Sustainable uses of byproducts from silk processing:
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim, Germany
Wiley-VCH
[2021]
|
Schlagworte: | |
Online-Zugang: | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34786-5/ Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | xi, 241 Seiten Illustrationen, Diagramme 25 cm, 670 g |
ISBN: | 9783527347865 3527347860 |
Internformat
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015 | |a 20,N43 |2 dnb | ||
015 | |a 21,A41 |2 dnb | ||
016 | 7 | |a 1219754064 |2 DE-101 | |
020 | |a 9783527347865 |c Festeinband : circa EUR 139.00 (DE) (freier Preis) |9 978-3-527-34786-5 | ||
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100 | 1 | |a Reddy, Narendra |e Verfasser |0 (DE-588)1100570675 |4 aut | |
245 | 1 | 0 | |a Sustainable uses of byproducts from silk processing |c Narendra Reddy and Pornanong Aramwit |
264 | 1 | |a Weinheim, Germany |b Wiley-VCH |c [2021] | |
300 | |a xi, 241 Seiten |b Illustrationen, Diagramme |c 25 cm, 670 g | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 0 | 7 | |a Nachhaltigkeit |0 (DE-588)4326464-5 |2 gnd |9 rswk-swf |
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650 | 0 | 7 | |a Seidenproduktion |0 (DE-588)4396133-2 |2 gnd |9 rswk-swf |
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653 | |a Biotechnologie | ||
653 | |a Biotechnologie i. d. Biowissenschaften | ||
653 | |a Biotechnology | ||
653 | |a Biowissenschaften | ||
653 | |a Chemie | ||
653 | |a Chemistry | ||
653 | |a Industrial Chemistry | ||
653 | |a Life Sciences | ||
653 | |a Nachhaltige u. Grüne Chemie | ||
653 | |a Seide | ||
653 | |a Seidenindustrie | ||
653 | |a Sustainable Chemistry & Green Chemistry | ||
653 | |a Technische u. Industrielle Chemie | ||
653 | |a CH30: Technische u. Industrielle Chemie | ||
653 | |a CHC0: Nachhaltige u. Grüne Chemie | ||
653 | |a LS35: Biotechnologie i. d. Biowissenschaften | ||
689 | 0 | 0 | |a Seidenproduktion |0 (DE-588)4396133-2 |D s |
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776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe |z 978-3-527-82876-0 |
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883 | 2 | |8 2\p |a dnb |d 20211004 |q DE-101 |u https://d-nb.info/provenance/plan#dnb |
Datensatz im Suchindex
_version_ | 1804182878949474304 |
---|---|
adam_text | CONTENTS
PREFACE
XI
1
SERKIN:
STRUCTURE
AND
PROPERTIES
1
1.1
TYPE
OF
SILK
SERICIN
1
1.2
LOCALIZATION
OF
SILK
SERICIN
1
1.3
MOLECULAR
MASS
OF
SERICIN
2
1.3.1
MIDDLE
SILK
GLAND
SERICIN
2
1.3.2
