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Challenges and Opportunities for Customizing Polyhydroxyalkanoates

机译:定制聚羟基链烷酸酯的挑战和机遇

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摘要

Polyhydroxyalkanoates (PHAs) as an alternative to synthetic plastics have been gaining increasing attention. Being natural in their origin, PHAs are completely biodegradable and eco-friendly. However, consistent efforts to exploit this biopolymer over the last few decades have not been able to pull PHAs out of their nascent stage, inspite of being the favorite of the commercial world. The major limitations are: (1) the high production cost, which is due to the high cost of the feed and (2) poor thermal and mechanical properties of polyhydroxybutyrate (PHB), the most commonly produced PHAs. PHAs have the physicochemical properties which are quite comparable to petroleum based plastics, but PHB being homopolymers are quite brittle, less elastic and have thermal properties which are not suitable for processing them into sturdy products. These properties, including melting point (Tm), glass transition temperature (Tg), elastic modulus, tensile strength, elongation etc. can be improved by varying the monomeric composition and molecular weight. These enhanced characteristics can be achieved by modifications in the types of substrates, feeding strategies, culture conditions and/or genetic manipulations.
机译:聚羟基链烷酸酯(PHA)作为合成塑料的替代品已受到越来越多的关注。 PHA起源于自然,可完全生物降解且对环境友好。然而,尽管受到商业界的喜爱,但在过去的几十年中,为开发这种生物聚合物所做的持续努力未能将PHAs从其新生阶段中解脱出来。主要局限性是:(1)生产成本高,这是由于进料成本高所致;(2)最常生产的PHA聚羟基丁酸酯(PHB)的热和机械性能差。 PHA具有与石油基塑料相当的物理化学性能,但作为均聚物的PHB相当脆,弹性较小,并且具有不适合将其加工成坚固产品的热性能。这些性质,包括熔点(Tm),玻璃化转变温度(Tg),弹性模量,拉伸强度,伸长率等可以通过改变单体组成和分子量来改善。这些增强的特性可以通过对底物类型,进料策略,培养条件和/或基因操作进行修改来实现。

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