Real-time studies on microalgae under microgravity


Autoria(s): Wang, GH; Li, GB; Li, DH; Liu, YD; Song, LR; Tong, GH; Liu, XM; Cheng, ET
Data(s)

01/07/2004

Resumo

Using remote sensing technique, we investigated real-time Nostoc sphaeroides Kiltz (Cyanobacterium) in Closed System under microgravity by SHENZHOU-2 spacecraft in January 2001. The experiments had 1g centrifuges in space for control and ground control group experiments were also carried out in the same equipments and under the same controlled condition. The data about the population growth of Nostoc sp. of experiments and temperature changes of system were got from spacecraft every minute. From the data, we can find that population growth of Nostoc sp. in microgravity group was higher than that of other groups in space or on ground, even though both the control I g group in space and I g group on ground indicated same increasing characteristics in experiments. The growth rate of 1.4g group (centrifuged group on ground) was also promoted during experiment. The temperature changes of systems are also affected by gravity and light. Some aspects about those differences were discussed. From the discussion of these results during experiment, it can be found that gravity is the major factor to lead to these changes. (C) 2004 Elsevier Ltd. All rights reserved.

Using remote sensing technique, we investigated real-time Nostoc sphaeroides Kiltz (Cyanobacterium) in Closed System under microgravity by SHENZHOU-2 spacecraft in January 2001. The experiments had 1g centrifuges in space for control and ground control group experiments were also carried out in the same equipments and under the same controlled condition. The data about the population growth of Nostoc sp. of experiments and temperature changes of system were got from spacecraft every minute. From the data, we can find that population growth of Nostoc sp. in microgravity group was higher than that of other groups in space or on ground, even though both the control I g group in space and I g group on ground indicated same increasing characteristics in experiments. The growth rate of 1.4g group (centrifuged group on ground) was also promoted during experiment. The temperature changes of systems are also affected by gravity and light. Some aspects about those differences were discussed. From the discussion of these results during experiment, it can be found that gravity is the major factor to lead to these changes. (C) 2004 Elsevier Ltd. All rights reserved.

Identificador

http://ir.ihb.ac.cn/handle/152342/9450

http://www.irgrid.ac.cn/handle/1471x/59238

Idioma(s)

英语

Fonte

G.H. Wang; G.B. Li; D.H. Li; Y.D. Liu; L.R. Song; G.H. Tong; X.M. Liu; E.T. Cheng.Real-time studies on microalgae under microgravity,ACTA ASTRONAUTICA,2004,55(2):131-137

Palavras-Chave #Engineering #Aerospace #remote-sensing #real-time #Nostoc sphaeroides Kutz #microgravity #population growth
Tipo

期刊论文