MULBERRY
COCOON
SERICIN
2
1.3.3
NON-MULBERRY
COCOON
AND
PEDUNCLE
SERICIN
5
1.4
LAYERS
OF
SERICIN
6
1.5
SERICIN
AMINO
ACID
COMPONENTS
6
1.5.1
SILK
GLAND
OF
MULBERRY
SERICIN
6
1.5.2
SERICIN
FROM
MULBERRY
COCOONS
8
1.5.3
SERICIN
FROM
NON-MULBERRY
COCOONS
12
1.6
SERICIN
GENE
14
1.7
SERICIN
STRUCTURE
16
1.8
SERICIN
PROPERTIES
19
1.8.1
BIOPHYSICAL
PROPERTIES
19
1.8.1.1
WATER
SOLUBILITY
19
1.8.1.2
GELATION
20
1.8.1.3
THERMAL
STABILITY
20
1.8.1.4
ULTRAVIOLET
(UV)
PROTECTION
21
1.8.1.5
ADHESION
PROPERTIES
AND
ELECTROSTATIC
INTERACTION
22
1.8.2
BIOCHEMICAL
ACTIVITY
22
1.8.2.1
ANTI-TYROSINASE
ACTIVITY
22
1.8.2.2
ANTI-ELASTASE
ACTIVITY
23
1.8.2.3
ANTIOXIDANT
ACTIVITY
23
1.8.2.4
ANTI-LIPID
PEROXIDATION
ACTIVITY
25
1.8.3
BIOLOGICAL
ACTIVITY
25
1.8.3.1
ANTI-INFLAMMATORY
ACTIVITY
25
1.8.3.2
ANTI-TUMOR
ACTIVITY
27
1.8.3.3
INDUCING
COLLAGEN
PRODUCTION
28
VI
CONTENTS
1.8.3.4
ANTIBACTERIAL
ACTIVITY
29
REFERENCES
32
2
PROCESSING
SERICIN
39
2.1
EFFECTS
OF
SOURCE
AND
EXTRACTION
METHOD
OF
SERICIN
ON
ITS
BENEFITS
AND
APPLICATIONS
39
2.1.1
SERICIN
EXTRACTION
39
2.1.1.1
WATER
EXTRACTION
(WATERSS;
HEATSS,
AUTOCLAVESS)
39
2.1.1.2
ACID
EXTRACTION
(ACIDSS)
39
2.1.1.3
ALKALI
EXTRACTION
(ALLKALISS;
ALKALI-L-SS,
ALKALI-H-SS)
40
2.1.1.4
UREA
EXTRACTION
(UREASS)
40
2.1.1.5
ALCOHOL
EXTRACTION
(ALCOHOLSS)
40
2.1.2
EFFECT
OF
SOURCE
AND
EXTRACTION
ON
SERICIN
PROPERTIES
40
2.1.2.1
MOLECULAR
WEIGHT
OF
SERICIN
40
2.1.2.2
SECONDARY
STRUCTURE OF
THE
SERICIN
PROTEIN
40
2.1.2.3
PHENOLIC
CONTENTS
43
2.1.2.4
ANTIOXIDANT
ACTIVITY
43
2.1.2.5
ANTI-TYROSINASE
ACTIVITY
44
2.1.2.6
CYTOTOXICITY
44
2.1.2.7
CELL
ATTACHMENT,
CELL
PROLIFERATION,
AND
COLLAGEN
PRODUCTION
44
2.1.2.8
CELL
PROTECTION
44
2.1.3
BENEFIT
AND
APPLICATION
OF
EXTRACTED
MULBERRY
SERICIN
AND
NON-MULBERRY
SERICIN
45
2.1.3.1
PHARMACEUTICS
AND
COSMETICS
45
2.1.3.2
WOUND
HEALING
45
2.1.3.3
TISSUE
ENGINEERING
47
2.1.3.4
DRUG
DELIVERY
47
2.2
MODIFICATION
OF
SERICIN
STRUCTURE
48
2.3
CHEMICAL
MODIFICATION
48
2.4
GLUTARALDEHYDE
CROSS-LINKING
50
2.5
DEHYDROTHERMAL
(DHT)
CROSS-LINKING
51
2.6
CARBODIIMIDE
CROSS-LINKING
51
2.7
DIMETHYLOLUREA
(DMU)
CROSS-LINKING
53
2.8
ENZYMATIC
CROSS-LINKING
53
2.9
PHYSICAL
MODIFICATION
54
2.9.1
PHOTO-CROSS-LINKING
54
2.10
FORMS
OF
SERICIN
PROCESSING
55
2.10.1
TWO-DIMENSIONAL
STRUCTURE
OF
SERICIN
55
2.10.1.1
HYDROGEL
55
2.10.1.2
FILM
56
2.10.2
THREE-DIMENSIONAL
STRUCTURE
OF
SERICIN
56
2.10.2.1
ELECTROSPINNING
SILK
SERICIN
AND
ITS
BLENDS
56
2.10.3
PURE
SERICIN
ELECTROSPUN
FIBERS
57
2.10.4
SERICIN
BLENDS
WITH
NATURAL
POLYMERS
59
2.10.5
SERICIN
