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Enhancing microalga Chlorella sorokiniana CY-1 biomass and lipid production in palm oil mill effluent (POME) using novel-designed photobioreactor

机译:使用新颖的光生物反应器增强棕榈油磨流出物(PAME)的微藻噬菌体索氏菌菌Cy-1生物量和脂质生产

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摘要

Chlorella sorokiniana CY-1 was cultivated using palm oil mill effluent (POME) in a novel-designed photobioreactor (NPBR) and glass-made vessel photobioreactor (PBR). The comparison was made on biomass and lipid productions, as well as its pollutants removal efficiencies. NPBR is transparent and is developed in thin flat panels with a high surface area per volume ratio. It is equipped with microbubbling and baffles retention, ensuring effective light and CO2 utilization. The triangular shape of this reactor at the bottom serves to ease microalgae cell harvesting by sedimentation. Both biomass and lipid yields attained in NPBR were 2.3–2.9 folds higher than cultivated in PBR. The pollutants removal efficiencies achieved were 93.7% of chemical oxygen demand, 98.6% of total nitrogen and 96.0% of total phosphorus. Mathematical model revealed that effective light received and initial mass contributes toward successful microalgae cultivation. Overall, the results revealed the potential of NPBR integration in Chlorella sorokiniana CY-1 cultivation, with an aim to achieve greater feasibility in microalgal-based biofuel real application and for environmental sustainability.
机译:小球藻sorokiniana CY-1以一种新颖的设计光生物反应器(NPBR)和玻璃制的容器中光生物反应器(PBR)使用棕榈油磨流出物(POME)培养。对生物质和脂质制作的比较,以及其污染物去除效率。 NPBR是透明的,在薄的平板电池板中开发,每个体积比具有高表面积。它配备了微泡和挡板保留,确保有效的光和二氧化碳利用。该底部的该反应器的三角形形状用于通过沉降容易地进行微藻电池收获。在NPBR中获得的生物质和脂质产率在PBR中培养的2.3-2.9倍。污染物去除效率占化学需氧量的93.7%,占总氮的98.6%,占总磷的96.0%。数学模型揭示了所接受的有效光和初始质量有助于成功的微藻培养。总体而言,结果表明,NPBR梭菌在小球菌梭裔中的潜力培养,旨在在基于微藻的生物燃料实际应用和环境可持续性方面实现更大的可行性。

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