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Influence of nutrient formulations on growth, lipid yield, carbon partitioning and biodiesel quality potential of Botryococcus sp. and Chlorella sp.

机译:营养制剂对肉毒杆菌SP生长,脂质产量,碳分配和生物柴油质量潜力的影响。 和小球藻sp。

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The study was conducted to analyse the influence of three nutrient formulations, namely BG-11 medium, BBM and TAP medium, on growth potential and lipid yield of two microalgal genera (Botryococcus sp. and Chlorella sp.) and to study the roles of N, P and other major nutrients. The study focussed on the general patterns of starch and lipid synthesis and storage and to further assess how photosynthetic carbon partitioning into starch and lipid is altered by conditions in growth media such as N and C presence as seen in BG11 medium which are known to induce neutral lipid production and the lack of it in BBM and TAP medium. BG-11 medium performed better as compared to BBM and TAP medium in terms of biomass productivity and lipid yield. The lipid yield was highest in Botryococcus sp. (63.03% dry wt.) and Chlorella sp. (50.27% dry wt.) at 30th day of incubation. Mean biomass productivity was highest for Botryococcus in BBM medium (6.14mg/L/day) and for Chlorella in BG-11 medium (4.97mg/L/day). Mean lipid productivity (50.78% and 39.36%) was highest in BG11 medium for both Botryococcus and Chlorella species, respectively. A sharp decline in sugar content was observed in the late stationary phase of growth from 30th day to 45th day. Fatty acid methyl ester (FAME) profile of the extracted lipids showed predominantly oleic acid, followed by palmitic acid and stearic acid in both the strains when grown in BG-11 medium. The other biodiesel quality parameters were in accordance with the international standards. A complex relationship was found between chemical composition and biodiesel properties. Proximity analysis indicated that the fuel properties of biodiesels are determined by a number of parameters and by the combination of different chemical compositions. The results provide an insight into organic carbon partitioning into lipid compounds and how the organism's lipid metabolism changes due to N-deplete culturing in TAP medium and inorganic carbon source availability as seen in BG-11 and BBM medium.
机译:进行该研究以分析三种营养制剂,即BG-11培养基,BBM和TAP介质的影响,对两种微藻属的生长潜力和脂质产量(Botryococcus sp。和小球藻sp。)并研究n的作用,p和其他主要营养素。该研究侧重于淀粉和脂质合成和储存的一般图案,并进一步评估光合碳分配到淀粉和脂质中的分配是如何通过在已知的BG11培养基中所见的生长介质(如N和C存在)的条件改变。已知诱导中性的脂质生产和在BBM中缺乏它,TAP介质。与BBM相比,BG-11培养基比BBM和Taw介质在生物质生产率和脂质产率方面进行。 Botryococcus sp中的脂质产率最高。 (63.03%干WT。)和小球藻SP。 (50.27%干WT)在孵化的第30天。 BBM培养基(6.14mg / L /天)和BG-11中的小球藻(4.97mg /天)的BOTRYOCOCCU(4.97mg /月)的平均生物量生产率最高。平均脂质生产率(50.78%和39.36%)分别为Botryocccus和小球藻的BG11培养基中最高。在第30天至第45天的晚期固定阶段观察到糖含量急剧下降。提取的脂质的脂肪酸甲酯(名称)曲线显示出在BG-11培养基中生长时,菌株中的棕榈酸和硬脂酸在玉米酸和硬脂酸中。其他生物柴油质量参数符合国际标准。在化学成分和生物柴油属性之间发现了复杂的关系。接近分析表明,生物柴油的燃料特性由许多参数和不同化学组合物的组合确定。结果提供了对脂质化合物的有机碳分配的洞察力,以及有机体的脂质代谢原因是由于在BG-11和BBM培养基中所见的自来培养基和无机碳源可用性中的N-耗尽培养而变化。

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