BLENDS
WITH
SYNTHETIC
POLYMERS
60
CONTENTS
VII
2.10.6
BLENDS
WITH
POLY(CAPROLACTONE)
65
2.11
SERICIN
FROM
WILD
SILKS
66
2.12
FIBROIN-SERICIN
BLENDS
69
2.12.1
FREEZE-DRYING
71
2.12.2
SALT
LEACHING
71
2.12.3
GAS
FOAMING
73
2.13
BIOMATERIALS
FROM
SERICIN
AND
SERICIN-PROTEIN
BLENDS
74
2.13.1
PURE
SERICIN
BIOMATERIALS
74
2.13.1.1
SERICIN-FIBROIN
BLENDS
77
2.13.1.2
SERICIN
AND
NON-SERICIN
PROTEIN
BLENDS
78
2.13.2
SERICIN
BLEND
WITH
POLYSACCHARIDES
81
2.13.2.1
SERICIN-ALGINATE
BLENDS
81
2.13.2.2
SERICIN-CHITOSAN
BLENDS
83
2.13.2.3
SERICIN-CARBOXYMETHYL
CELLULOSE
BLENDS
83
2.13.2.4
BINARY
AND
TERNARY
SERICIN
BLENDS
WITH
MISCELLANEOUS
POLYSACCHARIDES
85
2.14
BLENDS
WITH
SYNTHETIC
POLYMERS
89
2.15
SERICIN-LIGNIN
BLENDS
90
REFERENCES
91
3
APPLICATIONS
OF
SERICIN
101
3.1
MEDICAL
APPLICATION
101
3.1.1
ANTIOXIDANT
PROPERTIES
101
3.1.2
ANTIBACTERIAL
ACTIVITY
102
3.1.3
WOUND
HEALING
104
3.1.4
ANTITUMOR
EFFECT
105
3.1.5
ANTIDIABETIC
POTENTIAL
106
3.1.6
METABOLIC
EFFECTS
107
3.1.6.1
GASTROINTESTINAL
TRACT
107
3.1.6.2
CIRCULATORY
AND
IMMUNE
SYSTEMS
108
3.1.6.3
LIPID
METABOLISM
AND
OBESITY
109
3.1.7
VEHICLE
FOR
DRUG
DELIVERY
109
3.1.8
SUPPLEMENT
IN
CULTURE
MEDIA
AND
CRYOPRESERVATION
112
3.2
COSMETIC
APPLICATIONS
113
3.3
BIOTECHNOLOGY
APPLICATIONS
117
3.3.1
TISSUE
ENGINEERING
117
3.3.1.1
SKIN
TISSUE
REPAIR
WITH
SERICIN-BASED
MATERIALS
117
33.1.2
SERICIN-BASED
MATERIALS
FOR
BONE
AND
CARTILAGE
TISSUE
ENGINEERING
119
3.3.1.3
SERICIN-BASED
BIOMATERIALS
FOR
OTHER
TISSUES
120
3.4
MISCELLANEOUS
APPLICATION
121
3.4.1
SERICIN-COATED
MATERIAL
AS
AN
AIR
FILTER
121
3.5
CONCLUSION
121
REFERENCES
123
4
NON-SILK
APPLICATIONS
OF
MULBERRY
PLANTS
131
4.1
INTRODUCTION
131
VIII
CONTENTS
4.2
4.2.1
4.2.2
4.2.3
4.2.4
4.2.5
4.2.6
4.2.7
4.2.8
4.2.9
MEDICINAL
APPLICATIONS
OF
MULBERRY
PLANT
EXTRACTS
132
POLYSACCHARIDES
132
PHENOLS
AND
FLAVANOIDS
135
PECTINS
AND
LIGNINS
140
PRODUCTION
OF
PAPER
142
FERMENTATION
AND
BIOGAS
PRODUCTION
144
SYNTHESIS
OF
NANOMATERIALS
144
ENVIRONMENTAL
REMEDIATION
148
COMPOSITES
150
SUPERABSORBENTS
151
REFERENCES
153
5
5.1
5.1.1
5.1.2
5.1.3
5.2
5.2.1
5.2.2
5.3
5.3.1
5.4
5.4.1
5.4.2
5.4.3
5.5
PUPAE
AND
ITS
APPLICATIONS
157
APPLICATIONS
OF
PUPAE
OIL
157
EXTRACTION
OF
PUPAE
OIL
157
MEDICAL
APPLICATIONS
OF
PUPAE
OIL
159
BIODIESEL
FROM
PUPAE
OIL
163
PROTEINS
FROM
SILKWORM
PUPAE
163
MEDICAL
APPLICATION
OF
PUPAE
PEPTIDES
169
NANOPARTICLES
FROM
PUPAE
PROTEINS
174
PUPAE
AS
ANIMAL
FEED
176
CHITIN
AND
CHITOSAN
FROM
SILKWORM
PUPAE
181
MISCELLANEOUS
APPLICATIONS
184
CARBONIZATION
OF
PUPAE
184
PRODUCTION
OF
LIPIDS
