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Hurdles and challenges for modelling and control of microalgae for CO_2 mitigation and biofuel production

机译:用于CO_2缓解和生物燃料生产微藻造型和控制的障碍和挑战

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Oleaginous microalgae are seen as a potential major biofuel producer in the future since, under conditions of nitrogen deprivation, they can contain high amounts of lipids, while they consume CO_2 from power plants. These photosynthetic microorganisms are however rather different from the microorganisms usually used in biotechnology. In particular, predicting the behaviour of microalgal based processes is delicate because of the strong interaction between biology (microalgal development and respiration), and physics (light attenuation and hydrodynamics). This paper reviews existing models, and in particular Droop Model which has been widely used to predict microalgal behaviour under nutrient limitation. It details a model for photobioreactors or raceways, when both light and nutrients are limiting. The challenges and hurdles to improve photobioreactor modelling and control in order to optimise biomass or biofuel production are then discussed.
机译:未来,含有含量的微藻是潜在的生物燃料生产商,因为在氮剥夺条件下,它们可以含有大量的脂质,而它们从发电厂中消耗CO_2。然而,这些光合微生物与通常用于生物技术中使用的微生物不同。特别是,由于生物学(微藻发育和呼吸)和物理(光衰减和流体动力学)之间的强相互作用,预测基于微藻的过程的行为是微妙的。本文综述了现有的模型,特别是随着养分限制的广泛用于预测微藻行为的典型模型。它详细介绍了光生物反应器或滚道的模型,当光线和营养素都是限制性的。然后讨论了改善光生物反应器建模和控制以优化生物质或生物燃料生产的挑战和障碍。

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