
pretreatment
for consolidated
bioprocessing
(СВР)
234
V. Agbor,
С.
Carere,
N.
Cicek,
R.
Sparling
and
D.
Levin, University of Manitoba, Canada
8.1
Introduction
234
8.2
Process configurations for biofuel production
235
viii
Contents
8.3
Models
for
Consolidated bioprocessing
(СВР)
243
8.4
Microorganisms, enzyme systems, and
bioenergetics of
СВР
245
8.5
Organism development
249
8.6
Conclusion
253
8.7
References
254
9.1
Introduction
9.2
Ethanol
biorefineries
9.3
The lignocellulose to
ethanol
process
9.4
Design options for biorefining processes
9.5
Process intensification: increasing the
dry-matter content
9.6
Different types of
ethanol
biorefineries
9.7
Future trends
9.8
Conclusion
9.9
Sources of further information and advice
9.10
References
Developments in bioethanol fuel-focused
biorefineries
259
S. Mutturi, B. Palmqvist and
G. Liden, Lund
University, Sweden
259
261
263
279
280
282
288
294
294
295
10
Developments in cereal-based biorefineries
303
A. A. Koutinas, Agricultural University
of Athens, Greece, C.
Du,
University
of Nottingham, UK,
C. S. K. Lin,
City University of Hong Kong, Hong Kong and
С
Webb, University of Manchester, UK
10.1
Introduction
303
10.2
Wheat-based biorefineries
304
10.3
Fuel
ethanol
production from wheat
308
10.4
Succinic acid production from wheat
312
10.5
Polyhydroxyalkanoate (PHA) production
from wheat
316
10.6
Utilization of wheat straw
320
10.7
Conclusion and future trends
322
10.8
Sources of further information and advice
326
10.9
Acknowledgements
328
10.10
References
328
Contents ix
11 Developments in grassVforage-based biorefineries 335
X
McEniry and P. O KiELY.Teagasc
(Irish Agriculture and Food Development
Authority), Ireland
11.1
Introduction
335
11.2
Overview of
grassVforage-based
biorefineries
336
11.3
Field to biorerinery
-
impact of herbage
chemical composition
340
11.4
Green biorerinery products
347
11.5
Acknowledgements
355
11.6
References
355
12
Developments in glycerol byproduct-based
biorefineries
364
B. P. Pinto and C. J.
De Araújo
Mota,
Universidade Federal do Rio de Janeiro,
Brazil
12.1
Introduction
364
12.2
Composition and purification of glycerol produced
from
biodiesel
365
12.3
Applications of glycerol in the fuel sector
367
12.4
Glycerol as raw material for the chemical industry
372
12.5
Conclusions and future trends
379
12.6
Sources of further information
381
12.7
References
382
Part
II Biofuels
and other added value products
from biorefineries
387
13
Improving the use of liquid biofuels in internal
combustion engines
389
R. J. Pearson and J. W. G. Turner,
University of Bath, UK
13.1
Introduction
389
13.2
Competing fuels and energy carriers
390
13.3
Market penetration of liquid biofuels
394
13.4
Use of liquid biofuels in internal combustion engines
405
13.5
Vehicle and blending technologies for alcohol fuels
and gasoline
417
13.6
Future provision of renewable liquid fuels
423
13.7
Conclusion
429
χ
Contents
13.8
Acknowledgements
429
13.9
References and further reading
430
13.10
Appendix: List of abbreviations
439
14
Biodiesel
and renewable
diesel
production methods
441
J. H. Van Gerpen and
Β. Β.
He,
University of Idaho, USA
14.1
Introduction
441
14.2
Overview of
biodiesel
and renewable
diesel
442
14.3
Renewable
diesel
production routes
442
14.4
Biodiesel
production routes
444
14.5
Traditional and emerging feedstocks
454
14.6
Feedstock quality issues
458
14.7
Advantages and limitations of
biodiesel
461
14.8
Conclusion and future trends
465
14.9
Sources of further information and advice
465
14.10
References
466
15
Biomethane
and biohydrogen production via
anaerobic digestion/fermentation
476
K. Stamatelatou, Democritus University of
Thrace, Greece, G. Antonopoulou, Institute
of Chemical Engineering Sciences, Greece and
P.
