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Optimizing Microalgal Production in Raceway Systems

机译:优化跑道系统中的微藻生产

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摘要

The industrial exploitation of microalgae is characterized by the production of high-value compounds. Optimization of the performance of microalgae culture systems is essential to render the process economically viable. For raceway systems, the optimization, based on optimal control theory is rather challenging, because the process is by essence periodically forced and, as a consequence, optimization must be carried out in a periodic framework. In this article, we propose a simple operational criterion for raceway systems that when integrated in a strategy of closed-loop control allows attaining biomass productivities very near to the theoretical maximal productivities. The strategy developed was tested numerically using a mathematical model of microalgae growth in raceways. The model takes into account the temporal variation of the environmental variables temperature and light intensity and their influence on microalgae growth.
机译:微藻类的工业开发的特点是生产高价值的化合物。微藻培养系统性能的优化对于使该方法在经济上可行是至关重要的。对于滚道系统,基于最佳控制理论的优化具有相当大的挑战性,因为该过程本质上是周期性强制执行的,因此,必须在周期性框架内进行优化。在本文中,我们提出了一种用于滚道系统的简单操作准则,该准则可集成到闭环控制策略中,从而使生物量生产率非常接近理论上的最大生产率。使用赛道中微藻生长的数学模型对开发的策略进行了数值测试。该模型考虑了环境变量温度和光照强度的时间变化及其对微藻生长的影响。

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