185
ANTI-DIABETIC
DRUG
188
ENVIRONMENTAL
REMEDIATION
189
REFERENCES
189
6
6.1
6.2
6.3
6.4
6.5
6.6
APPLICATIONS
OF
PUPAE
LITTER
(EXCREMENT)
195
CHLOROPHYLLINE
AND
ITS
DERIVATIVES
195
APPLICATIONS
OF
PROTEINS
IN
LITTER
197
EXTRACTS
FROM
LITTER
198
ENVIRONMENTAL
REMEDIATION
USING
LITTER
199
CONVERSION
INTO
CARBON
203
NANOPARTICLES
FROM
LITTER
209
REFERENCES
211
7
CONVERTING
SILK
WASTES
INTO
COMPOSITES,
ENERGY
STORAGE
DEVICES,
AND
OTHER
VALUE-ADDED
MATERIALS
213
7.1
7.2
7.3
7.4
7.5
INTRODUCTION
213
COMPOSITES
FROM
SILK
WASTES
213
REINFORCEMENT
FOR
POLYPROPYLENE
(PP)
COMPOSITES
214
GREEN
COMPOSITES
FROM
SILK
WASTES
219
ENERGY
APPLICATIONS
221
CONTENTS
IX
7.5.1
CARBONIZATION
OF
WASTE
SILK
221
7.6
MISCELLANEOUS
APPLICATIONS
225
7.6.1
EXTRACTION
OF
AMINO
ACIDS
AND
BIOACTIVE
COMPOUNDS
225
7.7
FIBERS
AND
HYDROGELS
226
7.8
ENVIRONMENTAL
REMEDIATION
227
7.9
NUTRITIOUS
FOOD
FROM
SILKWORM
EGGS
229
REFERENCES
229
GLOSSARY
233
INDEX
237
|
adam_txt |
CONTENTS
PREFACE
XI
1
SERKIN:
STRUCTURE
AND
PROPERTIES
1
1.1
TYPE
OF
SILK
SERICIN
1
1.2
LOCALIZATION
OF
SILK
SERICIN
1
1.3
MOLECULAR
MASS
OF
SERICIN
2
1.3.1
MIDDLE
SILK
GLAND
SERICIN
2
1.3.2
MULBERRY
COCOON
SERICIN
2
1.3.3
NON-MULBERRY
COCOON
AND
PEDUNCLE
SERICIN
5
1.4
LAYERS
OF
SERICIN
6
1.5
SERICIN
AMINO
ACID
COMPONENTS
6
1.5.1
SILK
GLAND
OF
MULBERRY
SERICIN
6
1.5.2
SERICIN
FROM
MULBERRY
COCOONS
8
1.5.3
SERICIN
FROM
NON-MULBERRY
COCOONS
12
1.6
SERICIN
GENE
14
1.7
SERICIN
STRUCTURE
16
1.8
SERICIN
PROPERTIES
19
1.8.1
BIOPHYSICAL
PROPERTIES
19
1.8.1.1
WATER
SOLUBILITY
19
1.8.1.2
GELATION
20
1.8.1.3
THERMAL
STABILITY
20
1.8.1.4
ULTRAVIOLET
(UV)
PROTECTION
21
1.8.1.5
ADHESION
PROPERTIES
AND
ELECTROSTATIC
INTERACTION
22
1.8.2
BIOCHEMICAL
ACTIVITY
22
1.8.2.1
ANTI-TYROSINASE
ACTIVITY
22
1.8.2.2
ANTI-ELASTASE
ACTIVITY
23
1.8.2.3
ANTIOXIDANT
ACTIVITY
23
1.8.2.4
ANTI-LIPID
PEROXIDATION
ACTIVITY
25
1.8.3
BIOLOGICAL
ACTIVITY
25
1.8.3.1
ANTI-INFLAMMATORY
ACTIVITY
25
1.8.3.2
ANTI-TUMOR
ACTIVITY
27
1.8.3.3
INDUCING
COLLAGEN
PRODUCTION
28
VI
CONTENTS
1.8.3.4
ANTIBACTERIAL
ACTIVITY
29
REFERENCES
32
2
PROCESSING
SERICIN
39
2.1
EFFECTS
OF
SOURCE
AND
EXTRACTION
METHOD
OF
SERICIN
ON
ITS
BENEFITS
AND
APPLICATIONS
39
2.1.1
SERICIN
EXTRACTION
39
2.1.1.1
WATER
EXTRACTION
(WATERSS;
HEATSS,
AUTOCLAVESS)
39
2.1.1.2
ACID
EXTRACTION
(ACIDSS)
39
2.1.1.3
ALKALI
EXTRACTION
(ALLKALISS;
ALKALI-L-SS,
ALKALI-H-SS)
40
2.1.1.4
UREA
EXTRACTION
(UREASS)
40
2.1.1.5
ALCOHOL
EXTRACTION
(ALCOHOLSS)
40
2.1.2
EFFECT
OF
SOURCE
AND
EXTRACTION
ON
SERICIN
PROPERTIES
40
2.1.2.1
MOLECULAR
WEIGHT
