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首页> 外文期刊>Journal of Applied Phycology >Coupling a simple irradiance description to a mechanistic growth model to predict algal production in industrial-scale solar-powered photobioreactors
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Coupling a simple irradiance description to a mechanistic growth model to predict algal production in industrial-scale solar-powered photobioreactors

机译:将简单的辐照度描述与机械生长模型耦合,以预测工业规模的太阳能光生物反应器中的藻类产量

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摘要

Various innovative photobioreactor designs have been proposed to increase production of algae-derived biomass. Computer models are often employed to test these designs prior to construction. In the drive to optimise conversion of light energy to biomass, efforts to model the profile of irradiance levels within a microalgal culture can lead to highly complex descriptions which are computationally demanding. However, there is a risk that this effort is wasted if such optic models are coupled to overly simplified descriptions of algal physiology. Here we demonstrate that a suitable description of microalgal physiology is of primary significance for modelling algal production in photobioreactors. For the first time, we combine a new and computationally inexpensive model of irradiance to a mechanistic description of algal growth and test its applicability to modelling biofuel production in an advanced photobioreactor system. We confirm the adequacy of our approach by comparing the predictions of the model against published experimental data collected over a 2 A 1/2 -year period and demonstrate the effectiveness of the mechanistic model in predicting long-term production rates of bulk biomass and biofuel feedstock components at a commercially relevant scale. Our results suggest that much of the detail captured in more complicated irradiance models is indeed wasted as the critical limiting procedure is the physiological description of the conversion of light energy to biomass.
机译:已经提出了各种创新的光生物反应器设计以增加藻类衍生的生物质的产量。在构建之前,通常使用计算机模型来测试这些设计。在优化将光能转换为生物质的过程中,对微藻培养物中辐照度水平进行建模的工作可能会导致描述非常复杂,这在计算上是需要的。然而,如果将这样的光学模型与藻类生理的过度简化的描述相结合,就有浪费这种努力的风险。在这里,我们证明了对微藻生理学的适当描述对于在光生物反应器中建模藻类生产具有重要意义。首次,我们将新的,计算上便宜的辐照度​​模型与藻类生长的机理描述相结合,并测试了其在先进的光生物反应器系统中对生物燃料生产进行建模的适用性。通过将模型的预测与在2 A 1/2年的时间内收集的已发布实验数据进行比较,我们确定了该方法的适当性,并证明了该机理模型在预测散装生物质和生物燃料原料的长期生产率方面的有效性商业规模的组件。我们的结果表明,在更复杂的辐照度模型中捕获的许多细节确实被浪费了,因为关键的限制程序是将光能转化为生物质的生理描述。

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