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水面漂浮微藻用于生物柴油生产的潜力:漂浮生物质和脂质生产率。

Potential of water surface-floating microalgae for biodiesel production: Floating-biomass and lipid productivities.

作者信息

Muto Masaki, Nojima Daisuke, Yue Liang, Kanehara Hideyuki, Naruse Hideaki, Ujiro Asuka, Yoshino Tomoko, Matsunaga Tadashi, Tanaka Tsuyoshi

机构信息

Division of Biotechnology and Life Science, Institute of Engineering, Tokyo University of Agriculture and Technology, 2-24-16 Naka-cho, Koganei, Tokyo 184-8588, Japan.

Research and Technology Management Headquarters, FUJIFILM Co., Ltd, 577 Ushijima, Kaisei-machi, Ashigarakami-gun, Kanagawa 258-8577, Japan.

出版信息

J Biosci Bioeng. 2017 Mar;123(3):314-318. doi: 10.1016/j.jbiosc.2016.09.015. Epub 2016 Oct 20.

Abstract

Microalgae have been accepted as a promising feedstock for biodiesel production owing to their capability of converting solar energy into lipids through photosynthesis. However, the high capital and operating costs, and high energy consumption, are hampering commercialization of microalgal biodiesel. In this study, the surface-floating microalga, strain AVFF007 (tentatively identified as Botryosphaerella sudetica), which naturally forms a biofilm on surfaces, was characterized for use in biodiesel production. The biofilm could be conveniently harvested from the surface of the water by adsorbing onto a polyethylene film. The lipid productivity of strain AVFF007 was 46.3 mg/L/day, allowing direct comparison to lipid productivities of other microalgal species. The moisture content of the surface-floating biomass was 86.0 ± 1.2%, which was much lower than that of the biomass harvested using centrifugation. These results reveal the potential of this surface-floating microalgal species as a biodiesel producer, employing a novel biomass harvesting and dewatering strategy.

摘要

微藻因其能够通过光合作用将太阳能转化为脂质而被认为是一种很有前景的生物柴油生产原料。然而,高资本和运营成本以及高能耗阻碍了微藻生物柴油的商业化。在本研究中,对表面漂浮的微藻菌株AVFF007(初步鉴定为苏德球腔菌)进行了表征,该菌株能在表面自然形成生物膜,用于生物柴油生产。通过吸附到聚乙烯薄膜上,可以方便地从水面收获生物膜。菌株AVFF007的脂质生产率为46.3毫克/升/天,可直接与其他微藻物种的脂质生产率进行比较。表面漂浮生物质的水分含量为86.0±1.2%,远低于使用离心法收获的生物质。这些结果揭示了这种表面漂浮微藻物种作为生物柴油生产者的潜力,采用了一种新颖的生物质收获和脱水策略。

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