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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Lipid for biodiesel production from attached growth Chlorella vulgaris biomass cultivating in fluidized bed bioreactor packed with polyurethane foam material
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Lipid for biodiesel production from attached growth Chlorella vulgaris biomass cultivating in fluidized bed bioreactor packed with polyurethane foam material

机译:来自加入的生长生物量的生物柴油生产的脂质在流化床生物反应器中栽培,填充聚氨酯泡沫材料

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The potential to grow attached microalgae Chlorella vulgaris in fluidized bed bioreactor was materialized in this study, targeting to ease the harvesting process prior to biodiesel production. The proposed thermodynamic mechanism and physical property assessment of various support materials verified polyurethane to be suitable material favouring the spontaneous adhesion by microalgae cells. The 1-L bioreactor packed with only 2.4% (v/v) of 1.00-mL polyurethane foam cubes could achieve the highest attached growth microalgae biomass and lipid weights of 812 +/- 122 and 376 +/- 37 mg, respectively, in comparison with other cube sizes. The maturity of attached growth microalgae biomass for harvesting could also be determined from the growth trend of suspended microalgae biomass. Analysis of FAME composition revealed that the harvested microalgae biomass was dominated by C16-C18 (>60%) and mixture of saturated and mono-unsaturated fatty acids (>65%), satiating the biodiesel standard with adequate cold flow property and oxidative stability. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本研究中,在流化床生物反应器中生长在流化床生物反应器中的潜在潜力,旨在在生物柴油生产之前缓解收获过程。所提出的热力学机理和各种支撑材料的物理性质评估验证了聚氨酯,是有利于微藻细胞自发粘附的合适材料。填充的1-L生物反应器仅为2.4%(v / v)的1.00ml聚氨酯泡沫块,可分别达到最高附加的生长微藻生物量和脂质重量,分别为812 +/- 122和376 +/- 37 mg与其他多维数据集大小的比较。用于收获的附加生长微藻生物质的成熟也可以从悬浮的微藻生物质的生长趋势中确定。对成本组合物的分析显示,收获的微藻生物质由C16-C18(> 60%)和饱和和单 - 不饱和脂肪酸的混合物(> 65%),饱和,饱和了生物柴油标准,具有足够的冷流量和氧化稳定性。 (c)2017 Elsevier Ltd.保留所有权利。

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