Michailides,
Democritus University of
Thrace, Greece
15.1
Introduction
476
15.2
Basic principles of
biogas
and hydrogen production
477
15.3
Biogas
and biohydrogen production:
technological aspects
481
15.4
Production of
biogas
(methane) and biohydrogen
from different feedstocks
492
15.5
Current status and limitations
507
15.6
Future trends
513
15.7
Sources of further information and advice
513
15.8
References
514
16
The production and application of biochar in soils
525
S. Joseph, University of New South Wales, Australia
and P. Taylor, Biochar Solutions, Australia
16.1
Introduction
525
16.2
Effects of application of biochar to soil
527
Contents xi
16.3
Agricultural uses of
biochar
529
16.4
Production of
biochar
531
16.5
Large-scale commercial production of biochar
538
16.6
Testing biochar properties
541
16.7
Markets and uses for biochar
544
16.8
Conclusion and future trends
548
16.9
References
550
16.10
Appendix:
IBI;
Standardized product definition
and product testing guidelines for biochar used in soil
554
17
Development, properties and applications of
high-performance biolubricants
556
D. R. Kodali, University of Minnesota, USA
17.1
Introduction
556
17.2
Markets for lubricants
561
17.3
Biolubricant performance requirements
566
17.4
Applications of biolubricants
571
17.5
Feedstocks for biolubricants: key properties
574
17.6
Chemical modifications of biolubricant feedstocks
581
17.7
Future trends
590
17.8
Conclusion
591
17.9
Acknowledgements
592
17.10
References
592
18
Bio-based nutraceuticals from biorefining
596
Y. Liang and Z. Wen, Iowa State University, USA
18.1
Introduction
596
18.2
Lipid-based nutraceuticals
599
18.3
Protein and peptide-based nutraceuticals
604
18.4
Carbohydrate-based nutraceuticals
606
18.5
Other nutraceuticals
609
18.6
Conclusion and future trends
614
18.7
References
615
19
Bio-based chemicals from biorefining:
carbohydrate conversion and utilisation
624
K. Wilson, European Bioenergy Research Institute,
Aston University, UK and A. F. Lee, University of
Warwick, UK and Monash University, Australia
19.1
Introduction
624
19.2
Sustainable carbohydrate sources
625
xii Contents
19.3 Chemical
hydrolysis of cellulose to sugars
629
19.4
Types and properties of carbohydrate-based
chemicals
635
19.5
Routes to market for bio-based feedstocks
646
19.6
Conclusion and future trends
650
19.7
Sources of further information and advice
651
19.8
References
651
20
Bio-based chemicals from biorefining:
lignin
conversion and utilisation
659
A. L. Macfarlane, M. Mai and J. F. Kadla,
University of British Columbia, Canada
20.1
Introduction
659
20.2
Structure and properties of
lignin
660
20.3
Traditional processes for the production of
lignin
663
20.4
Emerging processes for the production of
lignin
668
20.5
Applications of
lignin
and lignin-based products:
an overview
672
20.6
Future trends
684
20.7
Sources of further information and advice
685
20.8
References
685
21
Bio-based chemicals from biorefining:
lipid
and wax conversion and utilization
693
Y. Yang and
В. Ни,
University of Minnesota, USA
21.1
Introduction
693
21.2
Types and properties of lipids and waxes
694
21.3
Sources of lipids and waxes
697
21.4
Methods to extract and analyze lipids and waxes
703
21.5
Utilization of lipids and waxes
707
21.6
Conclusion and future trends
714
21.7
References
715
22
Bio-based chemicals from biorefining:
