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A Mathematical Model of Microalgae Growth in Cylindrical Photobioreactor

机译:圆柱形光生物反应器微藻生长的数学模型

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Microalgae are unicellular organisms, which exist individually or in chains or groups but can be utilized in many applications. Researchers have done various efforts in order to increase the growth rate of microalgae. Microalgae have a potential as an effective tool for wastewater treatment, besides as a replacement for natural fuel such as coal and biodiesel. The growth of microalgae can be estimated by using Geider model, which this model is based on photosynthesis irradiance curve (PI-curve) and focused on flat panel photobioreactor. Therefore, in this study a mathematical model for microalgae growth in cylindrical photobioreactor is proposed based on the Geider model. The light irradiance is the crucial part that affects the growth rate of microalgae. The absorbed photon flux will be determined by calculating the average light irradiance in a cylindrical system illuminated by unidirectional parallel flux and considering the cylinder as a collection of differential parallelepipeds. Results from this study showed that the specific growth rate of microalgae increases until the constant level is achieved. Therefore, the proposed mathematical model can be used to estimate the rate of microalgae growth in cylindrical photobioreactor.
机译:微藻是单细胞生物,它们单独存在或链或组,但可以在许多应用中使用。研究人员做了各种努力,以提高微藻的生长速度。微藻具有作为废水处理的有效工具,除了作为煤和生物柴油等天然燃料的替代品。通过使用Geider模型可以估计微藻的生长,该模型基于光合作用辐照曲线(PI曲线)并聚焦在平板上的光生物生物反应器上。因此,在该研究中,基于Geider模型提出了一种用于圆柱形光生物反应器中微藻生长的数学模型。轻度辐照度是影响微藻生长速率的关键部分。通过计算由单向平行通量照射的圆柱形系统中的平均光辐照度并考虑汽缸作为差动平行六面脂的集合来确定吸收的光子通量。本研究结果表明,微藻的比生长速率增加,直至实现恒定水平。因此,所提出的数学模型可用于估计圆柱形光生物反应器中的微藻生长速率。

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