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首页> 外文期刊>MATEC Web of Conferences >Increased lipids production of Nannochloropsis oculata and Chlorella vulgaris for biodiesel synthesis through the optimization of growth medium composition arrangement by using bicarbonate addition
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Increased lipids production of Nannochloropsis oculata and Chlorella vulgaris for biodiesel synthesis through the optimization of growth medium composition arrangement by using bicarbonate addition

机译:通过使用碳酸氢盐添加优化生长培养基组成的安排,增加了用于生物柴油合成的拟南芥和小球藻的脂质生产

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Chlorella vulgaris and Nannochloropsis oculata are a highly potential microalgae to be used in pilot-scale of biodiesel synthesis. The essential content from these microalgae is the fatty acid of lipid which is the main target for the feed and biodiesel industries. One of the key factor in improving lipid microalgae are the arrangemment of nutrients in the growth medium. Research on the regulation of nutrients using bicarbonate (HCO_(3)-) as an additional inorganic carbon source has been done by many studies, but the yield of lipids obtained has not been much. The aim of the study was to improve the lipid yield of Chlorella vulgaris and Nannochloropsis oculata . Variation of [HCO_(3)-] which added to Walne medium were 25 ppm and 75 ppm, while the Walne medium without the addition of bicarbonate acts as control. The results showed that [HCO3-] 75 ppm could increase Chlorella vulgaris biomass by 0.9162 g/l with 17.0% wt, while Nannochloropsis oculata produced the greatest lipid content in [HCO_(3)-] 25 ppm of 20.3% wt and the largest biomass on [HCO_(3)-] 75 ppm of 1.7233 g/l.
机译:小球藻和纳氏绿藻是极有潜力的微藻,可用于生物柴油合成的中试规模。这些微藻的主要成分是脂质的脂肪酸,这是饲料和生物柴油工业的主要目标。改善脂质微藻的关键因素之一是生长培养基中养分的排列。许多研究已经进行了使用碳酸氢盐(HCO_(3)-)作为额外的无机碳源来调节养分的研究,但是获得的脂质的产量却很少。本研究的目的是提高小球藻和拟南芥的脂质产量。加入Walne培养基的[HCO_(3)-]的变化为25 ppm和75 ppm,而未添加碳酸氢盐的Walne培养基作为对照。结果表明,[HCO3-] 75 ppm可以使小球藻生物量增加0.9162 g / l,占总重量的17.0%,而Nannochloropsis oculata在[HCO_(3)-] 25 ppm中占20.3%的最大脂质,最大[HCO_(3)-] 75 ppm的生物量为1.7233 g / l。

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