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Potential and Prospects of Continuous Polyhydroxyalkanoate (PHA) Production

机译:聚羟基链烷酸酯(PHA)连续生产的潜力和前景

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摘要

Together with other so-called “bio-plastics”, Polyhydroxyalkanoates (PHAs) are expected to soon replace established polymers on the plastic market. As a prerequisite, optimized process design is needed to make PHAs attractive in terms of costs and quality. Nowadays, large-scale PHA production relies on discontinuous fed-batch cultivation in huge bioreactors. Such processes presuppose numerous shortcomings such as nonproductive time for reactor revamping, irregular product quality, limited possibility for supply of certain carbon substrates, and, most of all, insufficient productivity. Therefore, single- and multistage continuous PHA biosynthesis is increasingly investigated for production of different types of microbial PHAs; this goes for rather crystalline, thermoplastic PHA homopolyesters as well as for highly flexible PHA copolyesters, and even blocky-structured PHAs consisting of alternating soft and hard segments. Apart from enhanced productivity and constant product quality, chemostat processes can be used to elucidate kinetics of cell growth and PHA formation under constant process conditions. Furthermore, continuous enrichment processes constitute a tool to isolate novel powerful PHA-producing microbial strains adapted to special environmental conditions. The article discusses challenges, potential and case studies for continuous PHA production, and shows up new strategies to further enhance such processes economically by developing unsterile open continuous processes combined with the application of inexpensive carbon feedstocks.
机译:预计与其他所谓的“生物塑料”一起,聚羟基链烷酸酯(PHA)将很快取代塑料市场上成熟的聚合物。作为先决条件,需要优化流程设计以使PHA在成本和质量方面具有吸引力。如今,大规模PHA生产依赖于大型生物反应器中不连续补料分批培养。这样的过程以许多缺点为先决条件,例如反应堆改造的非生产时间,不规则的产品质量,供应某些碳底物的可能性有限以及最重要的是生产率不足。因此,越来越多地研究单阶段和多阶段连续PHA生物合成以生产不同类型的微生物PHAs。这适用于结晶性较高的热塑性PHA均聚酯,以及高度柔性的PHA共聚酯,甚至是由交替的软链段和硬链段组成的嵌段结构PHA。除了提高生产率和稳定的产品质量外,化学恒温器工艺还可用于阐明恒定工艺条件下细胞生长和PHA形成的动力学。此外,连续富集过程构成了一种工具,可以分离出适应特定环境条件的新型强大的产生PHA的微生物菌株。本文讨论了连续PHA生产的挑战,潜力和案例研究,并提出了通过开发不育的开放式连续流程并结合使用廉价碳原料来进一步经济地提高此类流程的新策略。

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