首页> 外文期刊>International Journal of Molecular Sciences >Combined Enzymatic and Mechanical Cell Disruption and Lipid Extraction of Green Alga Neochloris oleoabundans
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Combined Enzymatic and Mechanical Cell Disruption and Lipid Extraction of Green Alga Neochloris oleoabundans

机译:绿藻新绿藻油酶的酶和机械细胞联合破碎和脂质提取

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Microalgal biodiesel is one of the most promising renewable fuels. The wet technique for lipids extraction has advantages over the dry method, such as energy-saving and shorter procedure. The cell disruption is a key factor in wet oil extraction to facilitate the intracellular oil release. Ultrasonication, high-pressure homogenization, enzymatic hydrolysis and the combination of enzymatic hydrolysis with high-pressure homogenization and ultrasonication were employed in this study to disrupt the cells of the microalga Neochloris oleoabundans. The cell disruption degree was investigated. The cell morphology before and after disruption was assessed with scanning and transmission electron microscopy. The energy requirements and the operation cost for wet cell disruption were also estimated. The highest disruption degree, up to 95.41%, assessed by accounting method was achieved by the combination of enzymatic hydrolysis and high-pressure homogenization. A lipid recovery of 92.6% was also obtained by the combined process. The combined process was found to be more efficient and economical compared with the individual process.
机译:微藻生物柴油是最有前途的可再生燃料之一。与干法相比,湿法提取脂质的技术具有节能,过程短等优点。细胞分裂是湿油提取中促进细胞内油释放的关键因素。本研究采用超声处理,高压均质化,酶水解以及酶水解与高压均质化和超声处理相结合的方法来破坏微藻新绿藻的细胞。研究细胞破坏程度。通过扫描和透射电子显微镜评估破坏前后的细胞形态。还估算了湿电池破裂所需的能量和运营成本。酶法水解和高压均质相结合,达到了最高的破坏度,可达95.41%。通过组合方法还获得了92.6%的脂质回收率。发现与单独的过程相比,组合的过程更有效和经济。

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