protein conversion and utilisation
721
E. L. Scott, M. E. Bruins and J. P. M. Sanders,
Wageningen
University, The Netherlands
22.1
Introduction
721
22.2
Protein and
amino
acid sources derived from
biofuel production
722
22.3
Protein isolation, hydrolysis and isolation of
amino
acid chemical feedstocks
724
Contents xiii
22.4 (Bio)chemical
conversion
of
amino
acids to
platform and speciality chemicals
728
22.5
Alternative and novel feedstocks and
production routes
730
22.6
Conclusion and future trends
731
22.7
References
732
23
Types, processing and properties
of bioadhesives for wood and fibers
736
A. Pizzi,
University of Lorraine, France and King Abdulaziz
University, Saudi Arabia
23.1
Introduction
736
23.2
Tannin adhesives
737
23.3
Lignin
adhesives
745
23.4
Mixed tannin-lignin adhesives
749
23.5
Protein adhesives
750
23.6
Carbohydrate adhesives
751
23.7
Unsaturated oil adhesives
752
23.8
Wood welding without adhesives
755
23.9
Conclusion and future trends
762
23.10
References
765
24
Types, properties and processing of
bio-based animal feed
771
E. J. Burton and D. V. Scholey,
Nottingham Trent University, UK and
P. E. V.
Williams, AB
Vista, UK
24.1
Introduction
771
24.2
Background
772
24.3
Types and properties of bio-based feed ingredients
775
24.4
Impact of processing technology on co-product quality
784
24.5
Improving feedstocks processes and yields
786
24.6
Regulatory issues
789
24.7
Future trends
791
24.8
Sources of further information and advice
794
24.9
References
794
25
The use of biomass to produce bio-based
composites and building materials
803
R. M. Rowell, University of Wisconsin, USA
25.1
Introduction
803
25.2
Fibrous plants
804
xiv Contents
25.3 Fiber
types and isolation
804
25.4
Fiber properties
807
25.5
Types and properties of bio-based composites
808
25.6
Improving performance properties
815
25.7
Conclusion and future trends
817
25.8
Sources of further information and advice
817
25.9
References
818
26
The use of biomass for packaging films
and coatings
819
H. M. C
De Azeredo,
Institute of Food Research,
UK, M. F. Rosa and M.
de Sá
M.
Souza
Filho, Embrapa Tropical
Agroindustry, Brazil and
K. W.
Waldron, Institute of
Food Research,
UK
26.1
Introduction
819
26.2
Components of packaging films and coatings
from the biomass
822
26.3
Processes for producing bio-based films
822
26.4
Processes for producing edible coatings
825
26.5
Products from biomass as film and/or coating matrices
826
26.6
Products from biomass as film plasticizers
842
26.7
Products from biomass as crosslinking agents
for packaging materials
844
26.8
Products from biomass as reinforcements
for packaging materials
849
26.9
Future trends
853
26.10
Conclusion
855
26.11
Acknowledgements
856
26.12
References
856
Index
875
...
WOODHEAD
PUBI.
I SMI
N G
SE
RIES
IN
E
NE
RGY
______
____
Biorefinertes
are an essential technology in converting biomass into biofuels or
other useful materials. Advances in Biorefmeries provides a comprehensive overview
of biorefining processing techniques and technologies and the biofuels and other
materials produced.
Part I focuses on methods of optimising the biorefining process and assessing
its environmental and economic impact. It also looks at current and developing
technologies for producing value-added materials. Part II goes on to explore these
materials with a focus on biofuels and other value added products. It considers the
properties, limitations and practical applications of these products and how they
can be used to meet the increasing demand for renewable and sustainable fuels as an
alternative to fossil fuels.
Advances in Biorefineries will be a standard reference work for biorefinery/process
engineers, industrial biochemists/chemists, biomass/waste scientists and researchers
and academics in the field.
Keith Waldron is Research Leader and Director of the NRP Biorefinery Centre at the
Institute of Food Research, UK.
