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薄膜光生物反应器的研制及其在室外培养微藻中的应用。

Development of thin-film photo-bioreactor and its application to outdoor culture of microalgae.

机构信息

Institute of Clean Chemical Engineering Systems, Korea University, Seoul, 136-701, Republic of Korea.

出版信息

Bioprocess Biosyst Eng. 2013 Jun;36(6):729-36. doi: 10.1007/s00449-013-0898-2. Epub 2013 Jan 30.

Abstract

Photosynthetic microalgae have received much attention as a microbial source of diverse useful biomaterials through CO(2) fixation and various types of photo-bioreactors have been developed for efficient microalgal cultivation. Herein, we developed a novel thin-film photo-bioreactor, which was made of cast polypropylene film, considering outdoor mass cultivation. To develop optimal design of photo-bioreactor, we tested performance of three shapes of thin-film photo-bioreactors (flat, horizontal and vertical tubular shapes) and various parts in the bioreactor. Collectively, vertical tubular bioreactor with H/D ratio 6:1 and cylindrical stainless steel spargers showed the most outstanding performance. Furthermore, the photo-bioreactor was successfully applied to the cultivation of other microalgae such as Chlamydomonas reinhardtii and Chlorella vulgaris. The scalability of photo-bioreactor was confirmed by gradually increasing culture volume from 4 to 25 L and the biomass productivity of each reactor was quite consistent (0.05-0.07 g/L/day) during the cultivation of H. pluvialis under indoor and outdoor conditions. Especially, we also achieved dry cell weight of 4.64 g/L and astaxanthin yield of 218.16 mg/L through long-term cultivation (100 days) under outdoor condition in 15 L photo-bioreactor using Haematococcus pluvialis, which means that the astaxanthin yield from outdoor cultivation is equal or superior to that obtained from controlled indoor condition. Therefore, these results indicate that we can apply this approach to development of optimal photo-bioreactor for the large-scale culture of microalgae and production of useful biomaterials under outdoor condition.

摘要

光合微藻作为一种通过 CO(2)固定获得各种有用生物材料的微生物来源,受到了广泛关注,并且已经开发出各种类型的光生物反应器来进行高效的微藻培养。在此,我们开发了一种新型的薄膜光生物反应器,该生物反应器由铸型聚丙烯薄膜制成,考虑到户外大规模培养。为了开发最佳的光生物反应器设计,我们测试了三种薄膜光生物反应器(平板、水平和垂直管状)和生物反应器各部分的性能。总的来说,H/D 比为 6:1 的垂直管状生物反应器和圆柱形不锈钢曝气器表现出了最出色的性能。此外,该光生物反应器还成功应用于其他微藻(如莱茵衣藻和普通小球藻)的培养。通过将培养体积从 4 升逐渐增加到 25 升,证实了光生物反应器的可扩展性,并且在室内和室外条件下培养雨生红球藻时,每个反应器的生物量生产力都非常一致(0.05-0.07 g/L/天)。特别是,我们还通过在 15 升光生物反应器中使用雨生红球藻进行了 100 天的室外长期培养,实现了 4.64 g/L 的干细胞重量和 218.16 mg/L 的虾青素产量,这意味着室外培养的虾青素产量与室内控制条件下获得的产量相等或更高。因此,这些结果表明,我们可以将这种方法应用于开发最佳的光生物反应器,以在户外条件下进行大规模微藻培养和有用生物材料的生产。

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