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Effect of Drying Methods on Lutein Content and Recovery by Supercritical Extraction from the Microalga

机译:干燥方法对微藻超临界萃取的叶黄素含量及恢复的影响

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摘要

In this study, we determined the effect of drying on extraction kinetics, yield, and lutein content and recovery of the microalga Muriellopsis sp. (MCH35) using the supercritical fluid extraction (SFE) process. The strain was cultivated in an open-raceways reactor in the presence of seawater culture media and arid outdoor conditions in the north of Chile. Spray-drying (SD) and freeze-drying (FD) techniques were used for dehydrating the microalgal biomass. Extraction experiments were performed by using Box-Behnken designs, and the parameters were studied: pressure (30–50 MPa), temperature (40–70 °C), and co-solvent (0–30% ethanol), with a CO2 flow rate of 3.62 g/min for 60 min. Spline linear model was applied in the central point of the experimental design to obtain an overall extraction curve and to reveal extraction kinetics involved in the SFE process. A significant increase in all variables was observed when the level of ethanol (15–30% v/v) was increased. However, temperature and pressure were non-significant parameters in the SFE process. The FD method showed an increase in lutein content and recovery by 0.3–2.5-fold more than the SD method. Overall, Muriellopsis sp. (MCH35) is a potential candidate for cost-effective lutein production, especially in desert areas and for different biotechnological applications.
机译:在这项研究中,我们确定了干燥对萃取动力学,产量和叶黄素含量的影响,并恢复Microalga Muriellopsis sp。 (MCH35)使用超临界流体提取(SFE)工艺。在智利北部的海水培养基和干旱的户外条件下,在开放的滚道反应器中培养该菌株。喷雾干燥(SD)和冷冻干燥(FD)技术用于脱水微藻生物质。通过使用Box-Behnken设计进行提取实验,研究参数:压力(30-50MPa),温度(40-70℃)和共溶剂(0-30%乙醇),具有CO 2流动速率为3.62克/分钟60分钟。样条线性模型应用于实验设计的中心点,以获得整体提取曲线并揭示参与SFE过程中的提取动力学。当乙醇水平增加(15-30%v / v)增加时,观察到所有变量的显着增加。然而,温度和压力在SFE过程中是非显着的参数。 FD方法显示叶黄素含量的增加,比SD方法增加0.3-2.5倍。总体而言,穆里奥斯科斯州SP。 (MCH35)是一种潜在候选者,用于具有成本效益的叶黄素生产,特别是在沙漠地区和不同的生物技术应用中。

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