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Bio-Based Solvents for Green Extraction of Lipids from Oleaginous Yeast Biomass for Sustainable Aviation Biofuel

机译:从油质酵母生物质中绿色提取脂质的生物基溶剂,用于可持续航空生物燃料

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摘要

Lipid-based oleaginous microorganisms are potential candidates and resources for the sustainable production of biofuels. This study was designed to evaluate the performance of several alternative bio-based solvents for extracting lipids from yeasts. We used experimental design and simulation with Hansen solubility simulations and the conductor-like screening model for realistic solvation (COSMO-RS) to simulate the solubilization of lipids in each of these solvents. Lipid extracts were analyzed by high performance thin-layer chromatography (HPTLC) to obtain the distribution of lipids classes and gas chromatography coupled with a flame ionization detector (GC/FID) toobtain fatty acid profiles. Our aim was to correlate simulation with experimentation for extraction and solvation of lipids with bio-based solvents in order to make a preliminary evaluation for the replacement of hexane to extract lipids from microorganisms. Differences between theory and practice were noted for several solvents, such as CPME, MeTHF and ethyl acetate, which appeared to be good candidates to replace hexane.
机译:基于脂质的油脂性微生物是生物燃料可持续生产的潜在候选者和资源。这项研究旨在评估几种替代的基于生物的溶剂从酵母中提取脂质的性能。我们使用了Hansen溶解度模拟的实验设计和模拟,以及用于实际溶剂化的类似导体的筛选模型(COSMO-RS),以模拟每种溶剂中脂质的增溶作用。通过高效薄层色谱(HPTLC)分析脂质提取物以获得脂质类别的分布,并通过气相色谱结合火焰离子化检测器(GC / FID)来获得脂肪酸谱。我们的目的是将模拟与利用生物基溶剂提取和溶剂化脂质的实验相关联,以便对替代己烷以从微生物中提取脂质进行初步评估。注意到几种溶剂(例如CPME,MeTHF和乙酸乙酯)在理论和实践之间存在差异,这似乎是替代己烷的良好选择。

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