首页> 外文期刊>Journal of Biotechnology & Biomaterials >Investigation of Biodiesel Potential of Biomasses of Microalgaes Chlorella, Spirulina and Tetraselmis by NMR and GC-MS Techniques
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Investigation of Biodiesel Potential of Biomasses of Microalgaes Chlorella, Spirulina and Tetraselmis by NMR and GC-MS Techniques

机译:NMR和GC-MS技术研究微藻小球藻,螺旋藻和四硒生物质的生物柴油潜力

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The detailed component analyses of algal oils such as neutral (mono, di and triglycerides; free fatty acids) and polar (glyceroglyco/phospho) lipids, and their fatty acid profile including poly unsaturated fatty acids (PUFAs) (C18:3, C22:6) have been carried out by NMR (1H, 13C) and GC-MS techniques to explore their biodiesel potential. The algal oils were obtained by ultrasonic solvent extraction of microalgae biomasses cultivated on a lab scale. The results revealed that biomass and neutral lipids productivity as well as quality and composition of saturated and unsaturated fatty acid were influenced by media (modified RM6, F/2, WC), microalgae species/strains (Chlorella vulgaris, Spirulina platensi and Tetraselmis affchuii) and shape of the cultivated system (Erlenmeyer flask, polythene tubular or round container). The replacement of source of N and P with cheaper source of fertilizers (super phosphates + Chillean salt peter) in the cultivation media F/2 and WC has not affected the neutral lipid productivity, rather produced FAMEs with lower amount of Docosahexaenoic acid (DHA). The biomass cultivated in the modified RM6 media by Spirulina platensi is comprised of lower amount of unsaturated fatty esters without DHA (42.9% w/w) (PUFA as é¤-linoleic) compared to other biomasses (61.2-69.8 %w/w), thus quite suitable for production of biodiesel with higher oxidation stability and higher cetane number. The algal oils generated from the biomasses in the cultivation system are promising feed stocks for biodiesel and value added products DHA and α, γ -linolenic acids. The developed fast and cost effective analytical strategy based on 1H NMR techniques will facilitate algae cultivators for screening of species and optimization of cultivation parameters to produce a choice of product, thus contribute partly in the overall reduction in the cost of production of biodiesel.
机译:藻油的详细成分分析,例如中性(甘油一酸酯,甘油二酯和甘油三酸酯;游离脂肪酸)和极性(甘油糖/磷酸酯)脂质,其脂肪酸谱包括多不饱和脂肪酸(PUFA)(C18:3,C22: 6)已通过NMR(1H,13C)和GC-MS技术进行了研究,以探索其生物柴油的潜力。通过超声溶剂提取实验室规模培养的微藻生物质,获得藻油。结果表明,生物质和中性脂质的生产率以及饱和和不饱和脂肪酸的质量和组成受培养基(改性RM6,F / 2,WC),微藻物种/菌株(小球藻,螺旋藻和四叶草)的影响。和培养系统的形状(锥形瓶,聚乙烯管状或圆形容器)。在F / 2和WC培养基中用较便宜的肥料(超磷酸盐+ Chillean盐盐)代替N和P不会影响中性脂质的生产力,而是产生了二十二碳六烯酸(DHA)含量较低的FAME 。与其他生物质(61.2-69.8%w / w)相比,螺旋藻在改良的RM6培养基中培养的生物质由较少量的不带DHA的不饱和脂肪酸酯(42.9%w / w)(PUFA为亚油酸)组成。 ,因此非常适合生产具有更高氧化稳定性和十六烷值的生物柴油。从培养系统中的生物质中产生的藻油是用于生物柴油和增值产品DHA和α,γ-亚麻酸的有前途的原料。基于1H NMR技术开发的快速且经济高效的分析策略将有助于藻类中耕者筛选物种并优化培养参数以生产产品,从而部分有助于整体降低生物柴油的生产成本。

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