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首页> 外文期刊>International Journal of Technology >Utilization of Chlorella vulgaris to Fixate a High Concentration of Carbon Dioxide in a Compost-based Medium
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Utilization of Chlorella vulgaris to Fixate a High Concentration of Carbon Dioxide in a Compost-based Medium

机译:利用小球藻固定堆肥培养基中的高浓度二氧化碳

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Massive use of fuels by industry increase carbon dioxide (CO2) emissions significantly. Chlorella vulgaris (C. vulgaris) is well known for its ability to fixate CO2 and synthesize it to a lipid. As industry usually emits high concentrations of CO2, it is necessary to investigate the behavior of microalgae in regard to CO2 inflow. We studied cultivation of C. vulgaris in a photobioreactor (volume 18L) in a compost-basedmedium under illumination at 3000 lux for 90 hours. We show that initial cell density 0.137 g·dm-3 is able to fixate CO2 up to 30.31 g·dm-3· day-1 (93.56%) under a CO2 inflow of 23.80 g·hour-1 with biomass productivity 0.44 g·dm-3· day-1 and lipid yield 0.0795 glipid·gcell-1, and it also shows the potential to fixate carbon dioxide 28.43 g·dm-3·day-1 (31.51%) and produce high lipid amounts (0.0739 g·g-1) under a carbon dioxide inflow 48.17 g·hour-1. Cultivation with a higher initial cell density (0.325 g · dm-3) shows better resistance under carbon dioxide inflow 48.17 g·hour-1 with carbon fixation 37.95 g·dm-3·day-1(58%), biomass production 0.82 g·dm-3·day-1, lipid yield 0.0834 g·g-1, and good potential under carbon dioxide inflow 65.96 g·hour-1. This research shows the potential of C. vulgaris in reducing high concentrations of CO2, which is beneficial for biomass and/or lipid production. These are in turn useful for biodiesel and food supplements. Further study is necessary for adapting this potential on a commercial scale.
机译:工业界大量使用燃料会大大增加二氧化碳(CO2)的排放量。小球藻(C. vulgaris)以固定CO2并将其合成为脂质的能力而闻名。由于工业通常排放高浓度的CO2,因此有必要研究微藻在CO2流入方面的行为。我们研究了在以堆肥为基础的培养基中,在3000 lux的光照下,在光生物反应器(体积18 L)中培养寻常梭状芽胞杆菌90小时。我们显示出初始细胞密度0.137 g·dm-3能够在23.80 g·hour-1的CO2流入量和生物量生产率0.44 g·下固定高达30.31 g·dm-3·day-1(93.56%)的CO2。 dm-3·day-1和脂质产量为0.0795 glipid·gcell-1,还显示出固定二氧化碳28.43 g·dm-3·day-1(31.51%)的潜力并产生大量脂质(0.0739 g· g-1)在二氧化碳流入下48.17 g·小时-1。初始细胞密度较高(0.325 g·dm-3)的栽培在二氧化碳流入48.17 g·hour-1和固碳37.95 g·dm-3·day-1(58%),生物量产生0.82 g的情况下表现出更好的抗性·dm-3·day-1,脂质产量0.0834 g·g-1,在二氧化碳流入65.96 g·hour-1下势能良好。这项研究表明寻常梭状芽胞杆菌在降低高浓度CO2方面的潜力,这对于生物质和/或脂质的生产是有益的。这些反过来又可用于生物柴油和食品补充剂。为了在商业规模上适应这种潜力,需要进行进一步的研究。

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