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Mixotrophic cultivation of microalgae to enhance the quality of lipid for biodiesel application: effects of scale of cultivation and light spectrum on reduction of a-linolenic acid

机译:微藻的混合营养培养以提高生物柴油应用脂质的质量:培养规模和光谱对减少α-亚麻酸的影响

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The research on microalgal biodiesel is focused not only on getting the highest lipid productivity but also desired quality of lipid. The experiments were initially conducted on flask scale (1L) using acetate carbon source at different concentrations viz. 0.5, 2, 3 and 4 g L-1. The optimum concentration of acetate was considered for further experiments in two airlift photobioreactors (10 L) equipped separately with red and white LED lights. The Feasibility Index (FI) was derived to analyze the scalability of mixotrophic cultivation based on net carbon fixation in biomass per consumption of total organic carbon. The experimental strategy under mixotrophic mode of cultivation lowered the alpha-linolenic acid content of lipid by 60-80% as compared to autotrophic cultivation for Scenedesmus abundans species and yielded the highest biomass and lipid productivities, 59 +/- 2 and 17 +/- 1.8 mg L-1 day(-1), respectively. The TOC, nitrate, and phosphate reduction rates were 74.6 +/- 3.0, 11.5 +/- 1.4, 9.6 +/- 2.4 mg L-1 day(-1), respectively. The significant change was observed in lipid compositions due to the scale, mode of cultivation, and light spectra. As compared to phototrophic cultivation, biodiesel obtained under mixotrophic cultivation only met standard biodiesel properties. The FI data showed that the mixotrophic cultivation was feasible on moderate concentrations of acetate (2-3 g L-1).
机译:微藻生物柴油的研究不仅着眼于获得最高的脂质生产率,而且还着眼于所需的脂质质量。首先使用不同浓度的乙酸碳源在烧瓶规模(1升)上进行实验。 0.5、2、3和4 g L-1。在两个分别装有红色和白色LED灯的气举式光生物反应器(10升)中,乙酸盐的最佳浓度被考虑用于进一步的实验。推导了可行性指数(FI),以基于每消耗总有机碳的生物量中的净碳固定化来分析混合营养栽培的可扩展性。混合营养培养模式下的实验策略与富营养凤仙花物种的自养培养相比,降低了脂质的α-亚麻酸含量60-80%,并产生了最高的生物量和脂质生产率,分别为59 +/- 2和17 +/-分别为1.8 mg L-1天(-1)。 TOC,硝酸盐和磷酸盐的还原率分别为74.6 +/- 3.0、11.5 +/- 1.4、9.6 +/- 2.4 mg L-1天(-1)。由于规模,培养方式和光谱,在脂质组成中观察到了显着变化。与光养栽培相比,在混养栽培中获得的生物柴油仅满足标准生物柴油性能。 FI数据表明,在中等浓度的乙酸盐(2-3 g L-1)下,混合营养栽培是可行的。

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