OF
SERICIN
40
2.1.2.2
SECONDARY
STRUCTURE OF
THE
SERICIN
PROTEIN
40
2.1.2.3
PHENOLIC
CONTENTS
43
2.1.2.4
ANTIOXIDANT
ACTIVITY
43
2.1.2.5
ANTI-TYROSINASE
ACTIVITY
44
2.1.2.6
CYTOTOXICITY
44
2.1.2.7
CELL
ATTACHMENT,
CELL
PROLIFERATION,
AND
COLLAGEN
PRODUCTION
44
2.1.2.8
CELL
PROTECTION
44
2.1.3
BENEFIT
AND
APPLICATION
OF
EXTRACTED
MULBERRY
SERICIN
AND
NON-MULBERRY
SERICIN
45
2.1.3.1
PHARMACEUTICS
AND
COSMETICS
45
2.1.3.2
WOUND
HEALING
45
2.1.3.3
TISSUE
ENGINEERING
47
2.1.3.4
DRUG
DELIVERY
47
2.2
MODIFICATION
OF
SERICIN
STRUCTURE
48
2.3
CHEMICAL
MODIFICATION
48
2.4
GLUTARALDEHYDE
CROSS-LINKING
50
2.5
DEHYDROTHERMAL
(DHT)
CROSS-LINKING
51
2.6
CARBODIIMIDE
CROSS-LINKING
51
2.7
DIMETHYLOLUREA
(DMU)
CROSS-LINKING
53
2.8
ENZYMATIC
CROSS-LINKING
53
2.9
PHYSICAL
MODIFICATION
54
2.9.1
PHOTO-CROSS-LINKING
54
2.10
FORMS
OF
SERICIN
PROCESSING
55
2.10.1
TWO-DIMENSIONAL
STRUCTURE
OF
SERICIN
55
2.10.1.1
HYDROGEL
55
2.10.1.2
FILM
56
2.10.2
THREE-DIMENSIONAL
STRUCTURE
OF
SERICIN
56
2.10.2.1
ELECTROSPINNING
SILK
SERICIN
AND
ITS
BLENDS
56
2.10.3
PURE
SERICIN
ELECTROSPUN
FIBERS
57
2.10.4
SERICIN
BLENDS
WITH
NATURAL
POLYMERS
59
2.10.5
SERICIN
BLENDS
WITH
SYNTHETIC
POLYMERS
60
CONTENTS
VII
2.10.6
BLENDS
WITH
POLY(CAPROLACTONE)
65
2.11
SERICIN
FROM
WILD
SILKS
66
2.12
FIBROIN-SERICIN
BLENDS
69
2.12.1
FREEZE-DRYING
71
2.12.2
SALT
LEACHING
71
2.12.3
GAS
FOAMING
73
2.13
BIOMATERIALS
FROM
SERICIN
AND
SERICIN-PROTEIN
BLENDS
74
2.13.1
PURE
SERICIN
BIOMATERIALS
74
2.13.1.1
SERICIN-FIBROIN
BLENDS
77
2.13.1.2
SERICIN
AND
NON-SERICIN
PROTEIN
BLENDS
78
2.13.2
SERICIN
BLEND
WITH
POLYSACCHARIDES
81
2.13.2.1
SERICIN-ALGINATE
BLENDS
81
2.13.2.2
SERICIN-CHITOSAN
BLENDS
83
2.13.2.3
SERICIN-CARBOXYMETHYL
CELLULOSE
BLENDS
83
2.13.2.4
BINARY
AND
TERNARY
SERICIN
BLENDS
WITH
MISCELLANEOUS
POLYSACCHARIDES
85
2.14
BLENDS
WITH
SYNTHETIC
POLYMERS
89
2.15
SERICIN-LIGNIN
BLENDS
90
REFERENCES
91
3
APPLICATIONS
OF
SERICIN
101
3.1
MEDICAL
APPLICATION
101
3.1.1
ANTIOXIDANT
PROPERTIES
101
3.1.2
ANTIBACTERIAL
ACTIVITY
102
3.1.3
WOUND
HEALING
104
3.1.4
ANTITUMOR
EFFECT
105
3.1.5
ANTIDIABETIC
POTENTIAL
106
3.1.6
METABOLIC
EFFECTS
107
3.1.6.1
GASTROINTESTINAL
TRACT
107
3.1.6.2
CIRCULATORY
AND
IMMUNE
SYSTEMS
108
3.1.6.3
LIPID
METABOLISM
AND
OBESITY
109
3.1.7
VEHICLE
FOR
DRUG
DELIVERY
109
3.1.8
SUPPLEMENT
IN
CULTURE
MEDIA
AND
CRYOPRESERVATION
112
3.2
COSMETIC
APPLICATIONS
113
3.3
BIOTECHNOLOGY
APPLICATIONS
117
3.3.1
TISSUE
ENGINEERING
117
3.3.1.1
SKIN
TISSUE
REPAIR
WITH
SERICIN-BASED
MATERIALS
117
33.1.2
SERICIN-BASED
MATERIALS
FOR
BONE
