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Development of a floating photobioreactor with internal partitions for efficient utilization of ocean wave into improved mass transfer and algal culture mixing

机译:开发带有内部隔板的浮式光生物反应器,以有效利用海浪来改善传质和藻类培养混合

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摘要

Culturing microalgae in the ocean has potentials that may reduce the production cost and provide an option for an economic biofuel production from microalgae. The ocean holds great potentials for mass microalgal cultivation with its high specific heat, mixing energy from waves, and large cultivable area. Suitable photobioreactors (PBRs) that are capable of integrating marine energy into the culture systems need to be developed for the successful ocean cultivation. In this study, prototype floating PBRs were designed and constructed using transparent low-density polyethylene film for microalgal culture in the ocean. To improve the mixing efficiency, various types of internal partitions were introduced within PBRs. Three different types of internal partitions were evaluated for their effects on the mixing efficiency in terms of mass transfer (K(L)a) and mixing time in the PBRs. The partition type with the best mixing efficiency was selected, and the number of partitions was varied from one to three for investigation of its effect on mixing efficiency. When the number of partitions is increased, mass transfer increased in proportion to the number of partitions. However, mixing time was not directly related to the number of partitions. When a green microalga, Tetraselmis sp. was cultivated using PBRs with the selected partition under semi-continuous mode in the ocean, biomass and fatty acid productivities in the PBRs were increased by up to 50 % and 44 % at high initial cell density, respectively, compared to non-partitioned ones. The results of internally partitioned PBRs demonstrated potentials for culturing microalgae by efficiently utilizing ocean wave energy into culture mixing in the ocean.
机译:在海洋中培养微藻具有降低生产成本的潜力,并为从微藻中经济生产生物燃料提供了一种选择。海洋具有高的比热,海浪混合的能量以及较大的可耕种面积,具有大规模微藻养殖的巨大潜力。为了成功地进行海洋种植,需要开发能够将海洋能整合到养殖系统中的合适的光生物反应器(PBR)。在这项研究中,使用透明的低密度聚乙烯薄膜设计和构建了漂浮的PBR原型,用于海洋中的微藻培养。为了提高混合效率,在PBR中引入了各种类型的内部隔板。根据传质(K(L)a)和PBR中的混合时间,评估了三种不同类型的内部隔板对混合效率的影响。选择具有最佳混合效率的隔板类型,并且将隔板的数量从一到三种变化以研究其对混合效率的影响。当分隔物的数量增加时,传质与分隔物的数量成比例地增加。但是,混合时间与分区数没有直接关系。当绿色微藻时,Tetraselmis sp。在海洋中使用具有选定分区的PBR在半连续模式下进行培养,与未分区的相比,在高初始细胞密度下,PBR中的生物量和脂肪酸生产率分别提高了50%和44%。内部分配的PBR的结果证明了通过有效利用海浪能量将其混合到海洋中来培养微藻的潜力。

著录项

  • 来源
    《Bioprocess and Biosystems Engineering》 |2016年第5期|713-723|共11页
  • 作者单位

    Inha Univ, Natl Marine Bioenergy R&D Ctr, Inchon 22212, South Korea|Inha Univ, Dept Biol Engn, Inchon 22212, South Korea;

    Inha Univ, Natl Marine Bioenergy R&D Ctr, Inchon 22212, South Korea|Inha Univ, Dept Biol Engn, Inchon 22212, South Korea;

    Inha Univ, Natl Marine Bioenergy R&D Ctr, Inchon 22212, South Korea|Inha Univ, Dept Biol Engn, Inchon 22212, South Korea;

    Inha Univ, Natl Marine Bioenergy R&D Ctr, Inchon 22212, South Korea|Inha Univ, Dept Biol Engn, Inchon 22212, South Korea;

    Inha Univ, Natl Marine Bioenergy R&D Ctr, Inchon 22212, South Korea|Inha Univ, Dept Biol Engn, Inchon 22212, South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Internal partition; Marine photobioreactor; Microalgae; Ocean cultivation;

    机译:内部分区海洋光生物反应器微藻海洋培养;

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