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实验性生物生命支持系统。一、作为封闭生态系统环节的藻类连续培养。

Experimental biological life support system. I. Continuous cultivation of algae as a link of a closed ecosystem.

作者信息

Kirensky L V, Terskov I A, Gitelson I I, Lisovsky G M, Kovrov B G, Okladnikov Y N

出版信息

Life Sci Space Res. 1968;6:32-6.

Abstract

According to the opinion of many researchers, a culture of microalgae may serve as a regenerator of atmosphere in the cabin of a spaceship. To use microalgae for these objectives, it was necessary to have an automatic unit possessing a high productivity of the cultivation process. This unit, containing a minimum of equipment, enables carrying on for an unlimited time the cultivation of algae without a drop in their productivity. The unit meeting these requirements (the cultivator) was developed by the authors and will be described in the presentation. The stability of the microalga photosynthetic system is characterized by the fact that after 70% biosynthesis repression by the ultraviolet radiation, a full regeneration of the productivity level takes place within 24 hours. In our experiments the system was functioning with the stable estimated productivity for many days (up to two months without interruption). During the process, no biological inhibitions to permanent performance and further prolongation of its life were found. As to the productivity, stability and control, the described biotechnological method may appear to be useful as a link of the closed ecosystem.

摘要

根据许多研究人员的观点,微藻培养物可作为宇宙飞船舱内空气的再生器。为了将微藻用于这些目的,需要有一个在培养过程中具有高生产率的自动装置。该装置包含最少的设备,能够在不降低藻类生产率的情况下无限期地进行藻类培养。满足这些要求的装置(培养器)由作者开发,并将在报告中进行描述。微藻光合系统的稳定性体现在,在紫外线辐射使生物合成受到70%的抑制后,生产力水平在24小时内完全恢复。在我们的实验中,该系统在许多天内(长达两个月不间断)以稳定的估计生产率运行。在此过程中,未发现对其持续运行和进一步延长寿命的生物抑制作用。就生产力、稳定性和控制而言,所描述的生物技术方法可能作为封闭生态系统的一个环节而有用。

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