AND
CARTILAGE
TISSUE
ENGINEERING
119
3.3.1.3
SERICIN-BASED
BIOMATERIALS
FOR
OTHER
TISSUES
120
3.4
MISCELLANEOUS
APPLICATION
121
3.4.1
SERICIN-COATED
MATERIAL
AS
AN
AIR
FILTER
121
3.5
CONCLUSION
121
REFERENCES
123
4
NON-SILK
APPLICATIONS
OF
MULBERRY
PLANTS
131
4.1
INTRODUCTION
131
VIII
CONTENTS
4.2
4.2.1
4.2.2
4.2.3
4.2.4
4.2.5
4.2.6
4.2.7
4.2.8
4.2.9
MEDICINAL
APPLICATIONS
OF
MULBERRY
PLANT
EXTRACTS
132
POLYSACCHARIDES
132
PHENOLS
AND
FLAVANOIDS
135
PECTINS
AND
LIGNINS
140
PRODUCTION
OF
PAPER
142
FERMENTATION
AND
BIOGAS
PRODUCTION
144
SYNTHESIS
OF
NANOMATERIALS
144
ENVIRONMENTAL
REMEDIATION
148
COMPOSITES
150
SUPERABSORBENTS
151
REFERENCES
153
5
5.1
5.1.1
5.1.2
5.1.3
5.2
5.2.1
5.2.2
5.3
5.3.1
5.4
5.4.1
5.4.2
5.4.3
5.5
PUPAE
AND
ITS
APPLICATIONS
157
APPLICATIONS
OF
PUPAE
OIL
157
EXTRACTION
OF
PUPAE
OIL
157
MEDICAL
APPLICATIONS
OF
PUPAE
OIL
159
BIODIESEL
FROM
PUPAE
OIL
163
PROTEINS
FROM
SILKWORM
PUPAE
163
MEDICAL
APPLICATION
OF
PUPAE
PEPTIDES
169
NANOPARTICLES
FROM
PUPAE
PROTEINS
174
PUPAE
AS
ANIMAL
FEED
176
CHITIN
AND
CHITOSAN
FROM
SILKWORM
PUPAE
181
MISCELLANEOUS
APPLICATIONS
184
CARBONIZATION
OF
PUPAE
184
PRODUCTION
OF
LIPIDS
185
ANTI-DIABETIC
DRUG
188
ENVIRONMENTAL
REMEDIATION
189
REFERENCES
189
6
6.1
6.2
6.3
6.4
6.5
6.6
APPLICATIONS
OF
PUPAE
LITTER
(EXCREMENT)
195
CHLOROPHYLLINE
AND
ITS
DERIVATIVES
195
APPLICATIONS
OF
PROTEINS
IN
LITTER
197
EXTRACTS
FROM
LITTER
198
ENVIRONMENTAL
REMEDIATION
USING
LITTER
199
CONVERSION
INTO
CARBON
203
NANOPARTICLES
FROM
LITTER
209
REFERENCES
211
7
CONVERTING
SILK
WASTES
INTO
COMPOSITES,
ENERGY
STORAGE
DEVICES,
AND
OTHER
VALUE-ADDED
MATERIALS
213
7.1
7.2
7.3
7.4
7.5
INTRODUCTION
213
COMPOSITES
FROM
SILK
WASTES
213
REINFORCEMENT
FOR
POLYPROPYLENE
(PP)
COMPOSITES
214
GREEN
COMPOSITES
FROM
SILK
WASTES
219
ENERGY
APPLICATIONS
221
CONTENTS
IX
7.5.1
CARBONIZATION
OF
WASTE
SILK
221
7.6
MISCELLANEOUS
APPLICATIONS
225
7.6.1
EXTRACTION
OF
AMINO
ACIDS
AND
BIOACTIVE
COMPOUNDS
225
7.7
FIBERS
AND
HYDROGELS
226
7.8
ENVIRONMENTAL
REMEDIATION
227
7.9
NUTRITIOUS
FOOD
FROM
SILKWORM
EGGS
229
REFERENCES
229
GLOSSARY
233
INDEX
237 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Reddy, Narendra Pornanong Aramwit |
author_GND | (DE-588)1100570675 (DE-588)1237016347 |
author_facet | Reddy, Narendra Pornanong Aramwit |
author_role | aut aut |
author_sort | Reddy, Narendra |
author_variant | n r nr p a pa |
building | Verbundindex |
bvnumber | BV047555487 |
classification_rvk | ZS 5815 |
ctrlnum | (OCoLC)1286881831 (DE-599)DNB1219754064 |
