Loubière Karine, Olivo Erell, Bougaran Gael, Pruvost Jérémy, Robert René, Legrand Jack
Laboratoire GEPEA UMR CNRS 6144, CRTT, Boulevard de l'Université, BP 406, 44602 Saint-Nazaire Cedex, France.
Biotechnol Bioeng. 2009 Jan 1;102(1):132-47. doi: 10.1002/bit.22035.
This study deals with the scale of a new photobioreactor for continuous microalgal production in hatcheries. The combination of the state-of-art with the constraints inherent to hatcheries has turned the design into a closed, artificially illuminated and external-loop airlift configuration based on a succession of elementary modules, each one being composed of two transparent vertical interconnected columns. The liquid circulation is ensured pneumatically (air injections) with respect to a swirling motion (tangential inlets). A single module of the whole photobioreactor was built-up to scale its geometry (diameter and length) and to optimize its design (air sparger, tangential inlets). The volumetric productivities were predicted by modeling radiative transfer and growth of Isochrysis affinis galbana (clone Tahiti). The hydrodynamics of the liquid phase was modeled in terms of global flow behavior (circulation and mixing times, Péclet number) and of swirling motion decay along the column (Particle Image Velocimetry). The aeration performances were determined by overall volumetric mass transfer measurements. Continuous cultures of Isochrysis affinis galbana (clone Tahiti) were run in two geometrical configurations, generating either an axial or a swirling flow. Lastly, the definitive options of design are presented as well as a 120-L prototype, currently implemented in a French mollusk hatchery and commercialized.
本研究涉及一种用于孵化场连续微藻生产的新型光生物反应器的规模。将先进技术与孵化场所固有的限制因素相结合,使该设计转变为一种基于一系列基本模块的封闭式、人工照明和外环气升式配置,每个基本模块由两个相互连接的透明垂直柱组成。通过相对于旋转运动(切向入口)进行气动(空气注入)来确保液体循环。构建了整个光生物反应器的单个模块,以确定其几何尺寸(直径和长度)并优化其设计(空气分布器、切向入口)。通过对塔希提等鞭金藻(克隆株)的辐射传输和生长进行建模来预测体积生产力。从整体流动行为(循环和混合时间、佩克莱数)以及沿柱体的旋转运动衰减(粒子图像测速法)方面对液相的流体动力学进行建模。通过整体体积传质测量来确定曝气性能。对塔希提等鞭金藻(克隆株)进行连续培养,采用两种几何配置,分别产生轴向流或旋转流。最后,介绍了最终的设计方案以及一个120升的原型,该原型目前已在一家法国软体动物孵化场实施并实现商业化。