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Biodiesel production from microalgae

机译:微藻生产生物柴油

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By 2020, according to several government policies like the European Union countries, road transportation fuels must contain at least 10% (v/v) biofuel like biodiesel. Consequently, the world biodiesel production is expected to rise in the next years. However, most biodiesel is produced from vegetable oils, which compete with human food production. Biodiesel from microalgae could help to reach the requested level of biofuel (biodiesel) without endangering the world food supply because microalgae cultivation does not compete with arable land. Nevertheless, the cost of biodiesel production from microalgae must be lowered. One of the main challenges is to extract the lipids from the microalgae and to transform them into biodiesel. The 1~(st) objective of this study was therefore to compare chloroform-methanol-water and hexane as solvents for Nannochloropsis Oculata, Isochrysis Galbana and Pavlova Lutheri microalgae lipid extraction. The 2~(nd) objective was to transform the lipids into biodiesel by an acid catalysed (acetyl chloride) transesterification. The results obtained demonstrated that a lipid yield of 32% (w/w) could be obtained by an extraction with chloroform-methanol-water without reflux. With hexane reflux, the lipids extracted from the microalgae reached 22% (w/w). The fatty acid methyl ester (FAME) composition was not influenced by the reflux (chloroform-methanol-water) during the solvent extraction. The main FAME weight composition (% wt.) obtained from an acid catalyzed transesterification (100°C, 1h) were methyl palmitoleate (56-58%), methyl palmitate (12-14%) and methyl eicosapentaenoate (9.6-10.1%).
机译:根据欧盟等国家的多项政府政策,到2020年,道路运输燃料必须包含至少10%(v / v)的生物燃料,例如生物柴油。因此,预计未来几年世界生物柴油产量将增加。但是,大多数生物柴油是由植物油生产的,与人的食物生产竞争。微藻生产的生物柴油可以帮助达到所需的生物燃料水平(生物柴油),而不会危害世界粮食供应,因为微藻种植不会与耕地竞争。然而,必须降低微藻生产生物柴油的成本。主要挑战之一是从微藻中提取脂质并将其转化为生物柴油。因此,本研究的第一个目标是比较氯仿-甲醇-水和己烷作为纳氏绿藻,等鞭金藻和帕夫洛娃·路德瑞微藻脂质提取的溶剂。第二个目的是通过酸催化的(乙酰氯)酯交换将脂质转化为生物柴油。获得的结果表明,通过用氯仿-甲醇-水萃取而不回流,可以得到32%(w / w)的脂质产率。随着己烷回流,从微藻提取的脂质达到22%(w / w)。在溶剂萃取过程中,脂肪酸甲酯(FAME)的组成不受回流(氯仿-甲醇-水)的影响。由酸催化的酯交换反应(100°C,1h)获得的主要FAME重量组成(%wt。)是棕榈油酸甲酯(56-58%),棕榈酸甲酯(12-14%)和二十碳五烯酸甲酯(9.6-10.1%) 。

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