dewey-full | 677.390286 661 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 677 - Textiles 661 - Technology of industrial chemicals |
dewey-raw | 677.390286 661 |
dewey-search | 677.390286 661 |
dewey-sort | 3677.390286 |
dewey-tens | 670 - Manufacturing 660 - Chemical engineering |
discipline | Chemie / Pharmazie Handwerk und Gewerbe / Verschiedene Technologien Werkstoffwissenschaften / Fertigungstechnik |
discipline_str_mv | Chemie / Pharmazie Handwerk und Gewerbe / Verschiedene Technologien Werkstoffwissenschaften / Fertigungstechnik |
format | Book |
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id | DE-604.BV047555487 |
illustrated | Illustrated |
index_date | 2024-07-03T18:25:39Z |
indexdate | 2024-07-10T09:14:33Z |
institution | BVB |
institution_GND | (DE-588)16179388-5 |
isbn | 9783527347865 3527347860 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-032931050 |
oclc_num | 1286881831 |
open_access_boolean | |
owner | DE-703 |
owner_facet | DE-703 |
physical | xi, 241 Seiten Illustrationen, Diagramme 25 cm, 670 g |
publishDate | 2021 |
publishDateSearch | 2021 |
publishDateSort | 2021 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Reddy, Narendra Verfasser (DE-588)1100570675 aut Sustainable uses of byproducts from silk processing Narendra Reddy and Pornanong Aramwit Weinheim, Germany Wiley-VCH [2021] xi, 241 Seiten Illustrationen, Diagramme 25 cm, 670 g txt rdacontent n rdamedia nc rdacarrier Nachhaltigkeit (DE-588)4326464-5 gnd rswk-swf Nebenprodukt (DE-588)4253822-1 gnd rswk-swf Wertstoff (DE-588)4121651-9 gnd rswk-swf Verwertung (DE-588)4188158-8 gnd rswk-swf Seidenproduktion (DE-588)4396133-2 gnd rswk-swf Chemikalie (DE-588)4009833-3 gnd rswk-swf Gewinnung (DE-588)4250287-1 gnd rswk-swf Biotechnologie Biotechnologie i. d. Biowissenschaften Biotechnology Biowissenschaften Chemie Chemistry Industrial Chemistry Life Sciences Nachhaltige u. Grüne Chemie Seide Seidenindustrie Sustainable Chemistry & Green Chemistry Technische u. Industrielle Chemie CH30: Technische u. Industrielle Chemie CHC0: Nachhaltige u. Grüne Chemie LS35: Biotechnologie i. d. Biowissenschaften Seidenproduktion (DE-588)4396133-2 s Nebenprodukt (DE-588)4253822-1 s Verwertung (DE-588)4188158-8 s Chemikalie (DE-588)4009833-3 s Wertstoff (DE-588)4121651-9 s Gewinnung (DE-588)4250287-1 s Nachhaltigkeit (DE-588)4326464-5 s DE-604 Pornanong Aramwit Verfasser (DE-588)1237016347 aut Wiley-VCH (DE-588)16179388-5 pbl Erscheint auch als Online-Ausgabe, PDF 978-3-527-82875-3 Erscheint auch als Online-Ausgabe, EPUB 