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首页> 外文期刊>Case Studies in Thermal Engineering >Cultivation of Synechococcus HS-9 in a novel rectangular bubble column photobioreactor with horizontal baffle
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Cultivation of Synechococcus HS-9 in a novel rectangular bubble column photobioreactor with horizontal baffle

机译:用水平挡板培养一种新型矩形泡沫柱光生物反应器中的SneCechocccus Hs-9

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As a source for third-generation biofuel, microalgae can assist island countries to overcome their energy crisis. In this study, a novel photobioreactor having three segments is designed and Synechococcus HS-9 growth in the photobioreactors with and without a baffle is compared. The aims of this study are to investigate how the baffle influences bubble size, distribution, and velocity, to explain the bubble coalescence phenomena, and verify the effect of the baffle on Synechococcus HS-9 growth. The results showed that bubble size distribution in the photobioreactors paralleled the increasing air flow rate. At a flow rate of 1.0 L/min, most bubbles had a diameter of 200–400 μm;however, at 2.5 L/min, the typical size was 1400–2000 μm. Bubble velocity was observed through imaging techniques. The intake air flow rate of 1 LPM has a mass transfer coefficient value of 0.00075 m/s for the photobioreactor without the baffle and 0.00089 m/s for the baffle-bearing photobioreactor. The Sauter mean diameters at three different heights (A, B and C section) in the photobioreactors were 675 μm, 1001 μm, and 1125 μm. Synechococcus HS-9 growth was 2.17 times higher in the baffle-bearing photobioreactor than that in the photobioreactor without the baffle.
机译:作为第三代生物燃料的来源,Microalgae可以帮助岛国克服他们的能源危机。在该研究中,设计了一种具有三个段的新型光生物反应器,并且比较了具有和不挡板的光生物反应器中的SyneChococcus HS-9生长。本研究的目的是研究挡板如何影响泡沫尺寸,分布和速度,解释泡沫聚结现象,并验证挡板对同步会HS-9生长的影响。结果表明,光生物反应器中的气泡尺寸分布平行于增加的空气流速。流速为1.0升/分钟,大多数泡沫的直径为200-400μm;但是,在2.5升/分钟,典型尺寸为1400-2000μm。通过成像技术观察气泡速度。 1LPM的进气流速具有0.00075m / s的质量传递系数值,用于光生物反应器,而无需挡板,壳体光生物反应器为0.00089m / s。光生物反应器中三种不同高度(A,B和C部分)的燃烧器平均直径为675μm,1001μm和1125μm。在没有挡板的情况下,SyneChocccus HS-9的增长比光生物反应器中的光生物反应器高2.17倍。

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