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首页> 外文期刊>The Journal of Supercritical Fluids >Influence of pretreatment on supercritical CO2 extraction from Nannochloropsis oculata
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Influence of pretreatment on supercritical CO2 extraction from Nannochloropsis oculata

机译:预处理对超临界CO2提取超临界CO2的影响

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This work demonstrates that supercritical carbon dioxide extraction is efficient for the complete recovery of neutral lipids from microalgae with a water content up to 20 wt%, allowing thus a further full characterization of this oil. This is a first useful step in the framework of lipid production from microalgae either for nutraceutical, food or for energy applications. This study is particularly focused on the influence of the pretreatments upon extraction kinetics and yields. This study proposes a complete study at laboratory scale (lOg per batch of dry biomass) of the influence of pretreatments (type of drying and grinding) and of water content on the extraction kinetics and yields as well as on the oil composition in terms of lipi-dic classes and profiles. Two drying pretreatments (drying under air flow and freeze-drying) applied on Nannochloropsis oculata were studied. Extraction experiments were carried out at 40 MPa, 333 K, with a carbon dioxide flow rate of 0.5 kg h~(-1) and for different granulometries. Results showed that drying under air flow at 308 K is the most adequate pretreatment leading to the most rapid kinetics. Whatever the pretreatment used, the extracted oil contains more than 90wt% of triglycerides and does not contain phospholipids. As expected, the smaller the particle size, the faster the extraction kinetics. Finally, an increase in the biomass water content up to 20 wt% increases the global extraction kinetics (extraction of both water and oil) but appears to have no influence on oil extraction yields. Moreover, the extraction of neutral lipids happens to be complete for a C02/charge mass ratio ranging from 30 to 130 depending on the operating conditions and on the characteristics of the treated biomass. Finally, pilot scale experiments were performed with batches up to 15 kg in order to evaluate the influence of pressure and particle size on the extraction kinetics and yields. Extracts obtained at 333 K with operating pressures of 50 MPa and 85 MPa have similar compositions and do not contain phospholipids.
机译:这项工作表明,超临界二氧化碳萃取对于从微藻中完全回收中性脂质非常有效,水分含量高达20 wt%,因此可以进一步完全表征该油。这是从微藻生产脂质的框架中的第一个有用步骤,无论是用于营养保健,食品还是用于能源应用。这项研究特别关注预处理对萃取动力学和收率的影响。这项研究建议在实验室规模(每批次干生物质10克)中进行全面研究,研究预处理(干燥和研磨的类型)和水分含量对萃取动力学和产率以及以油脂计的油成分的影响。 -dic类和配置文件。研究了对拟南芥(Nannochloropsis oculata)进行的两种干燥预处理(气流干燥和冷冻干燥)。萃取实验在40 MPa,333 K的条件下进行,二氧化碳流量为0.5 kg h〜(-1),适用于不同的粒度。结果表明,在308 K的空气流下干燥是最合适的预处理,从而导致动力学最快。无论采用何种预处理,提取的油均含有90%(重量)以上的甘油三酸酯,并且不含磷脂。如预期的那样,粒径越小,萃取动力学越快。最后,将生物质水含量提高到20 wt%,可以提高总体提取动力学(水和油的提取),但似乎对油的提取率没有影响。此外,取决于操作条件和经处理的生物质的特性,对于CO 2 /电荷质量比为30至130,中性脂质的提取恰好完成。最后,对15公斤以下的批次进行了中试规模的实验,以评估压力和粒径对萃取动力学和收率的影响。在333 K的操作压力下分别以50 MPa和85 MPa获得的提取物具有相似的组成,并且不含磷脂。

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