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首页> 外文期刊>Journal of Biotechnology >Carbon-to-nitrogen ratio affects the biomass composition and the fatty acid profile of heterotrophically grown Chlorella sp TISTR 8990 for biodiesel production
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Carbon-to-nitrogen ratio affects the biomass composition and the fatty acid profile of heterotrophically grown Chlorella sp TISTR 8990 for biodiesel production

机译:碳氮比影响异养生长的小球藻TISTR 8990用于生物柴油生产的生物量组成和脂肪酸谱

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Chlorella sp. TISTR 8990 was cultivated heterotrophically in media with various initial carbon-to-nitrogen ratios (C/N ratio) and at different agitation speeds. The production of the biomass, its total fatty acid content and the composition of the fatty acids were affected by the C/N ratio, but not by agitation speed in the range examined. The biomass production was maximized at a C/N mass ratio of 29:1. At this C/N ratio, the biomass productivity was 0.68 g L-1 d(-1), or nearly 1.6-fold the best attainable productivity in photoautotrophic growth. The biomass yield coefficient on glucose was 0.62 g g(-1) during exponential growth. The total fatty acids (TFAs) in the freeze-dried biomass were maximum (459 mg g(-1)) at a C/N ratio of 95:1. Lower values of the C/N ratio reduced the fatty acid content of the biomass. The maximum productivity of TFAs (186 mg L-1 d(-1)) occurred at C/N ratios of 63:1 and higher. At these conditions, the fatty acids were mostly of the polyunsaturated type. Allowing the alga to remain in the stationary phase for a prolonged period after N-depletion, reduced the level of monounsaturated fatty acids and the level of polyunsaturated fatty acids increased. Biotin supplementation of the culture medium reduced the biomass productivity relative to biotin-free control, but had no effect on the total fatty acid content of the biomass. (C) 2015 Elsevier B.V. All rights reserved.
机译:小球藻TISTR 8990是在具有各种初始碳氮比(C / N比)和不同搅拌速度的培养基中异养培养的。生物质的产生,其总脂肪酸含量和脂肪酸组成受C / N比的影响,但不受所考察范围内的搅拌速度的影响。 C / N质量比为29:1时,生物质的产量最高。在此C / N比下,生物量生产力为0.68 g L-1 d(-1),或近乎1.6倍的光合自养生长可获得的最佳生产力。葡萄糖的生物量产量系数在指数增长期间为0.62 g g(-1)。冷冻干燥的生物质中的总脂肪酸(TFA)最大(459 mg g(-1)),C / N比为95:1。较低的C / N比值降低了生物质中的脂肪酸含量。 TFA的最大生产率(186 mg L-1 d(-1))以63:1或更高的C / N比出现。在这些条件下,脂肪酸大部分是多不饱和类型的。氮耗竭后,允许藻类在固定相中保留更长的时间,降低了单不饱和脂肪酸的含量,增加了多不饱和脂肪酸的含量。相对于无生物素的对照,培养基中生物素的补充降低了生物质的生产率,但是对生物质的总脂肪酸含量没有影响。 (C)2015 Elsevier B.V.保留所有权利。

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