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Handbook of Natural Polymers, Volume 1

Sources, Synthesis, and Characterization

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2023
ISBN13: 9780323998536
Rubricering
Elsevier Science e druk, 2023 9780323998536
€ 283,00
Levertijd ongeveer 8 werkdagen

Samenvatting

The Handbook of Natural Polymers: Sources, Synthesis, and Characterization is a comprehensive resource covering extraction and processing methods for polymers from natural sources, with an emphasis on the latest advances.

The book begins by introducing the current state-of-the-art, challenges, and opportunities in natural polymers. This is followed by detailed coverage of extraction, synthesis, and characterization methods, organized by polymer type. Along with broad chapters discussing approaches to polysaccharide-based polymers, dedicated chapters offer in-depth information on nanocellulose, chitin and chitosan, gluten, alginate, natural rubber, gelatin, pectin, lignin, keratin, gutta percha, shellac, silk, wood, casein, albumin, collagen, hemicellulose, polyhydroxyalkanoates, zein, soya protein, and gum. The final chapters explore other key themes, including filler interactions and properties in natural polymer-based composites, biocompatibility and cytotoxicity, biodegradability, life cycle, and recycling. Throughout the book, information is supported by data, and guidance is offered regarding potential scale-up and industry factors.

As part of a 3-volume handbook offering comprehensive coverage of natural polymers, this book will be of interest to all those looking to gain a broad knowledge of natural polymers, including academic researchers, scientists, advanced students, engineers, and R&D professionals from a range of disciplines and industries.

Specificaties

ISBN13:9780323998536
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

1. The state of the art of biopolymers, challenges and opportunities, and future prospects <br>2. Extraction and classification of starch from different sources: structure, properties and characterization<br>3. Starch as a promising replacement for synthetic polymers, and starch-based composites, blends, IPNs and Gels <br>4. Extraction of Nanocellulose from natural resources <br>5. Nanocellulose a promising reinforcement for polymers <br>6. Commercialization of polysaccharides: Lab to industry <br>7. Extraction of chitin and chitosan and its structural evaluation <br>8. Chitin and Chitosan based polymer blends, IPNs and gels <br>9. Antibacterial activity of Chitin and Chitosan <br>10. Grafted natural polymers: synthesis and structure property relationships <br>11. Isolation of Gluten from wheat flour and structural analysis <br>12. Extraction of alginate from different natural resources <br>13. Physical and chemical impact of nanoparticles reinforced alginate-based biomaterials <br>14. Natural Rubber based micro and nanocomposites<br>15. Gelatin based polymer blends, IPNs, Gels, cryogels, and aerogels<br>16. Isolation and structural evaluation of Pectin; Pectin based polymer blends, composites, IPNs and gels <br>17. Extraction of lignin and their blends, composites, IPNs and gels <br>18. Isolation and processing of Keratin based polymer blends, composites, IPNs and gels <br>19. Gutta Percha a natural biopolymer: Isolation, classifications, and property analysis <br>20. Isolation and classifications of Shellac <br>21. Silk based natural biomaterials: Extraction and characterization <br>22. Wool a natural biopolymer: Extraction and structure property relationships <br>23. Extraction and properties of casein biopolymer from milk<br>24. Synthesis and characterization of Albumin incorporated with nanomaterials <br>25. Synthesis and characterization of collagen <br>26. Extraction of hemicellulose and characterizations <br>27. Bioconversion of waste to polyhydroxyalkanoates - a circular bioeconomy approach <br>28. Different sources, extraction, and characterization of zein <br>29. Isolation and characterization of soya protein <br>30. Extraction and physicochemical characterization of gum <br>31. Effect of fillers and filler-host interactions on the properties of natural polymer-based composites <br>32. Biocompatibility and cytotoxicity studies of natural biopolymers <br>33. Biodegradability, life cycle analysis, recycling of natural biopolymers
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        Handbook of Natural Polymers, Volume 1