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斯达氏油脂酵母补料分批培养的细胞团能量产量

Cell mass energetic yields of fed-batch culture by Lipomyces starkeyi.

作者信息

Anschau Andréia, Franco Telma Teixeira

机构信息

Department of Bioprocess Engineering and Biotechnology, Federal University of Technology (UTFPR), Dois Vizinhos-PR, 85660-000, Brazil,

出版信息

Bioprocess Biosyst Eng. 2015 Aug;38(8):1517-25. doi: 10.1007/s00449-015-1394-7. Epub 2015 Apr 2.

Abstract

Estimation of the energy capacity of a microbial cell mass on the basis of its lipid content and elemental composition can be used for the comparative evaluation of different microbial sources of biodiesel. Lipomyces starkeyi cell mass concentration reached 94.6 g/L with 37.4% of lipids in a fed-batch process using xylose and urea as substrates. The fatty acid composition of the yeast oil was quite similar to that of palm oil. L. starkeyi converted more than 80% of the energy contained in xylose into cell mass energy yield. The approach used in this study makes it possible to determine the energy of a cell mass by its elemental composition. A heat of combustion (Q c) of 25.7 (kJ/g) was obtained for the cell mass after 142 h of fed-batch cultivation, which represents approximately 56% of the energy content of diesel oil (45.4 kJ/g). The Q c of the triacylglycerols produced was 48.9 (kJ/g), indicating the potential of this oleaginous yeast for biodiesel production. Our work developed here provides a simple and efficient tool for characterization of this cell mass to further our understanding of its use as a feedstock for bioenergy production.

摘要

基于微生物细胞团的脂质含量和元素组成来估算其能量容量,可用于对不同生物柴油微生物来源进行比较评估。在以木糖和尿素为底物的补料分批培养过程中,斯达氏油脂酵母细胞团浓度达到94.6 g/L,脂质含量为37.4%。酵母油脂的脂肪酸组成与棕榈油非常相似。斯达氏油脂酵母将木糖中80%以上的能量转化为细胞团能量产率。本研究中使用的方法使得通过细胞团的元素组成来确定其能量成为可能。补料分批培养142小时后,细胞团的燃烧热(Qc)为25.7(kJ/g),约占柴油能量含量(45.4 kJ/g)的56%。所产三酰甘油的Qc为48.9(kJ/g),表明这种产油酵母在生物柴油生产方面的潜力。我们在此开展的工作提供了一个简单有效的工具来表征这种细胞团,以加深我们对其作为生物能源生产原料用途的理解。

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