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The Effect of Carbon Dioxide Concentration and the Dimension of Photobioreactor on the Growth of Microalgae Nannochloropsis sp.

机译:二氧化碳浓度与光生物反应器的尺寸对微藻Nannchloropsis Sp生长的影响。

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Microalgae is one of the organisms that can be considered ideal and potential for raw materials for bioenergy production because the lipid content in microalgae is relatively high. Microalgae are aquatic organisms that produce complex organic compounds from inorganic molecules using carbon dioxide as a source of carbon, and sunlight for energy supply. Fixation of microalgae-CO_2 has a potential advantage compared to other carbon capture and storage approaches, such as wide distribution, high photosynthesis rates, good environmental adaptability, and ease of operation. The rate of growth and capture of CO_2 from microalgae is influenced by gas flow velocity and CO_2 concentration. This study quantitatively investigated the effect of inside diameter (ID) of photobioreactor and CO_2 concentration on the growing rates of Nannochloropsis sp. microalgae cultivated in photo-bioreactors. Photobioreactor ID effects to the value of the Reynolds number. The high value of Reynold's number makes the microalgae damaged and dead. The optimal CO_2 concentration for Nannochloropsis sp. growth is 10%.
机译:微藻是一种生物体的生物之一,可以被认为是生物能源生产的原料的理想和潜力,因为微藻中的脂质含量相对较高。微藻是水生生物,其从使用二氧化碳作为碳源的无机分子产生复杂的有机化合物,以及用于能量供应的阳光。与其他碳捕获和储存方法相比,微血糖-CO_2的固定具有潜在的优势,例如广泛的分布,高光合速率,良好的环境适应性以及易于操作。来自微藻的生长速率和捕获的CO_2受气体流速和CO_2浓度的影响。该研究定量地研究了光生物反应器和CO_2浓度的内径(ID)对Nannchloropsis Sp的生长速率的影响。微藻在光生物反应器中栽培。 PhotoBioreActor ID效果对雷诺数的值。雷诺数的高价值使得微藻损坏和死亡。 Nannochloropsis sp的最佳CO_2浓度。增长率为10%。

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