论文标题
一种简单可靠的公式,用于评估光生反应器中最大体积生产率
A Simple and Reliable Formula for Assessment of Maximum Volumetric Productivities in Photobioreactors
论文作者
论文摘要
本文建立并讨论了一种简单但通用和预测性的分析公式的一致性和适用性,从而可以轻松地评估具有或多或少具有15个偏差的多种光生反应器中的最大体积生物量增长率(生产率)。实验验证是对截然不同的概念和设计的光生反应器进行的,培养了蓝细菌量,在大量的体积和半球形入射光通量上进行。根据热力学的第一个原则和高斯 - 遗体质学的原则,它似乎完全独立于材料相的特征(作为反应器的类型,混合物,生物质浓度),证明了所提出的公式的实际实用性。理论上讨论了它具有最高(仅)光生反应器的最高(仅)动态反应器(仅)培养许多不同的光自养家菌株(蓝细菌,绿藻,真核生物微藻)的能力,但在理论上进行了讨论,但实验结果已报告给对作者的未来作品或其他在科学兴趣社区中的作用。
This paper establishes and discusses the consistency and the range of applicability of a simple, but general and predictive analytical formula, enabling to easily assess the maximum volumetric biomass growth rates (the productivities) in several kinds of photobioreactors with more or less 15 percents of deviation. Experimental validations are performed on photobioreactors of very different conceptions and designs, cultivating the cyanobacterium Arthrospira platensis, on a wide range of volumes and hemispherical incident light fluxes. The practical usefulness of the proposed formula is demonstrated by the fact that it appears completely independent of the characteristics of the material phase (as the type of reactor, the kind of mixing, the biomass concentration), according to the first principle of thermodynamics and to the Gauss-Ostrogradsky theorem. Its ability to give the maximum (only) kinetic performance of photobioreactors cultivating many different photoautotrophic strains (cyanobacteria, green algae, eukaryotic microalgae) is theoretically discussed but experimental results are reported to a future work of the authors or to any other contribution arising from the scientific community working in the field of photobioreactor engineering and potentially interested by this approach.