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Poly(lactic acid) Science and Technology

applications. Poly (lactic acid) (PLA) is a well-known biopolymer derived from corn starch or sugar cane used in different food packaging and;

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Lactic Acid

challenges for the materials research groups and polymer industry during the next few years. Poly(lactic acid), PLA, is a biodegradable polymer;

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Handbook of Composites from Renewable Materials

material; poly (ethylene-terephthalate) reinforced with hemp fibers; poly (lactic acid) thermoplastic composites from renewable materials;

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Amino-Acid Homopolymers Occurring in Nature

applications of poly-lysine and its derivatives. In contrast, poly-gamma-glutamic acid is an unusual anionic polypeptide. It is also water soluble;

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Degradation of Poly (Lactide)-Based Biodegradable Materials

Poly (lactide), i.e., poly (lactic acid) (PLA) is a biodegradable polyester produced from renewable resources. Due to its high mechanical;

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Emulsion Polymerization of Vinyl Acetate

industrial importance of poly(vinyl acetate) and vinyl acetate copolymers, and their rather unique properties among emulsion polymers in general;

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Glutamic Acid

Poly (y-glutamic acid), a novel polyanionic and multifunctional macromolecule synthesised by Bacillus species, has attracted considerable;

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Polylactide Foams

injection molding and bead foaming. Interest in Poly(lactic acid) and PLA foams is extremely high - particularly as a potential;

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Biodegradable and Sustainable Fibres

discuss the major fibre types, including bast fibres, alginates, cellulose and speciality biodegradable fibres, such as lyocell, poly(lactic acid;

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Natural Fiber Reinforced Vinyl Ester and Vinyl Polymer Composites

Natural Fiber Reinforced Vinyl Ester and Vinyl Polymer Composites: Characterization, Properties and Applications discusses recent advances;

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Handbook of Composites from Renewable Materials

biomedical applications; biodegradable soy protein isolatepoly(vinyl alcohol) packaging films; and biodegradability of biobased polymeric materials;

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Micro and Nano Fibrillar Composites (MFCs and NFCs) from Polymer Blends

, morphology, structure, properties and applications in micro and nanofibrillar composites Contains contributions from leading experts in the;

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Principles and Applications of Fermentation Technology

bioethanol production Poly-lactide production from lactic acid through fermentation technology Bacterial cellulose and its potential impact on;

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Biodegradable & Bio Based Polymers

modifications of tannins Electro-activity and applications of Jatropha latex and seed The synthesis, properties and applications of poly(lactic acid;

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Polyethylene Terephthalate Based Blends

> Poly(Ethylene Terephthalate) Based Blends, Composites and Nanocomposites fills this gap and systematically guides the reader through all;

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Biodegradable Polymers for Industrial Applications

explored. Polymers derived from sugars, natural fibres, renewable forest resources, poly(lactic acid) and protein-nanoparticle composites are;

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Biodegradable Polymers

discussed include microbial degradation of trichloroethylene; the synthesis and applications of biodegradable poly(ester amides); block copolymer;

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Mica

of mica as reinforcing agents in isotactic polypropylene and poly(lactic acid) composites; the application of mica in biological and;

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Head Loss Characteristics in Polytubes in Micro Irrigation System

, and inlet pressure in micro tubes attached to the micro manifold of a micro irrigation system. Determination of head loss and inlet pressure;

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Photostability of Poly(vinyl Chloride)

cost and the good performance of poly(vinyl chloride) products have increased the utilizationof this polymer in building, mainly in exterior;

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Bio-Based Plastics

chitin and chitosan * Lignin matrix composites from natural resources * Polyhydroxyalkanoates * Poly(lactic acid) * Polyesters, Polyamides and;

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Biopolymers

granules, non-storage phas, poly(malic acid), cutin, suberin, polyphosphate, polylactides, polyglycolide, polyanhydrides, polyesteramides;

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Research Progress in Chemical Physics & Biochemical Physics

of Kinetic Model of the Process; Degradation of Films Based on Mixtures of Vinyl Alcohol with Vinyl Acetate Copolymers & Polyhydroxybutyrate under UV;

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Hydrocarbon Polymer Electrolytes for Fuel Cell Applications

-PAMPS [poly(vinyl alcohol) and poly(2-acrylamido-2-methyl-1-propanesulfonic acid)] composites. The authors have first introduced new concepts;

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Biocomposites: Design and Mechanical Performance

biocomposites, and biocomposites from biodegradable polymer blends, natural fibers, and green plastics, giving the reader a deep understanding of the;

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