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Polyhydroxyalkanoate

Other blends such as polyhydroxyalkanoates (PHA) with cellulose acetate (208), PHA with polycaprolactone (209), poly(lactic acid) with poly(ethylene glycol) (210), chitosan and cellulose (211), poly(lactic acid) with inorganic fillers (212), and PHA and aUphatic polyesters with inorganics (213) are receiving attention. The different blending compositions seem to be limited only by the number of polymers available and the compatibiUty of the components. The latter blends, with all natural or biodegradable components, appear to afford the best approach for future research as property balance and biodegradabihty is attempted. Starch and additives have been evaluated ia detail from the perspective of stmcture and compatibiUty with starch (214). [Pg.482]

Steinbuchel, A. and Lutke-Eversloh, T. 2003. Metabolic engineering and pathway construction for biotechnological production of relevant polyhydroxyalkanoates in microorganisms. Biochemical Engineering Journal 16 81-96. [Pg.39]

Fermentation of Sweet Sorghum into Added Value Biopolymer of Polyhydroxyalkanoates (PHAs)... [Pg.41]

Keshavarz, T., Roy, L, 2010. Polyhydroxyalkanoates bioplastics with a green agenda. [Pg.58]

Braunegg, G., 2008. Polyhydroxyalkanoate production from whey by Pseudomonas hydrogenovora. Bioresour. Technol. 99, 4854-4863. [Pg.58]

Steinbuchel, A., 1991.Polyhydroxyalkanoic acids. In Biomaterials. Edited by D. Byrom. [Pg.59]

Yoon, S. C., Choi, M. H., 1999. Local sequence dependence of polyhydroxyalkanoic acid... [Pg.60]

SCHEME 8.11 Ring-opening polymerization of (J-lactones to produce polyhydroxyalkanoates (PHAs). [Pg.234]

Steinbuchel A and Valentin HE., Diversity of bacterial polyhydroxyalkanoic acids. Ferns Microbiol lett, 1995, 128(3), 219-228. [Pg.250]

Willibald B, Holler E (1996) Paper 3/01. In Witholt B (Ed) Preprints Internationd Symposium of Bacterial Polyhydroxyalkanoate 96, Davos, Switzerland... [Pg.80]

Biochemical and Molecular Basis of Microbial Synthesis of Polyhydroxyalkanoates in Microorganisms... [Pg.81]

Keywords. Polyhydroxyalkanoic acids, Microbial polyesters, PHA, PHA synthase, Metabolic engineering, PHA granules, Ralstonia eutropha, Pseudomonas aeruginosa... [Pg.81]

Many bacteria are able to synthesize polyesters of hydroxyalkanoic acids and to accumulate these water insoluble polyhydroxyalkanoic acids (PHA) in the cytoplasm as inclusions and as storage compounds for energy and carbon these in-... [Pg.82]


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Applications of Polyhydroxyalkanoates

Applications of Polyhydroxyalkanoates (PHA)

Arabidopsis thaliana polyhydroxyalkanoate

BIOPOL polyhydroxyalkanoate

Bacterial polyhydroxyalkanoate granules

Biodegradable plastics polyhydroxyalkanoates

Biodegradable polyhydroxyalkanoates (PHAs

Biodegradable polymers polyhydroxyalkanoates

Biodegradation of polyhydroxyalkanoates

Biogenesis of Microbial Polyhydroxyalkanoate Granules

Biological properties polyhydroxyalkanoate

Biomedical applications of polyhydroxyalkanoates

Biopolymers polyhydroxyalkanoates

Biosynthesis of Polyhydroxyalkanoates The Renewable Feedstock

Biosynthesis of Polyhydroxyalkanoates using Starch

Blends of Polyhydroxyalkanoates

Blends of Polylactide and Polyhydroxyalkanoates

Carbon Sources for the Production of Polyhydroxyalkanoates

Cationic Antimicrobial Peptide Derived from Polyhydroxyalkanoates

Commercial development polyhydroxyalkanoates

Crystallinity polyhydroxyalkanoate copolymers

Discovery of Polyhydroxyalkanoate Producers

Economics polyhydroxyalkanoate production

Environment polyhydroxyalkanoate

Escherichia coli polyhydroxyalkanoate

Extraction of Polyhydroxyalkanoates

Fatty acid biosynthesis polyhydroxyalkanoate

Fermentative production polyhydroxyalkanoates

Functionalized polyesters polyhydroxyalkanoates)

