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Enhancement of Lipid Extraction from Marine Microalga Scenedesmus Associated with High-Pressure Homogenization Process

机译:与高压均质化过程相关的海洋微藻场景藻的脂质提取的增强

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摘要

Marine microalga, Scenedesmus sp., which is known to be suitable for biodiesel production because of its high lipid content, was subjected to the conventional Folch method of lipid extraction combined with high-pressure homogenization pretreatment process at 1200 psi and 35°C. Algal lipid yield was about 24.9% through this process, whereas only 19.8% lipid can be obtained by following a conventional lipid extraction procedure using the solvent, chloroform : methanol (2 : 1, v/v). Present approach requires 30 min process time and a moderate working temperature of 35°C as compared to the conventional extraction method which usually requires >5 hrs and 65°C temperature. It was found that this combined extraction process followed second-order reaction kinetics, which means most of the cellular lipids were extracted during initial periods of extraction, mostly within 30 min. In contrast, during the conventional extraction process, the cellular lipids were slowly and continuously extracted for >5 hrs by following first-order kinetics. Confocal and scanning electron microscopy revealed altered texture of algal biomass pretreated with high-pressure homogenization. These results clearly demonstrate that the Folch method coupled with high-pressure homogenization pretreatment can easily destruct the rigid cell walls of microalgae and release the intact lipids, with minimized extraction time and temperature, both of which are essential for maintaining good quality of the lipids for biodiesel production.
机译:海洋微藻Scenedesmus sp。因其较高的脂质含量而适合生产生物柴油,在1200 psi和35°C的高压下进行了常规的脂质提取Folch方法与高压均质化预处理工艺相结合。通过该方法,藻类脂质的产率约为24.9%,而按照常规的脂质提取方法,使用溶剂氯仿::甲醇(2 :: 1,v / v),只能得到19.8%的脂质。与通常需要> 5小时和65°C温度的常规提取方法相比,本方法需要30分钟的处理时间和35°C的适中工作温度。已发现,该组合提取过程遵循二级反应动力学,这意味着大多数细胞脂质在提取的初始阶段就被提取,大部分在30分钟内。相反,在常规提取过程中,通过遵循一级动力学,缓慢且连续地提取细胞脂质> 5小时。共聚焦和扫描电镜观察发现,经高压均质处理的藻类生物质的质地发生了变化。这些结果清楚地表明,Folch方法与高压均质化预处理相结合,可以轻松破坏微藻类的刚性细胞壁并释放完整的脂质,同时将提取时间和温度降至最低,这对于维持脂质的良好品质至关重要。生物柴油生产。

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