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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Design of microalgal biomass production in a continuous photobioreactor: An integrated experimental and modeling approach
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Design of microalgal biomass production in a continuous photobioreactor: An integrated experimental and modeling approach

机译:连续光生物反应器中微藻生物量生产的设计:集成的实验和建模方法

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摘要

The industrial production of microalgae in continuous photobioreactors (PBRs) was investigated using an integrated experimental-modeling approach. A lab-scale PBR was assembled for microalgae cultivation, in the shape of thin-layer flat-vertical panels of 250 mL, in order to minimize the effect of cell self-shading and optimize the light use. Two microalgal species, one from marine and the other from freshwater environments, were cultivated in continuous mode in this PBR. They were grown under non-limiting CO2 supply and with excess nitrogen and micronutrients availability. Steady-state operating conditions were achieved and the effect of partial recycle on biomass concentration and productivity was investigated. Light energy was supplied at a constant rate, and the net flux of photons absorbed by the culture was measured and correlated to the average internal biomass concentration. The reactor performances were evaluated in terms of photosynthetic efficiency, and the possibility of increasing the productivity of the system was discussed. The light attenuation along the culture depth was modeled to fit the light absorption and backscattering coefficients. The growth model proposed by Pruvost et al. (2011b) was applied to reproduce the experimental behavior of the lab-scale PBR and to simulate the performances of a pilot unit both without and with recycle, i.e. as a function of the axial mixing, under both transient and steady-state conditions. The optimized model parameters were used to predict the microalgal growth in a pilot-scale closed raceway-pond PBR.
机译:使用集成的实验建模方法研究了连续光生物反应器(PBR)中微藻的工业生产。为了最小化细胞自遮蔽的影响并优化光的使用,组装了实验室规模的PBR,用于250毫升的薄层平垂直平板形状的微藻培养。在该PBR中以连续模式培育了两种微藻物种,一种来自海洋,另一种来自淡水环境。它们在非限制性的二氧化碳供应下生长,并具有过量的氮和微量营养素。实现了稳态操作条件,并研究了部分再循环对生物质浓度和生产率的影响。以恒定速率提供光能,并测量培养物吸收的光子净通量,并将其与内部平均生物质浓度相关联。根据光合作用效率评估反应器性能,并讨论了提高系统生产率的可能性。对沿培养深度的光衰减进行建模,以适应光吸收和反向散射系数。 Pruvost等人提出的增长模型。 (2011b)应用于重现实验室规模PBR的实验行为并模拟在不带循环和带循环的情况下中试单元的性能,即作为轴向混合的函数在瞬态和稳态条件下的性能。优化的模型参数用于预测中试规模的封闭水道池PBR中的微藻生长。

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