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A novel double-layered photobioreactor for simultaneous Haematococcus pluvialis cell growth and astaxanthin accumulation

机译:一种新颖的双层光生物反应器,可同时使红血球菌细胞生长和虾青素积累

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摘要

This study proposes a novel double-region photobioreactor to simplify the commercial two-stage process of astaxanthin production by the cultivation of Haematococcus pluvialis. The feasibility of the double-region photobioreactor has been investigated and found to achieve high biomass yield in the inner core region and simultaneous astaxanthin accumulation in the outer jacket region. Among many environmental factors, light condition and nitrate level were manipulated for selective cell growth and astaxanthin production. In the outer jacket region, efficient astaxanthin production was accomplished by excessive irradiation (770+/-20 microE m(-2)s(-1)) and nitrate starvation, resulting in a dramatic increase of astaxanthin productivity (357 mg l(-1)). Meanwhile, attenuated light energy (40+/-3 microE m(-2)s(-1)) and sufficient nitrates were supplied to the vegetative cells in the inner core region, which continued to grow to a high cell concentration of 4.0 x 10(5) cells ml(-1). The sequential batch run was performed by utilizing the high-density vegetative cells as inoculum for the next batch run. The cultivation results exhibited similar trends as the previous run, reaching high cell density (4.3 x 10(5) cells ml(-1)) in the inner core region and high astaxanthin content (5.79% on a dry weight basis) in the outer jacket region. The present study indicates that the double-region photobioreactor and its method of operation possess a good potential for commercial production of astaxanthin by H. pluvialis.
机译:这项研究提出了一种新颖的双区域光生物反应器,以简化通过培养血红球菌培养虾青素的商业两阶段过程。已经研究了双区域光生物反应器的可行性,发现该双区域光生物反应器在内核区域实现了高生物量产量,而在外套区域实现了虾青素的同时积累。在许多环境因素中,对光照条件和硝酸盐水平进行了控制,以进行选择性细胞生长和虾青素生产。在外套区域,通过过量的辐射(770 +/- 20 microE m(-2)s(-1))和硝酸盐饥饿来实现虾青素的有效生产,从而导致虾青素的生产率显着提高(357 mg l(- 1))。同时,将衰减的光能(40 +/- 3 microE m(-2)s(-1))和足够的硝酸盐提供给内核区域的营养细胞,并持续生长至4.0 x的高细胞浓度10(5)个细胞ml(-1)。通过使用高密度营养细胞作为下一个批次运行的接种物,进行连续的批次运行。培养结果显示出与前一轮相似的趋势,在内核区域达到高细胞密度(4.3 x 10(5)细胞ml(-1)),外层达到高虾青素含量(以干重计为5.79%)夹克地区。本研究表明,该双区光生物反应器及其操作方法具有商业潜力,可通过雨生螺旋体商业生产虾青素。

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