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Evaluation, comparison of different solvent extraction, cell disruption methods and hydrothermal liquefaction of Oedogonium macroalgae for biofuel production

机译:评价,比较不同溶剂提取方法,细胞分裂方法和大麦圈泻藻用于生物燃料生产的水热液化

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Cell disruption and lipid extraction methods for macroalgae are not well reported. Therefore, we compared various lipid extraction methods and extraction efficiency of various solvents to improve lipid yields from Oedogonium fresh water macroalgae. Lipid extraction was done by 2 methods viz., modified Bligh and Dyer method and soxhlet extraction using either single solvents or mixtures. In soxhlet extraction method five solvents were used (1) Hexane commonly used solvent for lipid extractions, (2) chloroform: methanol (2:1), (3) Chloroform: hexane (1:1), (4) Chloroform: hexane (1:2), (5) Dichloromethane?+?methanol (2:1). To improve lipid extraction yields, various cell disruption methods were also compared during the present study. Impurities of chlorophyll and protein were also detected in the extracted lipids. Hydrothermal liquefaction of algal biomass with TiOsub2/sub was also conducted at 300?°C. HTL was more effective by which 23.3?wt% of bio-crude oil was obtained.
机译:大型藻类的细胞破坏和脂质提取方法尚未见报道。因此,我们比较了各种脂质提取方法和各种溶剂的提取效率,以提高油曲藻淡水大型藻类的脂质产量。脂质的提取通过两种方法进行,即改良的Bligh和Dyer方法以及使用单一溶剂或混合物的索氏提取。在索氏萃取法中,使用了五种溶剂(1)己烷用于脂质萃取的常用溶剂,(2)氯仿:甲醇(2:1),(3)氯仿:己烷(1:1),(4)氯仿:己烷( 1∶2),(5)二氯甲烷+甲醇(2∶1)。为了提高脂质提取的产量,在本研究中还比较了各种细胞破坏方法。在提取的脂质中也检测到叶绿素和蛋白质的杂质。藻类生物质与TiO 2 的水热液化也在300℃下进行。 HTL更有效,因为它可获得23.3wt%的生物原油。

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