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首页> 外文期刊>The Science of the Total Environment >Improving light distribution and light/dark cycle of 900 L tangential spiral -flow column photobioreactors to promote CO_2 fixation with Arthrospira sp. cells
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Improving light distribution and light/dark cycle of 900 L tangential spiral -flow column photobioreactors to promote CO_2 fixation with Arthrospira sp. cells

机译:改善900 L切向螺旋流色谱柱光生物反应器的光分布和明/暗循环,以促进节肢螺旋藻对CO_2的固定。细胞

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The light distribution and light/dark cycle were improved in 900 L tangential spiral-flow column photobioreactors (TSCP) to promote CO_2 fixation with Arthrospira sp. cells. Solar irradiation model was employed in CFD simulation to investigate light distribution and light/dark cycle in flow field composed of culture medium, CO_2 bubbles and Arthrospira sp. cells under actual sunlight irradiation considering geolocation and time. An accurate way to divide light/dark zone based on saturate light intensity and light intensity field was adopted for the first time. When Arthrospira sp. cell concentration increased from 0.1 to 0.9 g/L, light/dark cycle frequency of cells firstly increased from 0.650 Hz to 0.868 Hz and then decreased to 0.117 Hz. Intracellular chlorophyll a content and carotenoids content of Arthrospira sp. cells in TSCP were 6% and 41% higher than those in conventional bubble column photobioreactor. This promoted cellular photosynthesis and stress resistance, which contributed to increase CO_2 fixation rate of Arthrospira sp. cells by 59%. When CO_2 aeration rate, CO_2 volume concentration, and circulating pump power were 0.210 L/min, 15%, and 30 W, chlorophyll a content, helix pitch, and CO_2 fixation rate of Arthrospira sp. cells all reached peak values of 8.769 mg/L, 78.26 μm and 0.358 g/L/d, respectively.
机译:900 L切向螺旋流色谱柱光生物反应器(TSCP)改善了光分布和明/暗循环,从而促进了Arthrospira sp对CO_2的固定。细胞。在CFD模拟中,采用太阳辐射模型研究了由培养基,CO_2气泡和节肢螺旋藻组成的流场中的光分布和明/暗循环。考虑到地理位置和时间,在实际阳光照射下的太阳能电池。首次采用了基于饱和光强度和光强度场划分明暗区域的准确方法。当节肢动物sp。细胞浓度从0.1 g / L增加到0.9 g / L,光/暗循环频率首先从0.650 Hz增加到0.868 Hz,然后降低到0.117 Hz。关节炎螺旋藻的细胞内叶绿素a含量和类胡萝卜素含量。 TSCP中的细胞比常规气泡柱光生物反应器中的细胞高6%和41%。这促进了细胞的光合作用和胁迫抗性,这有助于增加节肢螺旋藻的CO_2固定率。单元数减少了59%。当CO_2充气速率,CO_2体积浓度和循环泵功率为0.210 L / min,15%和30 W时,节螺旋藻的叶绿素a含量,螺旋螺距和CO_2固定率。所有细胞的峰值分别为8.769 mg / L,78.26μm和0.358 g / L / d。

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