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Biodegradable Polymer Blends and Composites from Renewable Resources

Long Yu (Gebundene Ausgabe, Englisch)

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Beschreibung
Learn How to Design Environmentally Friendly Polymer Blends and Composites Highlighting important new developments and findings, this book explores biodegradable polymer blends and composites from renewable resources and points to their potential markets. Readers will discover how to work with blending and composition formulations to create new, environmentally friendly products with valuable properties. Following a general introduction, the book is divided into six parts: * Part I focuses on natural polymer blends developed with melting, aqueous, or reactive blending. * Part II demonstrates how to improve the thermal properties of aliphatic polymer blends. * Part III discusses hydrophobic and hydrophilic blends, in particular polyesters and natural polymers. * Part IV examines composites reinforced with natural fibers. * Part V introduces the development of nanoclay-reinforced composites, including novel techniques to delaminate clay for use in natural polymers. * Part VI investigates multilayered systems from renewable resources. By exploring the relationship between microstructure and properties for each category of blends and composites, the book helps readers design their own materials. In addition to standard techniques, readers learn several innovative, advanced techniques for improving the interfaces between hydrophilic natural polymers and hydrophobic biodegradable polyesters. Readers also learn the latest techniques for analyzing and working with biodegradable nanocomposites. Combining fundamental science with applications that have either been commercialized or show great promise for commercialization, this book is ideal for material and polymer scientists as well as students who are interested in bringing new environmentally friendly products to market.
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Technische Daten


Erscheinungsdatum
07.11.2008
Sprache
Englisch
EAN
9780470146835
Herausgeber
John Wiley & Sons
Sonderedition
Nein
Autor
Long Yu
Seitenanzahl
488
Einbandart
Gebundene Ausgabe
Autorenporträt
Long Yu, PhD, is highly regarded in the field of polymer science, with more than twenty-five years of experience in developing and finding new applications for polymeric materials. He is currently working as a research scientist in Commonwealth Scientific and Industrial Research Organization (CSIRO), Materials Science and Engineering Division, Australia. He is also a visiting professor at South China University of Technology. Dr. Yu is a Fellow of the Royal Australian Chemical Institute.
Schlagwörter
Environmental Chemistry, Polymerwissenschaft u. -technologie, Chemistry, Biopolymere, Chemie, Biopolymers, Umweltchemie, Polymer Science & Technology, Polymer processing, Polymerverarbeitung
Thema-Inhalt
TDCP - Plastik- & Polymertechnologie
Inhaltsverzeichnis
PART I: NATURAL POLYMER BLENDS AND COMPOSITES. 1. Polymers from Renewable Resources (L. Yu and L. Chen). 2. Starch - Cellulose Blends (I. S. Arvanitoyannis and A. Kassaveti). 3. Starch Sodium Caseinate Blends (I. S. Arvanitoyannis and P. Tserkezou). 4. Novel Plastics and Foams from Starch and Polyurethanes (Y. Lu and L. Tighzert). 5. Chitosan Properties and application (N. Soares). 6. Blends and Composites Based on Cellulose/Natural Polymers (Y. Wang and L. Zhang). PART II: ALIPHATIC POLYESTER BLENDS. 7. Stereocomplex between Enantiomeric Poly(lactide)s (H. Tsuji and Y. Ikada). 8. Polyhydroxyalkanoates Blends and Composities (G. Q. Chen and Tsinghua). PART III: HYDROPHOBIC AND HYDROPHILIC POLYMERIC BLENDS. 9. Starch-Poly(hydroxyalkanoate) Composites and Blends (R. Shogren). 10. Biodegradable Blends Based on Microbial Poly(3-hydroxybutyrate) and Natural Chitosan (C. Chen and L. Dong). PART IV: NATURAL FIBER-REINFORCED COMPOSITES. 11. Starch-Cellulose Fibres Composites (A. V'quez and V. Alvarez). 12. PLA/Cellulosic Fiber Composites (M. Shibata). 13. Biocomposites of Natural Fibres and Poly(3-hydroxybutyrate) and Copolymers: Improved Mechanical Properties Through Compatibilization at the Interface (S. Wong and R. A. Shanks). 14. Starch-Fiber Composites (M. A. Hanna and Y. Xu). PART V: BIODEGRADABLE NANOCOMPOSITES. 15. Starch based nanocomposites using layered minerals (H.R. Fischer and J.J. de Vlieger). 16. Polylactide Based Nanocomposites (S. S. Ray and J. Ramontja). 17. Advances in Natural Rubber/Montmorillonite Nanocomposites (D. Jia, L. Liu, X. Wang, B. Guo, and Y. Luo). PART VI: MULTILAYER DESIGNED MATERIALS. 18. Multilayer Coextrusion of Starch/Biopolyester (L. Av'ous).
Höhe
239 mm
Breite
16.4 cm

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