Comparison of Light Intensity Effect on Microalgal Growth in Cactus-like and Cylindrical Photo Bioreactors

Processes Pub Date : 2024-08-08 DOI:10.3390/pr12081664
Rayan Hijazi, Jihane Rahbani Mounsef, H. Kanaan
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Abstract

Improving photobioreactor performance for microalgae cultivation has been the aim of many researchers over the past few years. One of the primary challenges associated with existing photobioreactors is light penetration. An effective photobioreactor design should maximize light penetration, ensuring uniform illumination throughout the reactor. This study aims to assess the impact of light intensity on microalgal growth from the perspective of energy efficiency and productivity in two photobioreactors. A novel cactus-like and a cylindrical photobioreactor were designed and fabricated using three-dimensional printing technology. These two photobioreactors were used to cultivate two strains of microalgae. The novel photobioreactor achieved a maximum biomass productivity of 1 g/L/d and a maximum energy efficiency of 0.31 g/d/kWh. The cylindrical photobioreactor reached a maximum biomass productivity of 0.74 g/L/d and energy efficiency of 0.22 g/d/kWh. The increase in biomass productivity can be linked to enhancements in the photobioreactor’s surface-to-volume ratio and better light utilization.
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比较光强对仙人掌状和圆柱形光生物反应器中微藻生长的影响
在过去几年中,许多研究人员一直致力于提高微藻培养的光生物反应器性能。现有光生物反应器面临的主要挑战之一是光穿透。有效的光生物反应器设计应最大限度地提高光穿透率,确保整个反应器内光照均匀。本研究旨在从两个光生物反应器的能效和生产率角度评估光照强度对微藻类生长的影响。利用三维打印技术设计并制造了一个新颖的仙人掌状和一个圆柱形光生物反应器。这两个光生物反应器用于培养两种微藻类。新型光生物反应器的最大生物量生产率为 1 克/升/天,最大能效为 0.31 克/天/千瓦时。圆柱形光生物反应器的最大生物量生产率为 0.74 克/升/天,能效为 0.22 克/天/千瓦时。生物质生产率的提高与光生物反应器表面体积比的提高和更好的光利用率有关。
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