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Titlebook: Biotechnological Applications of Polyhydroxyalkanoates; Vipin Chandra Kalia Book 2019 Springer Nature Singapore Pte Ltd. 2019 Biopolymers.

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CH4-Based Polyhydroxyalkanoate Production: A Step Further Towards a Sustainable Bioeconomy, most prevalent greenhouse gas (GHG) within the global GHG inventory. Both physical/chemical and biological technologies are available for the treatment of CH. emissions, the later also allowing for the production of high-added value products such as polyhydroxyalkanoates (PHAs) at significantly low
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Approaches for Enhancing Extraction of Bacterial Polyhydroxyalkanoates for Industrial Applications,e. The impact of PHA extraction may represent more than 50% of total production process. To ensure proper removal of the bioplastic from the bacterial cells several unitary operations must be performed in the extraction process. In addition, one also need to take in to consideration: reduction of pr
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Nanofibers from Polyhydroxyalkanoates and Their Applications in Tissue Engineering,tics with fiber diameter ranging from tens to hundreds of nanometers. They have large surface area-to-volume ratio and can form highly porous interconnecting network. Natural, synthetic, carbon-based, semiconducting, and composite/blend polymers have been used to synthesize them. By virtue of their
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Islamic Perspectives on Work-Based Learningadable nature have led to their accumulation in quantities, which are difficult to manage and a major cause of environmental pollution. Bacteria have the ability to accumulate Carbon (C) as biopolymers especially under stress conditions. The biopolymers – polyhydroxyalkanotes (PHAs) are biodegradabl
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https://doi.org/10.1007/978-94-007-4759-3 Polyhydroxyalkonate (PHA) is a natural origin polymer and getting attention for drug delivery due to its biodegradability and biocompatible properties. PHA with different monomer compositions has different physical and chemical properties which further affect drug loading and release. PHA polymers
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