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Bioprocess Engineering Aspects of Sustainable Polyhydroxyalkanoate Production in Cyanobacteria

机译:蓝藻中可持续生产多羟基链烷酸酯的生物过程工程学方面

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摘要

Polyhydroxyalkanoates (PHAs) are a group of biopolymers produced in various microorganisms as carbon and energy reserve when the main nutrient, necessary for growth, is limited. PHAs are attractive substitutes for conventional petrochemical plastics, as they possess similar material properties, along with biocompatibility and complete biodegradability. The use of PHAs is restricted, mainly due to the high production costs associated with the carbon source used for bacterial fermentation. Cyanobacteria can accumulate PHAs under photoautotrophic growth conditions using CO2 and sunlight. However, the productivity of photoautotrophic PHA production from cyanobacteria is much lower than in the case of heterotrophic bacteria. Great effort has been focused to reduce the cost of PHA production, mainly by the development of optimized strains and more efficient cultivation and recovery processes. Minimization of the PHA production cost can only be achieved by considering the design and a complete analysis of the whole process. With the aim on commercializing PHA, this review will discuss the advances and the challenges associated with the upstream processing of cyanobacterial PHA production, in order to help the design of the most efficient method on the industrial scale.
机译:当生长所需的主要营养素受到限制时,聚羟基链烷酸酯(PHA)是在各种微生物中产生的一组生物聚合物,具有碳和能量储备的作用。 PHA是常规石化塑料的有吸引力的替代品,因为它们具有相似的材料特性以及生物相容性和完全的生物降解性。主要由于与用于细菌发酵的碳源相关的高生产成本而限制了PHA的使用。蓝细菌可以在使用二氧化碳和阳光的自养生长条件下积累PHAs。但是,从蓝细菌产生的光合自养PHA的生产率比异养细菌的生产率低得多。集中精力降低PHA生产成本的方法主要是通过优化菌株的开发以及更有效的培养和回收方法。仅通过考虑整个过程的设计和完整分析,才能实现PHA生产成本的最小化。为了使PHA商业化,本综述将讨论与蓝藻PHA生产上游工艺相关的进展和挑战,以帮助设计工业规模上最有效的方法。

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