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首页> 外文期刊>Journal of Biotechnology >Direct approach for bioprocess optimization in a continuous flat-bed photobioreactor system
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Direct approach for bioprocess optimization in a continuous flat-bed photobioreactor system

机译:连续平板光生物反应器系统中生物工艺优化的直接方法

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摘要

Application of photosynthetic micro-organisms, such as cyanobacteria and green algae, for the carbon neutral energy production raises the need for cost-efficient photobiological processes. Optimization of these processes requires permanent control of many independent and mutably dependent parameters, for which a continuous cultivation approach has significant advantages. As central factors like the cell density can be kept constant by turbidostatic control, light intensity and iron content with its strong impact on productivity can be optimized. Both are key parameters due to their strong dependence on photosynthetic activity. Here we introduce an engineered low-cost 5 L flat-plate photobioreactor in combination with a simple and efficient optimization procedure for continuous photo-cultivation of microalgae. Based on direct determination of the growth rate at constant cell densities and the continuous measurement of O2 evolution, stress conditions and their effect on the photosynthetic productivity can be directly observed.
机译:将光合作用微生物(例如蓝细菌和绿藻)用于碳中性能源生产,因此需要具有成本效益的光生物过程。这些过程的优化需要对许多独立且可变依赖的参数进行永久控制,因此连续培养方法具有明显的优势。由于可以通过紊流控制使诸如细胞密度之类的中心因素保持恒定,因此可以优化光强度和铁含量,从而对生产率产生重大影响。两者都是关键参数,因为它们强烈依赖于光合作用。在这里,我们介绍一种经过工程设计的低成本5 L平板光生物反应器,结合简单有效的优化程序,可对微藻进行连续光培养。基于在恒定的细胞密度下直接确定生长速率和连续测量O2排放量的基础上,可以直接观察到胁迫条件及其对光合生产力的影响。

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