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用于微藻工业生产的太阳能生物反应器。

Solar bioreactors used for the industrial production of microalgae.

机构信息

Laboratory of Algal Biotechnology, Centre Algatech, Institute of Microbiology of the Czech Academy of Science, Třeboň, Czech Republic.

Faculty of Science, University of South Bohemia, České Budějovice, Czech Republic.

出版信息

Appl Microbiol Biotechnol. 2023 Nov;107(21):6439-6458. doi: 10.1007/s00253-023-12733-8. Epub 2023 Sep 19.

Abstract

Microalgae are excellent sources of biomass containing several important compounds for human and animal nutrition-proteins, lipids, polysaccharides, pigments and antioxidants as well as bioactive secondary metabolites. In addition, they have a great biotechnological potential for nutraceuticals, and pharmaceuticals as well as for CO sequestration, wastewater treatment, and potentially also biofuel and biopolymer production. In this review, the industrial production of the most frequently used microalgae genera-Arthrospira, Chlorella, Dunaliella, Haematococcus, Nannochloropsis, Phaeodactylum, Porphyridium and several other species is discussed as concerns the applicability of the most widely used large-scale systems, solar bioreactors (SBRs)-open ponds, raceways, cascades, sleeves, columns, flat panels, tubular systems and others. Microalgae culturing is a complex process in which bioreactor operating parameters and physiological variables closely interact. The requirements of the biological system-microalgae culture are crucial to select the suitable type of SBR. When designing a cultivation process, the phototrophic production of microalgae biomass, it is necessary to employ SBRs that are adequately designed, built and operated to satisfy the physiological requirements of the selected microalgae species, considering also local climate. Moreover, scaling up microalgae cultures for commercial production requires qualified staff working out a suitable cultivation regime. KEY POINTS: • Large-scale solar bioreactors designed for microalgae culturing. • Most frequently used microalgae genera for commercial production. • Scale-up requires suitable cultivation conditions and well-elaborated protocols.

摘要

微藻是极好的生物质来源,其中含有多种对人类和动物营养至关重要的化合物——蛋白质、脂质、多糖、色素和抗氧化剂以及生物活性次生代谢物。此外,它们在营养保健品、药品以及 CO2 封存、废水处理、以及潜在的生物燃料和生物聚合物生产方面具有巨大的生物技术潜力。在这篇综述中,讨论了最常用于工业生产的几种微藻属(节旋藻、绿球藻、盐藻、雨生红球藻、微拟球藻、三角褐指藻、紫球藻和其他一些物种),涉及最广泛使用的大规模系统(太阳能生物反应器(SBR))——开放式池塘、跑道、级联、套管、立柱、平板、管状系统等的适用性。微藻培养是一个复杂的过程,其中生物反应器操作参数和生理变量密切相互作用。生物系统——微藻培养的要求对于选择合适的 SBR 类型至关重要。在设计培养过程时,必须采用设计合理、建造和运行良好的 SBR,以满足所选微藻物种的生理要求,同时也要考虑当地气候。此外,为商业生产扩大微藻培养需要合格的工作人员制定合适的培养方案。关键点:• 专为微藻培养设计的大型太阳能生物反应器。• 最常用于商业生产的微藻属。• 扩大规模需要合适的培养条件和精心制定的方案。

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