首页> 外文期刊>Journal of Biotechnology >Biofixation of carbon dioxide by Spirulina sp. and Scenedesmus obliquus cultivated in a three-stage serial tubular photobioreactor
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Biofixation of carbon dioxide by Spirulina sp. and Scenedesmus obliquus cultivated in a three-stage serial tubular photobioreactor

机译:螺旋藻对二氧化碳的生物固定。三阶段串联管状光生物反应器中培养斜生和斜生栅藻

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The increase in the concentration of atmospheric carbon dioxide is considered to be one of the main causes of global warming. As estimated by the Intergovernmental Panel on Climate Change (IPCC) criteria, about 10-15% of the gases emitted from the combustion coal being in the form of carbon dioxide. Microalgae and cyanobacteria can contribute to the reduction of atmospheric carbon dioxide by using this gas as carbon source. We cultivated the Scenedesmus obliquus and Spirulina sp. at 30 degrees C in a temperature-controlled three-stage serial tubular photobioreactor and determined the resistance of these organisms to limitation and excess of carbon dioxide and the capacity of the system to fix this greenhouse gas. After 5 days of cultivation under conditions of carbon limitation both organisms showed cell death. Spirulina sp. presenting better results for all parameters than S. obliquus. For Spirulina sp. the maximum specific growth rate and maximum productivity was 0.44 d(-1), 0.22 g L(-1)d(-1), both with 6% (v/v) carbon dioxide and maximum cellular concentration was 3.50 g L(-1) with 12% (v/v) carbon dioxide. Maximum daily carbon dioxide biofixation was 53.29% for 6% (v/v) carbon dioxide and 45.61% for 12% carbon dioxide to Spirulina sp. corresponding values for S. obliquus being 28.08% for 6% (v/v) carbon dioxide and 13.56% for 12% (v/v) carbon dioxide. The highest mean carbon dioxide fixation rates value was 37.9% to Spirulina sp. in the 6% carbon dioxide runs.
机译:大气中二氧化碳浓度的增加被认为是全球变暖的主要原因之一。根据政府间气候变化专门委员会(IPCC)的标准估算,燃煤排放的气体中约有10-15%是二氧化碳。微藻和蓝细菌可以通过使用这种气体作为碳源来减少大气中的二氧化碳。我们栽培了斜生Scenedesmus和螺旋藻Spirulina sp。在温度可控的三级串联管状光生物反应器中于30摄氏度下进行,并确定了这些生物体对二氧化碳的限制和过量的抵抗力以及该系统固定这种温室气体的能力。在碳限制条件下培养5天后,两种生物均显示出细胞死亡。螺旋藻在所有参数上都比斜边链菌有更好的结果。对于螺旋藻最大比生长速率和最大生产率为0.44 d(-1),0.22 g L(-1)d(-1),均含6%(v / v)二氧化碳,最大细胞浓度为3.50 g L(- 1)使用12%(v / v)的二氧化碳。螺旋藻对6%(v / v)二氧化碳的最大每日二氧化碳生物固定率为53.29%,对于12%二氧化碳为45.61%。斜纹链球菌的相应值对于6%(v / v)的二氧化碳是28.08%,对于12%(v / v)的二氧化碳是13.56%。螺旋藻的最高平均二氧化碳固定率值为37.9%。在6%的二氧化碳中运行。

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