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首页> 外文期刊>Biochemical Engineering Journal >Mathematical modeling of light energy flux balance in flat panel photobioreactor for Botryococcus braunii growth, CO2 biofixation and lipid production under varying light regimes
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Mathematical modeling of light energy flux balance in flat panel photobioreactor for Botryococcus braunii growth, CO2 biofixation and lipid production under varying light regimes

机译:平板光生物体反应器的光能通量平衡的数学建模Botrycoccus Braunii生长,CO2生物混合和不同光长的脂质生产

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Light is the most significant parameter for microalgal growth and light distribution inside the flat panel photobioreactor is critical to assess the photosynthetic productivity of Botryococcus braunii. In algal photobioreactors, self shading of the microalgal cells reduces the effective light penetration. The local light intensity inside the photobioreactor is essential for efficient designs. In this study B. braunii was grown in flat panel photobioreactor under varying light intensity. Maximum biomass concentration and maximum specific growth rate were 1.8 g L-1 and 1.344 d(-1) respectively at light intensity of 800 -mol m(-2) s(-1). The maximum lipid content and lipid yield were 27.37% and 0.146 g mol photons-(1) respectively at 450 -mol m(-2) s(-1) light intensity. The results reported in this study is used with the radiative transport equation (RTE) to accurately predict and optimize light transport in photobioreactors for biomass and lipid production. Finally, simulation of RTE in flat panel photobioreactor also suggests, at cell concentration (0.41 g L-1) multiple scattering and diffusive reflections reduced the light penetration. Based on these results, optimal conditions for lipid production were found to be at mid level light intensity i.e. 450 -mol m(-2) s(-1) which allows maximizing the use of light energy by the cells to produce maximum lipid. (C) 2018 Elsevier B.V. All rights reserved.
机译:光是微藻生长的最重要参数,并且平板光电生物反应器内部的微观生长和光分布对于评估Botryococcus Braunii的光合作用率至关重要。在藻类光生物反应器中,微观电池的自阴影降低了有效的光渗透。光生物反应器内的局部光强度对于有效的设计至关重要。在本研究中,B. Braunii在不同光强度下的平板光生物反应器中生长。在光强度为800-Mol M(-2)S(-1)的光强度下,最大生物质浓度和最大比生长速率分别为1.8g L-1和1.344d(-1)。在450 -MOLM(-2)的光强度下,最大脂质含量和脂质产率分别为27.37%和0.146g mol光子 - (1)。本研究报告的结果与辐射传输方程(RTE)一起使用,以准确地预测和优化用于生物质和脂质生产的光生物体反应器中的光传输。最后,在平板上的rte模拟PhotoBioreActor也表明,在细胞浓度(0.41g L-1),多次散射和扩散反射降低了光穿透。基于这些结果,发现脂质生产的最佳条件是在中间水平光强度I.E.450-Mol M(-2)S(-1),其允许通过细胞最大化光能的使用以产生最大脂质。 (c)2018 Elsevier B.v.保留所有权利。

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