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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Effects of Temperature and Substrate Concentration on Lipid Production by Chlorella vulgaris from Enzymatic Hydrolysates of Lipid-Extracted Microalgal Biomass Residues (LMBRs)
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Effects of Temperature and Substrate Concentration on Lipid Production by Chlorella vulgaris from Enzymatic Hydrolysates of Lipid-Extracted Microalgal Biomass Residues (LMBRs)

机译:温度和底物浓度对小球藻脂质提取微藻生物质残渣(LMBRs)酶解产物中小球藻产生脂质的影响

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摘要

The enzymatic hydrolysates of the lipid-extracted microalgal biomass residues (LMBRs) from biodiesel production were evaluated as nutritional sources for the mixotrophic growth of Chlorella vulgaris and lipid production at different temperature levels and substrate concentrations. Both parameters had a significant effect on cell growth and lipid production. It was observed that C. vulgaris could grow mixotrophically in a wide range of temperatures (20~35 ℃). The optimal temperature for cell growth and lipid accumulation of the mixotrophic growth of C. vulgaris was between 25 and 30 ℃. The neutral lipids of the culture at 25 ℃ accounted for as much as 82 % of the total lipid content in the microalga at culture day 8. Fatty acid composition analysis showed that the increase of saturated fatty acids was proportional to the increase in temperature. The maximum biomass concentration of 4.83 g/L and the maximum lipid productivity of 164 mg/L/day were obtained at an initial total sugar concentration of 10 g/L and an initial total concentration of amino acids of 1.0 g/L but decreased at lower and higher substrate concentrations. The present results show that LMBRS could be utilized by the mixotrophic growth of C. vulgaris for microalgal lipid production under the optimum temperature and substrate concentration.
机译:来自生物柴油生产的脂质提取的微藻生物质残余物(LMBR)的酶水解物被评估为在不同温度水平和底物浓度下小球藻混合营养生长和脂质生产的营养来源。这两个参数对细胞生长和脂质产生均具有显着影响。观察到寻常型梭菌可以在很宽的温度范围(20〜35℃)内混合生长。普通梭菌营养生长的最佳细胞生长温度和脂质积累温度为25至30℃。在第8天培养时,25℃培养物中的中性脂质占微藻总脂质含量的82%。脂肪酸组成分析表明,饱和脂肪酸的增加与温度的增加成正比。在初始总糖浓度为10 g / L和初始氨基酸总浓度为1.0 g / L时,获得的最大生物量浓度为4.83 g / L,最大脂质生产率为164 mg / L /天,但在底物浓度越来越低。目前的结果表明,在最佳温度和底物浓度下,LMBRS可以被杂种梭状芽孢杆菌的营养生长用于微藻类脂质的生产。

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