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Titlebook: Biopolymers from Renewable Resources; David L. Kaplan Book 1998 Springer-Verlag Berlin Heidelberg 1998 Biopolymere.Chitosan.Lignin.Polyami

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期刊全稱Biopolymers from Renewable Resources
影響因子2023David L. Kaplan
視頻videohttp://file.papertrans.cn/189/188412/188412.mp4
學(xué)科分類Macromolecular Systems - Materials Approach
圖書封面Titlebook: Biopolymers from Renewable Resources;  David L. Kaplan Book 1998 Springer-Verlag Berlin Heidelberg 1998 Biopolymere.Chitosan.Lignin.Polyami
影響因子Biopolymers from Renewable Resources is a compilation of information on the diverse and useful polymers derived from agricultural, animal, and microbial sources. The volume provides insight into the diversity of polymers obtained directly from, or derived from, renewable resources. The beneficial aspects of utilizing polymers from renewable resources, when considering synthesis, pro- cessing, disposal, biodegradability, and overall material life-cycle issues, suggests that this will continue to be an important and growing area of interest. The individual chapters provide information on synthesis, processing and properties for a variety of polyamides, polysaccharides, polyesters and polyphenols. The reader will have a single volume that provides a resource from which to gain initial insights into this diverse field and from which key references and contacts can be drawn. Aspects of biology, biotechnology, polymer synthesis, polymer processing and engineering, mechanical properties and biophysics are addressed to varying degrees for the specific biopolymers. The volume can be used as a reference book or as a teaching text. At the more practical level, the range of important materials
Pindex Book 1998
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High Molecular Weight Polylactic Acid Polymers,ster bond and does not require the presence of enzymes to catalyze this hydrolysis. The rate of degradation is dependent on the size and shape of the article, the isomer ratio, and temperature of hydrolysis. A more detailed summary of degradation and lactic acid manufacturing is given in recent mono
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Construction Industry and Competition Policyster bond and does not require the presence of enzymes to catalyze this hydrolysis. The rate of degradation is dependent on the size and shape of the article, the isomer ratio, and temperature of hydrolysis. A more detailed summary of degradation and lactic acid manufacturing is given in recent mono
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of biology, biotechnology, polymer synthesis, polymer processing and engineering, mechanical properties and biophysics are addressed to varying degrees for the specific biopolymers. The volume can be used as a reference book or as a teaching text. At the more practical level, the range of important materials978-3-642-08341-9978-3-662-03680-8
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Polysaccharides: Chitin and Chitosan: Chemistry and Technology of Their Use As Structural Materials and yeasts. Chitin is essentially a homopolymer of 2-acetamido-2-deoxy-β-D-glucopyranose, although some of the glucopyranose residues are in the deacetylated form as 2-amino-2-deoxy-β-D-glucopyranose. When chitin is further deacetylated to about 50% it becomes soluble in dilute acids and is referre
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