College of Life Science, Fujian Normal University, Fuzhou 350117, China.
College of Life Science, Fujian Normal University, Fuzhou 350117, China; Key Laboratory of Feed Biotechnology, The Ministry of Agriculture of the People's Republic of China, Beijing 100081, China.
Bioresour Technol. 2019 Jul;284:381-390. doi: 10.1016/j.biortech.2019.03.148. Epub 2019 Mar 31.
A green and efficient enzyme assisted three phase partitioning (EA-TPP) process was firstly developed to extract microalgal lipids using wet Nannochloropsis sp. biomass. In the pretreatment of microalgal biomass by four hydrolytic enzymes, TPP obtained a higher TFAs lipid extraction efficiency by cellulase compared with the resting enzymes. After optimization by EA-TPP of the wet disrupted Nannochloropsis biomass (3 g), the maximum TFAs extraction yield (90.40%) was attained at 20% ammonium sulphate, 6-7 pH, 1:2 slurry/tert-butanol ratio and 70 °C for 2 h incubation time and two extraction cycles. Moreover, results also revealed that the lipidic species compositions of Nannochloropsis sp. biomass were greatly related with the EA-TPP parameters. In the laboratory scale for wet disrupted microalgae biomass, EA-TPP process achieved 88.70% TFAs extraction yield under the optimized conditions. In all, EA-TPP process could be a promising approach to extract microalgae lipids for food application using wet microalgae biomass.
首次开发了一种绿色高效的酶辅助三相分配(EA-TPP)工艺,用于从湿的 Nannochloropsis sp. 生物质中提取微藻油脂。在四种水解酶预处理微藻生物质的过程中,与休止酶相比,纤维素酶使 TPP 获得了更高的 TFA 脂质提取效率。通过 EA-TPP 对湿破碎的 Nannochloropsis 生物质(3 g)进行优化后,在 20%硫酸铵、6-7 pH、1:2 浆料/叔丁醇比和 70°C 下孵育 2 小时和两个提取循环的条件下,可获得最大 TFA 提取产率(90.40%)。此外,结果还表明,Nannochloropsis sp. 生物质的脂质种类组成与 EA-TPP 参数密切相关。在实验室规模下对湿破碎的微藻生物质进行处理,在优化条件下,EA-TPP 工艺可实现 88.70%的 TFA 提取产率。总之,EA-TPP 工艺可能是一种很有前途的方法,可用于从湿微藻生物质中提取用于食品应用的微藻油脂。