Department of Biotechnology, Iranian Research Organization for Science and Technology (IROST), P. O. Box 3353-5111, Tehran, Iran.
Environ Sci Pollut Res Int. 2023 Jul;30(31):76263-76282. doi: 10.1007/s11356-023-27644-4. Epub 2023 May 29.
Cultivation of microalgae and controlling its growth and performance in closed photobioreactors (PBRs) are easier than open pond systems for wastewater treatment. The performance of PBRs is influenced by geometry, hydrodynamic behavior, and mass transfer. Horizontal and vertical configurations as common designs of PBR are reviewed based on their features, advantages, and disadvantages. However, vertically operated PBRs like bubble columns are preferably used for utility-scale applications of microalgae-based processes. Moreover, an appropriate reactor design reduces the inhibitory effect of dissolved oxygen concentration produced by microalgae and consequently increases the level of available CO in the medium. Medium properties, superficial gas velocity, gas holdup, bubble sizes, shear stress, mixing time, sparger design, and the ratio of inner diameter to effective height are shown to influence the overall volumetric mass transfer coefficient (Ka) and PBR's performance. The vertical PBRs like bubble columns provide a high mass transfer, a short liquid circulation time, and a long frequency of light/dark cycle for utility application of microalgae. Different flow regimes are obtained in PBRs based on the gas flow rate, inner diameter, and medium properties. Hydraulic retention time as the main operational parameter is determined in a batch mode for continuous wastewater treatment.
与开放式池塘系统相比,在封闭式光生物反应器(PBR)中培养微藻并控制其生长和性能更为容易。PBR 的性能受几何形状、流体动力学行为和质量传递的影响。基于其特点、优点和缺点,对水平和垂直两种常见的 PBR 设计进行了综述。然而,像鼓泡塔这样垂直操作的 PBR 更适合用于基于微藻的工艺的实用规模应用。此外,适当的反应器设计可以减少微藻产生的溶解氧浓度的抑制作用,从而增加介质中可用 CO2 的水平。介质特性、表观光气速度、气含率、气泡尺寸、剪切应力、混合时间、喷咀设计和内径与有效高度比被证明会影响总体容积传质系数(Ka)和 PBR 的性能。像鼓泡塔这样的垂直 PBR 为微藻的实用应用提供了高传质、短液体循环时间和长的光/暗循环频率。根据气体流速、内径和介质特性,在 PBR 中获得不同的流动状态。水力停留时间作为主要操作参数,在批处理模式下确定,用于连续处理废水。