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Enhancement of lipid extraction for improved biodiesel recovery from the biodiesel promising microalga Scenedesmus obliquus

机译:增强脂质提取能力,以改善从有前景的微藻斜生藻生物柴油中回收生物柴油的能力

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During the transesterification of oil feedstock for biodiesel production, the reaction primarily happens at the ester bonds where the fatty acid chains meet the glycerol. Therefore, only esterified fatty acids (EFAs) are able to be turned directly into biodiesel by transesterification. In this study, an optimized procedure for EFAs recovery from the biodiesel promising microalga Scenedesmus obliquus was studied. The effect of different solvent mixtures (ratios), extraction times, pretreatments and cell-disruption methods on intracellular EFAs and free fatty acids (FFAs) yield was examined. Using of chloroform:methanol (C:M) 2:1 for 2 h was shown to be the best solvent mixture for lipid extraction which resulted in the highest EFAs yield. Furthermore, testing of different cell-disruption methods showed that cell-disruption is not essential for lipid extraction from S. obliquus cells. Although, microwave pretreatment showed significant increase in EFAs yield with respect to overnight oven drying at 80 degrees C, all showed insignificant differences to the control. Moreover, overnight cell freezing showed 7.7% significant reduction in EFAs yield with respect to the control, while hot-water treatment for 5 min showed significant increase by 13.7%. On the other hand, overnight cell incubation, in oven or freezing, resulted in significant increase in FFAs up to 7.44 and 12.47 mg g(-1) of the dry weight, respectively. In addition, the present study showed that no pretreatment with isopropanol to inactivate the lipases is needed when hot-water pretreatment is performed. This study suggested that hot-water pretreatment not only deactivate lipases, but also enhances the EFAs recovery. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在用于生物柴油生产的油原料的酯交换反应期间,反应主要发生在脂肪酸链与甘油相遇的酯键处。因此,只有酯化的脂肪酸(EFA)可以通过酯交换直接转化为生物柴油。在这项研究中,研究了从有前景的微藻斜生藻生物中回收全EFA的优化程序。检查了不同溶剂混合物(比例),提取时间,预处理和细胞破碎方法对细胞内EFA和游离脂肪酸(FFA)产量的影响。氯仿:甲醇(C:M)2:1的使用2小时被证明是提取脂质的最佳溶剂混合物,可产生最高的EFA收率。此外,对不同细胞分裂方法的测试表明,细胞分裂对于从斜纹酵母中提取脂质并不是必需的。尽管相对于在80摄氏度的烤箱过夜干燥,微波预处理显示出EFA产率显着增加,但与对照相比,所有结果均显示出不明显的差异。而且,过夜细胞冷冻显示相对于对照,EFA产率显着降低了7.7%,而热水处理5分钟显示出显着提高了13.7%。另一方面,在烤箱或冷冻中过夜培养细胞会导致FFA显着增加,分别达到干重的7.44和12.47 mg g(-1)。此外,本研究表明,当进行热水预处理时,无需使用异丙醇进行预处理以使脂肪酶失活。这项研究表明,热水预处理不仅可以使脂肪酶失活,而且可以提高EFA的回收率。 (C)2015 Elsevier Ltd.保留所有权利。

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