Genetically Modified Systems and other Methods for the Production of Polyhydroxyalkanoates

Glass transition temperature polyhydroxyalkanoates

Improvement Strategies in Polyhydroxyalkanoates Production

In vitro Production of Polyhydroxyalkanoates

Mechanisms of Polyhydroxyalkanoate Biosynthesis

Medium-chain-length polyhydroxyalkanoates (MCL

Melting points polyhydroxyalkanoates

Metabolic pathways polyhydroxyalkanoate

Metabolix polyhydroxyalkanoate

Microorganisms polyhydroxyalkanoates

Modification of Polyhydroxyalkanoates

Molecular weight polyhydroxyalkanoates

Monsanto polyhydroxyalkanoate

Nanocomposites of Polyhydroxyalkanoates

Nanocomposites of Polyhydroxyalkanoates (PHAs)

Natural fibre-polyhydroxyalkanoate (PHA) composites

Optimisation Strategies in Polyhydroxyalkanoate Fermentation

Packaging Applications of Polyhydroxyalkanoates

Packaging Applications of Polyhydroxyalkanoates (PHAs)

Polycaprolactone polyhydroxyalkanoates

Polyester polyhydroxyalkanoate

Polyhydroxyalkanoate additives

Polyhydroxyalkanoate biodegradability

Polyhydroxyalkanoate blends

Polyhydroxyalkanoate copolymers

Polyhydroxyalkanoate degradation

Polyhydroxyalkanoate extracellular degradation

Polyhydroxyalkanoate granules

Polyhydroxyalkanoate high volume applications

Polyhydroxyalkanoate implants

Polyhydroxyalkanoate medical applications

Polyhydroxyalkanoate membranes

Polyhydroxyalkanoate novel

Polyhydroxyalkanoate physical properties

Polyhydroxyalkanoate pilot scale production

Polyhydroxyalkanoate polymer accumulation

Polyhydroxyalkanoate polymers

Polyhydroxyalkanoate processes

Polyhydroxyalkanoate production

Polyhydroxyalkanoate production technologies

Polyhydroxyalkanoate property

Polyhydroxyalkanoate purification

Polyhydroxyalkanoate recombinant strains

Polyhydroxyalkanoate sustainable

Polyhydroxyalkanoate synthase

Polyhydroxyalkanoate synthesis

Polyhydroxyalkanoate tissue engineering

Polyhydroxyalkanoate, PHA

Polyhydroxyalkanoate-based Multiphase Materials

Polyhydroxyalkanoates

Polyhydroxyalkanoates (PHA)

Polyhydroxyalkanoates -PHA from

Polyhydroxyalkanoates PHA production

Polyhydroxyalkanoates PHAs)