978-3-527-82874-6 Erscheint auch als Online-Ausgabe 978-3-527-82876-0 X:MVB http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34786-5/ B:DE-101 application/pdf https://d-nb.info/1219754064/04 Inhaltsverzeichnis DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032931050&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p dnb 20211004 DE-101 https://d-nb.info/provenance/plan#dnb 2\p dnb 20211004 DE-101 https://d-nb.info/provenance/plan#dnb |
spellingShingle | Reddy, Narendra Pornanong Aramwit Sustainable uses of byproducts from silk processing Nachhaltigkeit (DE-588)4326464-5 gnd Nebenprodukt (DE-588)4253822-1 gnd Wertstoff (DE-588)4121651-9 gnd Verwertung (DE-588)4188158-8 gnd Seidenproduktion (DE-588)4396133-2 gnd Chemikalie (DE-588)4009833-3 gnd Gewinnung (DE-588)4250287-1 gnd |
subject_GND | (DE-588)4326464-5 (DE-588)4253822-1 (DE-588)4121651-9 (DE-588)4188158-8 (DE-588)4396133-2 (DE-588)4009833-3 (DE-588)4250287-1 |
title | Sustainable uses of byproducts from silk processing |
title_auth | Sustainable uses of byproducts from silk processing |
title_exact_search | Sustainable uses of byproducts from silk processing |
title_exact_search_txtP | Sustainable uses of byproducts from silk processing |
title_full | Sustainable uses of byproducts from silk processing Narendra Reddy and Pornanong Aramwit |
title_fullStr | Sustainable uses of byproducts from silk processing Narendra Reddy and Pornanong Aramwit |
title_full_unstemmed | Sustainable uses of byproducts from silk processing Narendra Reddy and Pornanong Aramwit |
title_short | Sustainable uses of byproducts from silk processing |
title_sort | sustainable uses of byproducts from silk processing |
topic | Nachhaltigkeit (DE-588)4326464-5 gnd Nebenprodukt (DE-588)4253822-1 gnd Wertstoff (DE-588)4121651-9 gnd Verwertung (DE-588)4188158-8 gnd Seidenproduktion (DE-588)4396133-2 gnd Chemikalie (DE-588)4009833-3 gnd Gewinnung (DE-588)4250287-1 gnd |
topic_facet | Nachhaltigkeit Nebenprodukt Wertstoff Verwertung Seidenproduktion Chemikalie Gewinnung |
url | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34786-5/ https://d-nb.info/1219754064/04 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032931050&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT reddynarendra sustainableusesofbyproductsfromsilkprocessing AT pornanongaramwit sustainableusesofbyproductsfromsilkprocessing AT wileyvch sustainableusesofbyproductsfromsilkprocessing |
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Inhaltsverzeichnis