首页> 美国卫生研究院文献>BioMed Research International >Evaluation of Culture Conditions to Obtain Fatty Acids from Saline Microalgae Species: Dunaliella salina, Sinecosyfis sp., and Chroomonas sp.
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Evaluation of Culture Conditions to Obtain Fatty Acids from Saline Microalgae Species: Dunaliella salina, Sinecosyfis sp., and Chroomonas sp.

机译:从盐微藻类物种获取脂肪酸的培养条件的评估:盐藻,盐藻,Chroomonas藻。

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摘要

The use of the saline microalgae, Dunaliella salina, Sinecosyfis sp., and Chroomonas sp., was explored as an alternative source for the production of fatty acids using fertilizer and glycerol as culture media. The nutrient medium used contained “Nutrifoliar,” a commercial fertilizer, and/or glycerol, in natural sea water. The microalgae were placed in cultures with different conditions. The parameters that favored the largest production of fatty acids were 24 hours of agitation and illumination, 1620 L/day of air supply, 2.25 L of air/min, and a temperature of 32°C using “Nutrifoliar” as the culture media. Results indicated that, from 3 g of microalgae in wet base of Chroomonas sp., 54.43 mg of oil was produced. The chromatographic characterization of oil obtained revealed the presence of essential fatty acids such as 9,12,15-octadecatrienoic acid (omega-3) and 4,7,10-hexadecatrienoic acid (omega-6) from the species Dunaliella salina. On the other hand, 9,12-octadecadienoic acid (omega-6) and cis-11-eicosenoic acid (omega-9) were identified from the species Chroomonas sp. The temperature variations played an important role in the velocity of growth or the production of the algae biomass, the amount of oil, and the ability to produce fatty acids.
机译:探索了使用盐微藻,杜氏盐藻,Sinecosyfis sp。和Chroomonas sp。作为使用肥料和甘油作为培养基生产脂肪酸的替代来源。所使用的营养培养基在天然海水中包含“ Nutrifoliar”(一种商业肥料)和/或甘油。将微藻置于具有不同条件的培养物中。使用“ Nutrifoliar”作为培养基,支持脂肪酸最大产量的参数是搅拌和光照24小时,每天供气1620 L /天,空气/分钟2.25 L和32°C。结果表明,从Chroomonas sp。湿基中的3微克微藻中,产生了54.43微克的油。所得油的色谱分析表明,存在着来自杜氏盐藻的必需脂肪酸,例如9,12,15-十八碳三烯酸(omega-3)和4,7,10-十六碳三烯酸(omega-6)。另一方面,从Chroomonas sp。种中鉴定出9,12-十八碳二烯酸(omega-6)和顺式-11-二十碳烯酸(omega-9)。温度变化在藻类生物质的生长速度或生产速度,油量以及产生脂肪酸的能力中起着重要作用。

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