Polyhydroxyalkanoates Production by Activated Sludge

Polyhydroxyalkanoates Structure, Properties and Sources

Polyhydroxyalkanoates analysis

Polyhydroxyalkanoates applications

Polyhydroxyalkanoates bacteria

Polyhydroxyalkanoates bacterial degradation

Polyhydroxyalkanoates bacterial fermentation

Polyhydroxyalkanoates bacterial polyhydroxyalkanoate granules

Polyhydroxyalkanoates bacterial synthesis

Polyhydroxyalkanoates biodegradable copolymers

Polyhydroxyalkanoates biodegradation

Polyhydroxyalkanoates biofuels

Polyhydroxyalkanoates biological properties

Polyhydroxyalkanoates biomedical application

Polyhydroxyalkanoates biosynthesis mechanisms

Polyhydroxyalkanoates blends

Polyhydroxyalkanoates carbon sources

Polyhydroxyalkanoates characterization

Polyhydroxyalkanoates classification

Polyhydroxyalkanoates conditions

Polyhydroxyalkanoates continuous process

Polyhydroxyalkanoates copolymers

Polyhydroxyalkanoates crystallinity

Polyhydroxyalkanoates degradation

Polyhydroxyalkanoates degradation mechanism

Polyhydroxyalkanoates discovery

Polyhydroxyalkanoates economical production

Polyhydroxyalkanoates elastomers

Polyhydroxyalkanoates enzymatic degradation

Polyhydroxyalkanoates experimental

Polyhydroxyalkanoates extracellular degradation

Polyhydroxyalkanoates extraction

Polyhydroxyalkanoates fatty acid biosynthesis

Polyhydroxyalkanoates functionalized

Polyhydroxyalkanoates future prospective

Polyhydroxyalkanoates genetic engineering

Polyhydroxyalkanoates hydrolysates

Polyhydroxyalkanoates industrial applications

Polyhydroxyalkanoates industrial production

Polyhydroxyalkanoates intracellular degradation

Polyhydroxyalkanoates manufacturers

Polyhydroxyalkanoates materials

Polyhydroxyalkanoates mechanical properties

Polyhydroxyalkanoates medical applications

Polyhydroxyalkanoates medium chain length

Polyhydroxyalkanoates metabolic pathways

Polyhydroxyalkanoates microbial

Polyhydroxyalkanoates microbial production

Polyhydroxyalkanoates mixed cultures

Polyhydroxyalkanoates modification

Polyhydroxyalkanoates other copolymers

Polyhydroxyalkanoates packaging

Polyhydroxyalkanoates petroleum-based plastics

Polyhydroxyalkanoates physical properties

Polyhydroxyalkanoates plastics

Polyhydroxyalkanoates polymers

Polyhydroxyalkanoates preparation

Polyhydroxyalkanoates processing

Polyhydroxyalkanoates processing/preparation

Polyhydroxyalkanoates producers

Polyhydroxyalkanoates production

Polyhydroxyalkanoates production economics

Polyhydroxyalkanoates properties

Polyhydroxyalkanoates recombinant Escherichia coli

Polyhydroxyalkanoates review

Polyhydroxyalkanoates short-/medium-chain-length

Polyhydroxyalkanoates sources

Polyhydroxyalkanoates structure

Polyhydroxyalkanoates substrates

Polyhydroxyalkanoates synthases

Polyhydroxyalkanoates synthesis

Polyhydroxyalkanoates thermal degradation

Polyhydroxyalkanoates thermal properties

Polyhydroxyalkanoates thermal stability

Polyhydroxyalkanoates tissue engineering

Polyhydroxyalkanoates transgenic plants

Polyhydroxyalkanoates types

Polyhydroxyalkanoates, characteristics

Polyhydroxyalkanoates, characteristics processing

Polyhydroxyalkanoic acid

Polymer blends with polyhydroxyalkanoates

Production of Bacterial Polyhydroxyalkanoates PHAs via Fermentation

Production of Polyhydroxyalkanoates

Properties and applications of bacterially derived polyhydroxyalkanoates

Purification of Polyhydroxyalkanoates

Quantification of Polyhydroxyalkanoates

Recent Updates on Improvement Strategies for Polyhydroxyalkanoates Production

Recent Updates on Polyhydroxyalkanoate Quantification

Recent Updates on Polyhydroxyalkanoates Biosynthesis

Recent Updates on the Biodegradation of Polyhydroxyalkanoates

Recent Updates on the Discovery of Polyhydroxyalkanoates Producers

Recovery and Purification of Polyhydroxyalkanoates

Short-chain-length polyhydroxyalkanoates

The Various Types of Polyhydroxyalkanoates

Thermal and Mechanical Properties of Polyhydroxyalkanoates

Transgenic plants polyhydroxyalkanoate

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