Department of Chemical and Biomolecular Engineering, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, Republic of Korea.
LG Chemical Research Park, 188 Munji-ro, Yuseong-gu, Daejeon, 34122, Republic of Korea.
Bioprocess Biosyst Eng. 2018 May;41(5):671-678. doi: 10.1007/s00449-018-1901-8. Epub 2018 Feb 16.
Microalgae are regarded as a promising source of biofuels, and the concept of a microalgae-based biorefinery has attracted increasing attention in recent years. From an economic perspective, however, the process remains far from competitive with fossil fuels. This is particularly true of lipid extraction, due in part to the energy-intensive drying step. As a result, wet extraction methods have been studied as an economic alternative. In the present study, a novel extraction approach which utilizes high shear stress mixing was adopted and demonstrated for simultaneous lipid extraction and cell disruption to enable the retrieval of lipids directly from concentrated wet biomass. When a high shear mixer (HSM) was used to extract lipid from a dense biomass (> 350 g/L) of the oleaginous algae Aurantiochytrium sp., it exhibited a yield of esterifiable lipids which exceeded 80% in 10 min at 15,000 rpm with various solvent types. The HSM was found to improve the lipid yields substantially with solvents less miscible with either lipids or water, such that the range of Hansen solubility parameters for the usable solvents became 3.3 times wider (14.9-26.5 MPa). The HSM, which appeared effectively to loosen the water barrier that prevents solvent molecules from penetrating through the cell envelope, was found to be more efficient with hexane, hexane/isopropanol, and ethanol, all of which showed nearly identical lipid yields compared to the dry extraction process. The HSM can, indeed, offer a powerful mechanical means of lipid extraction with non-polar and less toxic solvents from wet biomass.
微藻被视为生物燃料的有前途的来源,近年来,基于微藻的生物炼制概念引起了越来越多的关注。然而,从经济角度来看,该过程仍然远不能与化石燃料竞争。这在脂质提取方面尤其如此,部分原因是干燥步骤需要大量能源。因此,已经研究了湿提取方法作为经济替代方法。在本研究中,采用了一种利用高剪切应力混合的新型提取方法,并对其进行了研究,以同时进行脂质提取和细胞破碎,从而能够直接从浓缩的湿生物质中提取脂质。当高剪切混合器(HSM)用于从密集的油脂藻类 Aurantiochytrium sp. 的生物质(>350 g/L)中提取脂质时,它在 15,000 rpm 下用各种溶剂类型在 10 分钟内表现出超过 80%的酯化脂质产率。发现 HSM 可以大大提高与脂溶性或水溶性较差的溶剂的脂质产率,使得可用溶剂的 Hansen 溶解度参数范围扩大了 3.3 倍(14.9-26.5 MPa)。HSM 似乎有效地松开了阻止溶剂分子穿透细胞包膜的水屏障,对于正己烷、正己烷/异丙醇和乙醇等溶剂,其效率更高,与干提取过程相比,所有这些溶剂的脂质产率几乎相同。HSM 确实可以为从湿生物质中提取非极性和毒性较小的溶剂中的脂质提供一种强大的机械手段。