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Continuous cultivation of Chlorella minutissima 26a in a tube-cylinder internal-loop airlift photobioreactor to support 3G bioreflneries

机译:在筒形内环气举光生物反应器中持续培养小球藻26a,以支持3G生物发酵

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Microalgae Chlorella minutissima 26a was cultivated in a tube-cylinder internal-loop airlift photo-bioreactor under continuous cultivation conditions. The goal was to investigate the influence of different nitrate levels on the growth and composition of microalgae. Three nitrate concentrations (75, 150 and 225 mg L-1) were assessed under a fixed flow rate and the outlet flow was analyzed for concentration of biomass, lipid, carbohydrate and protein. Nitrate concentration at higher level (225 mg L-1) in the medium promoted biomass growth (188.6 mg L-1 d(-1)) and lipid production (92.8 mg L-1 d(-1)), and decreased carbohydrate amount (29.1 mg L-1 d(-1)) without any change in protein content (37.7 mg L-1 d(-1)). Use of tube-cylinder internal-loop airlift photobioreactor in continuous mode could be a promising approach in algal biorefineries so called 3G biorefineries, resulting in high biomass productivity in a simple cultivation system. (C) 2018 Published by Elsevier Ltd.
机译:微藻小球藻小球藻26a在连续培养条件下在筒形内环气举光生物反应器中培养。目的是研究不同硝酸盐水平对微藻生长和组成的影响。在固定流速下评估了三种硝酸盐浓度(75、150和225 mg L-1),并分析了出口流量中生物质,脂质,碳水化合物和蛋白质的浓度。培养基中较高浓度的硝酸盐(225 mg L-1)促进了生物量的增长(188.6 mg L-1 d(-1))和脂质的产生(92.8 mg L-1 d(-1)),并减少了碳水化合物的含量(29.1 mg L-1 d(-1)),蛋白质含量没有任何变化(37.7 mg L-1 d(-1))。在藻类生物精炼厂(所谓的3G生物精炼厂)中,以连续模式使用筒形内环气举光生物反应器可能是一种有前途的方法,从而在简单的栽培系统中实现了高生物量生产率。 (C)2018由Elsevier Ltd.发布

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