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Assessment of the effects of nutrients on biomass and lipid accumulation in Dunaliella tertiolecta using a response surface methodology

机译:利用响应面法评估营养物质对杜氏杜氏藻生物量和脂质积累的影响

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Bio-energy is arousing the common interest of worldwide researchers to investigate it as a substitute for fossil resources. Compared to other bio-energy sources, algae energy has many advantages. This research was aimed to increase the lipid productivity of Dunaliella tertiolecta, an oleaginous microalgae, by optimizing algal culture medium. Plackett-Burman Design (PBD) was adopted to screen out the critical factors from seven nutritional elements. Box-Behnken design (BBD) was used to seek the optimal nutritional conditions for achieving maximum lipid productivity. Results showed that four nutrients, i.e. NaNO3, NaCl, NaHCO3 and NaH2PO4 2H(2)O, played a critical role in the accumulation of lipid. GC analysis verified that the four critical nutrients mentioned above had different influences on fatty acid methyl esters, moreover, NaCl had the most prominent effects on fatty acid composition of D. tertiolecta. NaCl 87.69 g L-1, NaNO3 1.77 g L-1, NaH2PO4.2H(2)O 1.92 g L-1, NaHCO3 5.57 g L-1 were proven to be the optimal culture conditions, under which the lipid productivity in the experiment was 12.576 +/- 0.12 mg per L per day, which is approaching the theoretically predicted lipid productivity of 12.925 mg per L per day. The lipid productivity was increased by 31.4% under the optimal culture conditions compared to that under the initial medium composition, indicating that optimization of nutrients could effectively improve the lipid production of D. tertiolecta.
机译:生物能源正在引起全球研究人员的普遍兴趣,以研究其作为化石资源的替代品。与其他生物能源相比,藻类能源具有许多优势。这项研究旨在通过优化藻类培养基来提高油性微藻杜氏藻的脂质生产力。采用Plackett-Burman设计(PBD)从七种营养元素中筛选出关键因素。 Box-Behnken设计(BBD)用于寻找实现最大脂质生产的最佳营养条件。结果表明,四种营养素,即NaNO3,NaCl,NaHCO3和NaH2PO4 2H(2)O,在脂质的积累中起关键作用。气相色谱分析证实,上述四种关键营养素对脂肪酸甲酯的影响不同,此外,氯化钠对菊苣的脂肪酸组成影响最大。 NaCl 87.69 g L-1,NaNO3 1.77 g L-1,NaH2PO4.2H(2)O 1.92 g L-1,NaHCO3 5.57 g L-1被证明是最佳的培养条件,在该条件下实验中的脂质生产率为每天每升12.576 +/- 0.12 mg,接近理论预测的每天每升12.925 mg的脂质生产率。与初始培养基组成相比,在最佳培养条件下脂质生产率提高了31.4%,这表明优化养分可以有效地提高毛状杜鹃的脂质产量。

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