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近年来短链和中链聚羟基脂肪酸酯的发展:生产、性能和应用。

Recent developments in short- and medium-chain- length Polyhydroxyalkanoates: Production, properties, and applications.

机构信息

Worn Again Technologies Ltd, Bio City, Pennyfoot St, NG1 1GF Nottingham, Nottinghamshire, United Kingdom.

Departamento de Ingeniería Química, Universidad de Concepción, Concepción, Chile.

出版信息

Int J Biol Macromol. 2021 Sep 30;187:422-440. doi: 10.1016/j.ijbiomac.2021.07.143. Epub 2021 Jul 27.

Abstract

Developing renewable resource-based plastics with complete biodegradability and a minimal carbon footprint can open new opportunities to effectively manage the end-of-life plastics waste and achieve a low carbon society. Polyhydroxyalkanoates (PHAs) are biobased and biodegradable thermoplastic polyesters that accumulate in microorganisms (e.g., bacterial, microalgal, and fungal species) as insoluble and inert intracellular inclusion. The PHAs recovery from microorganisms, which typically involves cell lysis, extraction, and purification, provides high molecular weight and purified polyesters that can be compounded and processed using conventional plastics converting equipment. The physio-chemical, thermal, and mechanical properties of the PHAs are comparable to traditional synthetic polymers such as polypropylene and polyethylene. As a result, it has attracted substantial applications interest in packaging, personal care, coatings, agricultural and biomedical uses. However, PHAs have certain performance limitations (e.g. slow crystallization), and substantially more expensive than many other polymers. As such, more research and development is required to enable them for extensive use. This review provides a critical review of the recent progress achieved in PHAs production using different microorganisms, downstream processing, material properties, processing avenues, recycling, aerobic and anaerobic biodegradation, and applications.

摘要

开发具有完全生物降解性和最小碳足迹的可再生资源基塑料,可以为有效管理塑料废物的生命周期末端提供新的机会,并实现低碳社会。聚羟基烷酸酯(PHA)是生物基和可生物降解的热塑性聚酯,在微生物(例如细菌、微藻和真菌物种)中积累为不溶性和惰性的细胞内包涵体。PHA 从微生物中的回收,通常涉及细胞裂解、提取和纯化,提供高分子量和纯化的聚酯,可以使用常规塑料转化设备进行复合和加工。PHA 的物理化学、热和机械性能可与传统合成聚合物(如聚丙烯和聚乙烯)相媲美。因此,它在包装、个人护理、涂料、农业和生物医学用途方面引起了广泛的应用兴趣。然而,PHA 具有某些性能限制(例如结晶缓慢),并且比许多其他聚合物昂贵得多。因此,需要进行更多的研究和开发,以使其得到广泛应用。本综述对使用不同微生物、下游加工、材料性能、加工途径、回收、好氧和厌氧生物降解以及应用方面的 PHA 生产的最新进展进行了批判性评价。

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