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Biotransformation of oleochemical industry by‐products to polyhydroxyalkanoate bioplastic using microbial fermentation: A review

机译:利用微生物发酵将油脂化学工业副产品生物转化为聚羟基链烷酸酯生物塑料:研究进展

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摘要

Abstract For many decades, global efforts have been attempted to replace the petrochemical plastics with biodegradable and environment friendly plastics. The petrochemical plastics that require many years to decompose have profound consequences on the environment. A natural, biodegradable, and plastic‐like polymer, polyhydroxyalkanoate (PHA), has been extracted from and synthesized by microbes, particularly bacteria. However, the prospective large‐scale production of PHA faced an economic bottleneck for less production costs. Research has thus shifted to one of the most common alternatives, which is the utilization of less costly raw materials or carbon sources that include industrial by‐products and wastes, such as glycerine pitch and glycerol. This review elucidates the discovery, basic mechanisms, and applications of PHA, as well as provides insights regarding the importance of PHA conversion from glycerine pitch and glycerol. This review also summarizes some possible future modifications to improve the efficiency of glycerine pitch and glycerol as carbon sources in PHA production. The conversion endeavors of wastes to a valuable product, PHA, that not only reduces petrochemical plastic pollution, waste generation, and PHA production costs but also supports economic and resource sustainability, which ultimately further progress towards the cradle‐to‐cradle design and circular bioeconomy concept.
机译:摘要 几十年来,全球一直在努力用可生物降解的环保塑料取代石化塑料。石化塑料需要多年才能分解,对环境产生深远的影响。聚羟基链烷酸酯 (PHA) 是一种天然的、可生物降解的、类似塑料的聚合物,是从微生物(尤其是细菌)中提取和合成的。然而,PHA的预期大规模生产面临着降低生产成本的经济瓶颈。因此,研究已转向最常见的替代方案之一,即利用成本较低的原材料或碳源,包括工业副产品和废物,如甘油沥青和甘油。本文阐述了PHA的发现、基本机理和应用,并就PHA从甘油沥青和甘油转化的重要性提供了见解。本文还总结了一些未来可能的修改,以提高甘油沥青和甘油作为PHA生产中碳源的效率。将废物转化为有价值的产品 PHA,不仅可以减少石化塑料污染、废物产生和 PHA 生产成本,还可以支持经济和资源可持续性,最终进一步朝着摇篮到摇篮设计和循环生物经济概念迈进。

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