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Fractionation and Lipase-catalyzed Conversion of Microalgal Lipids to Biodiesel

机译:微藻脂质的分馏和脂肪酶催化转化为生物柴油

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This study was conducted to evaluate the lipid fractionation and purification procedures of lipase-catalyzed conversion of neutral lipids to microalgal biodiesel. Microalgae lipids were efficiently recovered and purified by a combined extraction method and crude lipid extracts were separated into neutral lipids, glycolipids, and phospholipids by solid-phase extraction. The high purity of the neutral lipids fraction was confirmed by its low concentration of phosphorous (< 2.0 ppm). Transesterification was catalyzed by immobilized Candida antarctica lipase for 72 h with stepwise addition of methanol. The reaction displayed Michaelis-Menten kinetics and produced high yields of microalgal biodiesel (91.2% in the case of Dunaliella salina) with a high content of unsaturated fatty acids (81.5%). Neutral lipids were converted to biodiesel by three-step transesterification, while the removal of polar lipids maintained the activity of the immobilized lipase by reducing both reaction mixture viscosity and contamination risk.
机译:进行这项研究以评估脂肪酶催化的中性脂质向微藻生物柴油转化的脂质分离和纯化程序。通过组合提取方法有效地回收和纯化微藻类脂质,并通过固相萃取将粗制脂质提取物分离为中性脂质,糖脂和磷脂。中性脂质级分的高纯度通过其低浓度的磷(<2.0 ppm)得到证实。逐步添加甲醇,固定化南极假丝酵母脂肪酶催化酯交换反应72小时。该反应显示了Michaelis-Menten动力学,并产生了高产率的微藻生物柴油(杜氏盐藻为91.2%)和高含量的不饱和脂肪酸(81.5%)。中性脂质通过三步酯交换反应转化为生物柴油,而极性脂质的去除则通过降低反应混合物的粘度和污染风险来保持固定化脂肪酶的活性。

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