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Synthesis, recovery and possible application of medium-chain-length polyhydroxyalkanoates: A short overview

机译:中链长聚羟基链烷酸酯的合成,回收和可能应用:简短概述

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摘要

Bacterial polyhydroxyalkanoates (PHAs) are polyesters of 3-hydroxyacids produced as intracellular granules by a large variety of bacteria, currently receiving much attention because of their potential as renewable and biodegradable plastics. The monomer units in these microbial polyesters are all in the R-configuration due to the stereospecificity of biosynthetic enzymes. Pseudomonads synthesise mainly medium-chain-length PHAs, formed of monomers of 6 to 14 carbons. The PHA monomer composition is influenced by the substrate added to the growth media and determines the physical properties of the plastic material. The capability of Pseudomonads to incorporate many different functional groups into the PHAs does extend their physical properties and potential applications, and suggests various possibilities to produce tailor-made polymers. The mcl-PHAs are of major interest for specific uses, where chirality and elastomeric property of the polymers are important. In this report we will focus on the biotechnological production, recovery and possible applications of mcl-PHAs. [References: 36]
机译:细菌聚羟基链烷酸酯(PHA)是3-羟基酸的聚酯,由多种细菌作为细胞内颗粒物产生,由于它们具有可再生和可生物降解的塑料潜力,目前受到广泛关注。这些微生物聚酯中的单体单元由于生物合成酶的立体特异性而全部呈R构型。假单胞菌主要合成由6至14个碳原子的单体形成的中链PHAs。 PHA单体组成受添加到生长培养基中的底物的影响,并决定了塑料的物理性能。假单胞菌将许多不同的官能团掺入PHA中的能力确实扩展了它们的物理性质和潜在的应用范围,并暗示了生产定制聚合物的各种可能性。 mcl-PHA对于特殊用途特别感兴趣,在这些用途中聚合物的手性和弹性性能很重要。在本报告中,我们将重点关注mcl-PHA的生物技术生产,回收和可能应用。 [参考:36]

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