Biochemical Process Engineering, Division of Chemical Engineering, Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 971-87 Luleå, Sweden.
Molecules. 2018 Jun 28;23(7):1562. doi: 10.3390/molecules23071562.
Microbial oils, obtained from oleaginous microorganisms are an emerging source of commercially valuable chemicals ranging from pharmaceuticals to the petroleum industry. In petroleum biorefineries, the microbial biomass has become a sustainable source of renewable biofuels. Biodiesel is mainly produced from oils obtained from oleaginous microorganisms involving various upstream and downstream processes, such as cultivation, harvesting, lipid extraction, and transesterification. Among them, lipid extraction is a crucial step for the process and it represents an important bottleneck for the commercial scale production of biodiesel. Lipids are synthesized in the cellular compartment of oleaginous microorganisms in the form of lipid droplets, so it is necessary to disrupt the cells prior to lipid extraction in order to improve the extraction yields. Various mechanical, chemical and physicochemical pretreatment methods are employed to disintegrate the cellular membrane of oleaginous microorganisms. The objective of the present review article is to evaluate the various pretreatment methods for efficient lipid extraction from the oleaginous cellular biomass available to date, as well as to discuss their advantages and disadvantages, including their effect on the lipid yield. The discussed mechanical pretreatment methods are oil expeller, bead milling, ultrasonication, microwave, high-speed and high-pressure homogenizer, laser, autoclaving, pulsed electric field, and non-mechanical methods, such as enzymatic treatment, including various emerging cell disruption techniques.
微生物油脂是从油脂微生物中获得的一种新兴的有商业价值的化学品来源,其应用范围从制药到石油工业。在石油生物炼制厂中,微生物生物质已成为可再生生物燃料的可持续来源。生物柴油主要由来源于油脂微生物的油脂生产,涉及各种上下游工艺,如培养、收获、脂质提取和酯交换。其中,脂质提取是该过程的关键步骤,也是生物柴油商业规模生产的重要瓶颈。脂质以脂滴的形式在油脂微生物的细胞隔室中合成,因此在进行脂质提取之前,有必要破坏细胞,以提高提取收率。目前采用了各种机械、化学和物理化学预处理方法来破坏油脂微生物的细胞膜。本文的目的是评估迄今为止可用于从油脂细胞生物质中有效提取脂质的各种预处理方法,并讨论它们的优缺点,包括对脂质产量的影响。讨论的机械预处理方法包括榨油机、珠磨、超声、微波、高速高压匀浆器、激光、高压灭菌、脉冲电场以及非机械方法,如酶处理,包括各种新兴的细胞破碎技术。