College of Life Science, Fujian Normal University, No.1, Keji Road, Minhou, Fuzhou 350117, China; Department of Engineering, Aarhus University, Gustav WiedsVej 10, 8000 Aarhus C, Denmark; Engineering Research Center of Industrial Microbiology of Ministry of Education, Fujian Normal University, No.1, Keji Road, Minhou, Fuzhou 350117, China.
College of Life Science, Fujian Normal University, No.1, Keji Road, Minhou, Fuzhou 350117, China.
Bioresour Technol. 2019 Dec;293:122049. doi: 10.1016/j.biortech.2019.122049. Epub 2019 Aug 22.
This work was the first time to establish a green pressurized liquid extraction (PLE) process to extract microalgal lipids from Isochrysis biomass. PLE with ethanol exhibited superior lipid extraction performance in comparison to Soxhlet and Folch methods and PLE with n-hexane. To reduce the cost in ethanol utilization, ethanol concentration was optimized and found that PLE with 90% ethanol concentration obtained the highest lipid extraction efficiency (41.5 wt%) and total fatty acids (TFAs) recovery value (92.17 wt%) using Isochrysis sp. biomass. Results about lipid class detected by TLC-FID technique showed that ethanol concentration distinctly affected the content of lipidic class during lipid extraction by PLE. Similarly, the process with 90% ethanol concentration achieved over 90 wt% of TFAs recovery values with three different Isochrysis species. Overall, PLE process mediated with ethanol was a promising approach to extract Isochrysis-derived lipids from sustainable microalgal biomass for food application.
这项工作首次建立了一种绿色加压液(PLE)萃取方法,从小球藻生物质中提取微藻油脂。与索氏提取法和 Folch 法以及正己烷相比,乙醇PLE 具有优越的油脂提取性能。为了降低乙醇利用成本,优化了乙醇浓度,发现使用 90%乙醇浓度的 PLE 从小球藻中获得了最高的油脂提取效率(41.5 wt%)和总脂肪酸(TFAs)回收率(92.17 wt%)。通过 TLC-FID 技术检测到的脂质类结果表明,乙醇浓度在 PLE 提取油脂过程中明显影响脂质类的含量。同样,使用 90%乙醇浓度的工艺实现了三种不同小球藻物种的 TFAs 回收率超过 90 wt%。总的来说,乙醇介导的 PLE 工艺是从可持续的微藻生物质中提取小球藻衍生油脂用于食品应用的一种很有前途的方法。