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A novel bubble-driven internal mixer for improving productivities of algal biomass and biodiesel in a bubble-column photobioreactor under natural sunlight

机译:一种新型气泡驱动的内部混合器,用于改善在自然阳光下的泡沫柱光生物反应器中的藻类生物量和生物柴油的生产性

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The poor biomass titer and biodiesel productivity under natural sunlight are the major challenges for commercialization of algae-biodiesel. Apart from engineering the nutritional medium and CO2 input strategies, the photobioreactor (PBR) design needs high attention to increase light utilization efficiency. Hence, a novel bubble-driven internal mixer was designed for providing frequent light/dark fluctuation which can improve light utilization efficiency and installed in a bubble-column PBR (BC-PBR) to improve productivities of biomass and biodiesel from Chlorella sp. Without any extra energy requirement (via aeration), in 10 L scale BC-PBR with mixer under simulated sunlight, the productivities of biomass and biodiesel were increased by 13% and 62%, respectively, compared to without mixer. Under natural sunlight, the improvement of biomass productivity was 33% with mixer arrangement and final biomass of 8.6 g L-1 was achieved. Further to improve biodiesel productivity and quality under natural sunlight, the lipid induction was started right after the algae growth of 4.2 g L-1 (at the time of highest biomass productivity, 1.4 g L-1 day(-1)). Consequently, a very highest biodiesel productivity of 753 mg L-1 day(-1) (induction-phase) was achieved. To the best of authors knowledge, this is the first study to report bubbledriven mixer in microalgae cultivation technology. (C) 2020 Elsevier Ltd. All rights reserved.
机译:自然阳光下的生物质滴度差和生物柴油生产力是藻类 - 生物柴油商业化的主要挑战。除了工程营养培养基和二氧化碳的输入策略外,PhotoBioreActor(PBR)设计需要高度重视,以提高光利用效率。因此,设计了一种新型气泡驱动的内部混合器,用于提供频繁的光/暗波动,这可以提高光利用效率并安装在气泡柱PBR(BC-PBR)中,以改善来自小球藻的生物量和生物柴油的生产率。在没有任何额外的能量需求(通过通气),在10L级BC-PBR在模拟阳光下的混合器中,与没有混合器相比,生物质和生物柴油的产品分别增加了13%和62%。在自然阳光下,搅拌机排列的生物质生产率的提高为33%,达到8.6g L-1的最终生物量。进一步提高生物柴油生产率和质量在自然阳光下,脂质诱导在4.2g L-1的藻类生长后开始(在最高生物质生产率时,1.4克L-1天(-1))。因此,实现了753mg L-1天(-1)(诱导相)的非常高的生物柴油生产率。据作者所知,这是第一次报告微藻栽培技术中冒泡混合器的研究。 (c)2020 elestvier有限公司保留所有权利。

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