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Microalgae Lipid Characterization

机译:微藻脂质表征

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To meet the growing interest of utilizing microalgae biomass in the production of biofuels and nutraceutical and pharmaceutical lipids, we need suitable analytical methods and a comprehensive database for their lipid components. The objective of the present work was to demonstrate methodology and provide data on fatty acid composition, lipid class content and composition, characteristics of the unsaponifiables, and type of chlorophylls of five microalgae. Microalgae lipids were fractionated into TAG, FFA, and polar lipids using TLC, and the composition of fatty acids in total lipids and in each lipid class, hydrocarbons, and sterols were determined by GC-MS. Glyco- and phospholipids were profiled by LC/ESI-MS. Chlorophylls and their related metabolites were qualified by LC/APCI-MS. The melting and crystallization profiles of microalgae total lipids and their esters were analyzed by DSC to evaluate their potential biofuel applications. Significant differences and complexities of lipid composition among the algae tested were observed. The compositional information is valuable for strain selection, downstream biomass fractionation, and utilization.
机译:为了满足利用微藻生物质生产生物燃料以及营养油脂和药用脂质的日益增长的兴趣,我们需要合适的分析方法和其脂质成分的综合数据库。本工作的目的是证明方法学,并提供有关五个微藻的脂肪酸组成,脂质类别含量和组成,不皂化物的特征以及叶绿素类型的数据。使用TLC将微藻类脂质分为TAG,FFA和极性脂质,并通过GC-MS测定总脂质和每种脂质类别中的脂肪酸,烃和固醇的脂肪酸组成。通过LC / ESI-MS分析糖脂和磷脂。叶绿素及其相关代谢产物通过LC / APCI-MS鉴定。 DSC分析了微藻总脂质及其酯的熔融和结晶特性,以评估其潜在的生物燃料应用。观察到所测试藻类中脂质组成的显着差异和复杂性。成分信息对于菌株选择,下游生物质分馏和利用非常有价值。

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