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首页> 外文期刊>Natural science >Optimization of Nitrogen, Phosphorus and Salt for Lipid Accumulation of Microalgae: Towards the Viability of Microalgae Biodiesel
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Optimization of Nitrogen, Phosphorus and Salt for Lipid Accumulation of Microalgae: Towards the Viability of Microalgae Biodiesel

机译:氮,磷和盐用于微藻类脂质积累的优化:走向微藻类生物柴油的生存能力。

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In recent years, microalgae biodiesel has attracted expressive attention and investment, once it was considered a potential resource for energy. Although the wide use of microalgae biodiesel is restricted by its high production cost. For cost-efficient and sustainable production of biodiesel from microalgae, a proper understanding of the variables and their impacts on physiology of the strains is required. In this study, a simple factorial design 23 was used to find optimal conditions for the cultivation of Ankistrodesmus sp. and Chlamydomonas sp. in batch culture. The three components considered were nitrate, phosphate and sodium chloride, used to assess the metabolic versatility of the strains in brackish conditions. The results showed that culture medium with 0.04 g·L?1 nitrate, 0.01 g·L?1 phosphate and 5.0 g·L?1 sodium chloride resulted to be the most effective condition to growth and fatty acids accumulation. Using this optimal condition, Ankistrodesmus sp. and Chlamydomonas sp. increased in 2.1 and 2.4 folds their fatty acids yield, respectively. Importantly, this protocol reduced 75% of the nitrate and phosphate concentrations of the original medium (ASM-1). Additionally, fatty acids analysis found that these strains were mainly constituted of C16-C18, in accordance with the requirements for biodiesel production. The simple factorial design applied here proved to be an important tool towards a better understanding of synergistic effects of tested factors on microalgae metabolism, and the resulting information could be used effectively to improve microalgae cultivation.
机译:近年来,微藻生物柴油被认为是一种潜在的能源资源,引起了广泛的关注和投资。尽管微藻生物柴油的广泛使用受到其高生产成本的限制。为了从微藻中经济高效地可持续生产生物柴油,需要对变量及其对菌株生理的影响有适当的了解。在这项研究中,一个简单的析因设计[23]被用来寻找培养拟南芥的最佳条件。和衣藻。分批培养。考虑的三个成分是硝酸盐,磷酸盐和氯化钠,用于评估菌株在微咸条件下的代谢多功能性。结果表明,含有0.04 g·L?1硝酸盐,0.01 g·L?1磷酸盐和5.0 g·L?1氯化钠的培养基是生长和脂肪酸积累的最有效条件。使用此最佳条件,Ankistrodesmus sp.。和衣藻。分别增加了2.1和2.4倍的脂肪酸收率。重要的是,该方案降低了原始培养基(ASM-1)的硝酸盐和磷酸盐浓度的75%。另外,脂肪酸分析发现,根据生物柴油生产的要求,这些菌株主要由C16-C18组成。事实证明,这里应用的简单析因设计是更好地理解被测因子对微藻代谢的协同作用的重要工具,所得到的信息可以有效地用于改善微藻的培养。

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