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Optimisation of cultivation parameters in photobioreactors for microalgae cultivation using the A-stat technique

机译:使用A-stat技术优化用于微藻培养的光生物反应器中的培养参数

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Light availability inside the reactor is often the bottleneck in microalgal cultivation and for this reason much attention is being given to light limited growth kinetics of microalgae, aiming at the increase of productivity in photobioreactors. Steady-state culture characteristics are commonly used for productivity optimisation and for cell physiology studies in continuous cultures, and are normally achieved using chemostat cultivations. In the present study, we investigated the applicability of a new and dynamic cultivation method called acceleration-stat (A-stat) to microalgae cultivations where light is the limiting substrate. In the A-stat, the dilution rate is increased at a constant rate. This acceleration rate should be a compromise between a short cultivation time, in order to make it a fast process, and the metabolic adaptation rate of the microorganism to changes in the environment. Simulations of the A-stat were done with different acceleration rates to have an indication of the best rate to use. An A-stat was performed in a pilot plant bubble column (65 1) with Dunaliella tertiolecta as a model organism, and results showed that a pseudo steady state was maintained throughout the experiment. From this work, it was concluded that the A-stat can be used as a fast and accurate tool to determine kinetic parameters and to optimise any specific type of photobioreactor.
机译:反应器内部的光利用率通常是微藻培养的瓶颈,因此,人们越来越关注微藻的光受限生长动力学,旨在提高光生物反应器的生产率。稳态培养特性通常用于生产率优化和连续培养中的细胞生理研究,通常使用恒化培养来实现。在本研究中,我们研究了一种新的动态培养方法,称为加速状态(A-stat),适用于以光为限制基质的微藻培养。在A-stat中,稀释率以恒定速率增加。为了加快培养速度,应在较短的培养时间与微生物对环境变化的代谢适应率之间做出权衡。 A-stat的模拟是在不同的加速度下完成的,以表明使用的最佳速度。在中试植物泡状柱(65 1)中以杜氏杜氏藻为模型生物进行了A-stat分析,结果表明在整个实验过程中都保持了伪稳态。从这项工作得出的结论是,A-stat可用作确定动力学参数和优化任何特定类型的光生物反应器的快速准确的工具。

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