Ammann E C, Fraser-Smith A
Appl Microbiol. 1968 May;16(5):669-72. doi: 10.1128/am.16.5.669-672.1968.
A single culture of Chlorella pyrenoidosa (700 ml) was grown continuously under uniform environmental conditions for a period of 11 months. During this time, the culture remained uncontaminated and its oxygen production, carbon dioxide consumption, and photosynthetic quotient (PQ = CO(2)/O(2)) were monitored on a 24-hr basis. The gas exchange characteristics of the alga were found to be extremely reliable; the average oxygen production was 1.21 +/- 0.03 ml per min, the carbon dioxide consumption was 1.09 +/- 0.03 ml per min, and the PQ was 0.90 +/- 0.01 when changes in both lamp intensity and instrument accuracy were taken into consideration. Such long-term dependability in the production of oxygen, consumption of carbon dioxide, and maintenance of a uniform PQ warrants the use of C. pyrenoidosa in a regenerative life support system for space travel.
将700毫升的蛋白核小球藻单一培养物在均匀的环境条件下连续培养11个月。在此期间,培养物未受污染,并对其氧气产生量、二氧化碳消耗量和光合商(PQ = CO₂/O₂)进行了24小时监测。发现该藻类的气体交换特性非常可靠;考虑到光照强度和仪器精度的变化,平均氧气产生量为每分钟1.21±0.03毫升,二氧化碳消耗量为每分钟1.09±0.03毫升,光合商为0.90±0.01。在氧气产生、二氧化碳消耗以及维持均匀光合商方面如此长期的可靠性,使得蛋白核小球藻有理由被用于太空旅行的再生生命支持系统中。