首页> 外文期刊>Latvian Journal of Physics and Technical Sciences >Influence of Light Intensity and Temperature on Cultivation of Microalgae Desmodesmus Communis in Flasks and Laboratory-Scale Stirred Tank Photobioreactor
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Influence of Light Intensity and Temperature on Cultivation of Microalgae Desmodesmus Communis in Flasks and Laboratory-Scale Stirred Tank Photobioreactor

机译:光强度和温度对培养皿和实验室规模搅拌槽光生物反应器中微藻去粘藻培养的影响

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Optimization of the microalgae cultivation process and of the bioprocess in general traditionally starts with cultivation experiments in flasks. Then the scale-up follows, when the process from flasks is transferred into a laboratory-scale bioreactor, in which further experiments are performed before developing the process in a pilot-scale reactor. This research was done in order to scale-up the process from a 0.4 1 shake flask to a 4.0 1 laboratory-scale stirred-tank photobioreactor for the cultivation of Desmodesmus (D.) communis microalgae. First, the effect of variation in temperature (21-29 oC) and in light intensity (200-600 μmol m-2s-1) was studied in the shake-flask experiments. It was shown that the best results (the maximum biomass concentration of 2.72 g 1-1 with a specific growth rate of 0.65 g g-1d-1) can be achieved at the cultivation temperature and light intensity being 25 °C and 300 μmol m2s-1, respectively. At the same time, D. communis cultivation under the same conditions in stirred-tank photobioreactor resulted in average volumetric productivities of biomass due to the light limitation even when the light intensity was increased during the experiment (the maximum biomass productivity 0.25 g 1-1d-1; the maximum biomass concentration 1.78 g 1-1).
机译:通常,通常在烧瓶中进行培养实验来优化微藻培养过程和生物过程。然后,当将烧瓶中的过程转移到实验室规模的生物反应器中时,按比例放大。在中试规模的反应器中开发该过程之前,需要进行进一步的实验。进行这项研究的目的是将过程从0.4 1摇瓶扩大到4.0 1实验室规模的搅拌罐光生物反应器,以培养Desmodesmus(D.)communis微藻。首先,在摇瓶实验中研究了温度(21-29 oC)和光强度(200-600μmolm-2s-1)变化的影响。结果表明,在25°C的光照强度和300μmolm2s的光照强度下,可获得最佳结果(最大生物量浓度为2.72 g 1-1,比生长速率为0.65 g g-1d-1)。 -1。同时,即使在实验过程中增加了光强度,在相同条件下在搅拌罐光生物反应器中进行的石cultivation培养也由于光的限制而导致了平均生物量的容积生产率(最大生物量生产率0.25 g 1-1d -1;最大生物质浓度1.78 g 1-1)。

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