ISBN
978-0-85709-521-3
9 780857 095213
|
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format | Book |
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genre | (DE-588)4143413-4 Aufsatzsammlung gnd-content |
genre_facet | Aufsatzsammlung |
id | DE-604.BV041736407 |
illustrated | Illustrated |
indexdate | 2024-07-10T01:04:06Z |
institution | BVB |
isbn | 9780857095213 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-027183097 |
oclc_num | 879111113 |
open_access_boolean | |
owner | DE-29T DE-703 |
owner_facet | DE-29T DE-703 |
physical | XXXIV, 902 S. Ill., graph. Darst. |
publishDate | 2014 |
publishDateSearch | 2014 |
publishDateSort | 2014 |
publisher | Elsevier, Woodhead |
record_format | marc |
series | Woodhead Publishing series in energy |
series2 | Woodhead Publishing series in energy |
spelling | Advances in biorefineries biomass and waste supply chain exploitation ed. by Keith Waldron Amsterdam [u.a.] Elsevier, Woodhead 2014 XXXIV, 902 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Woodhead Publishing series in energy 53 Organischer Abfall (DE-588)4172777-0 gnd rswk-swf Enzymreaktor (DE-588)4740797-9 gnd rswk-swf Biokonversion (DE-588)4145610-5 gnd rswk-swf Biodiesel (DE-588)4661178-2 gnd rswk-swf Biomasse (DE-588)4006877-8 gnd rswk-swf Bioalkohol (DE-588)4206022-9 gnd rswk-swf Katalyse (DE-588)4029921-1 gnd rswk-swf Bioraffinerie (DE-588)7742513-3 gnd rswk-swf Bioreaktor (DE-588)4006780-4 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Bioraffinerie (DE-588)7742513-3 s Bioalkohol (DE-588)4206022-9 s Biodiesel (DE-588)4661178-2 s DE-604 Bioreaktor (DE-588)4006780-4 s Biomasse (DE-588)4006877-8 s Katalyse (DE-588)4029921-1 s Enzymreaktor (DE-588)4740797-9 s Organischer Abfall (DE-588)4172777-0 s Biokonversion (DE-588)4145610-5 s Waldron, Keith Sonstige (DE-588)1050414527 oth Erscheint auch als Online-Ausgabe 978-0-85709-738-5 Woodhead Publishing series in energy 53 (DE-604)BV036553081 53 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027183097&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027183097&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext |
spellingShingle | Advances in biorefineries biomass and waste supply chain exploitation Woodhead Publishing series in energy Organischer Abfall (DE-588)4172777-0 gnd Enzymreaktor (DE-588)4740797-9 gnd Biokonversion (DE-588)4145610-5 gnd Biodiesel (DE-588)4661178-2 gnd Biomasse (DE-588)4006877-8 gnd Bioalkohol (DE-588)4206022-9 gnd Katalyse (DE-588)4029921-1 gnd Bioraffinerie (DE-588)7742513-3 gnd Bioreaktor (DE-588)4006780-4 gnd |
subject_GND | (DE-588)4172777-0 (DE-588)4740797-9 (DE-588)4145610-5 (DE-588)4661178-2 (DE-588)4006877-8 (DE-588)4206022-9 (DE-588)4029921-1 (DE-588)7742513-3 (DE-588)4006780-4 (DE-588)4143413-4 |
title | Advances in biorefineries biomass and waste supply chain exploitation |
title_auth | Advances in biorefineries biomass and waste supply chain exploitation |
title_exact_search | Advances in biorefineries biomass and waste supply chain exploitation |
title_full | Advances in biorefineries biomass and waste supply chain exploitation ed. by Keith Waldron |
title_fullStr | Advances in biorefineries biomass and waste supply chain exploitation ed. by Keith Waldron |
title_full_unstemmed | Advances in biorefineries biomass and waste supply chain exploitation ed. by Keith Waldron |
title_short | Advances in biorefineries |
title_sort | advances in biorefineries biomass and waste supply chain exploitation |
title_sub | biomass and waste supply chain exploitation |
topic | Organischer Abfall (DE-588)4172777-0 gnd Enzymreaktor (DE-588)4740797-9 gnd Biokonversion (DE-588)4145610-5 gnd Biodiesel (DE-588)4661178-2 gnd Biomasse (DE-588)4006877-8 gnd Bioalkohol (DE-588)4206022-9 gnd Katalyse (DE-588)4029921-1 gnd Bioraffinerie (DE-588)7742513-3 gnd Bioreaktor (DE-588)4006780-4 gnd |
topic_facet | Organischer Abfall Enzymreaktor Biokonversion Biodiesel Biomasse Bioalkohol Katalyse Bioraffinerie Bioreaktor Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027183097&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027183097&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV036553081 |
work_keys_str_mv | AT waldronkeith advancesinbiorefineriesbiomassandwastesupplychainexploitation |