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首页> 外文期刊>Journal of the American Oil Chemists' Society >Time Fractionation of Minor Lipids from Cold-Pressed Rapeseed Cake Using Supercritical CO2
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Time Fractionation of Minor Lipids from Cold-Pressed Rapeseed Cake Using Supercritical CO2

机译:超临界CO2对冷压菜籽饼中次要脂质的时间分级

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摘要

This work explored the possibility of using supercritical carbon dioxide (SC-CO2) to achieve fractionation of pre-pressed rapeseed (Brassica napus) cake oil at 30–50 MPa, at 40 or 80 °C, and increase the concentration of minor lipids (sterols, tocopherols, carotenoids) in the oil. Minor lipids are partially responsible for desirable antioxidant effects that protect against degradation and impart functional value to the oil. The weight and concentration of minor lipids in oil fractions collected during the first 60 min were analyzed. Cumulative oil yield increased with pressure, and with temperature at ≥40 MPa, but was lower at 80 °C than at 40 °C when working at pressure ≤35 MPa. Differences in solubility between the oil and minor lipids explained fractionation effects that were small for tocopherols. Unlike tocopherols, which are more soluble in SC-CO2 than the oil, sterols and carotenoids are less soluble than the oil, and their concentration increased in the later stages of extraction, particularly at ≥40 MPa, when there was not enough oil to saturate the CO2 phase. Because of the fractionating effects on rapeseed oil composition, there was an increase in the antioxidant activity of the oil in the second half as compared to the first half of the extraction. Consequently, this study suggests that SC-CO2 extraction could be used to isolate vegetable oil fractions with increased functional value.
机译:这项工作探讨了使用超临界二氧化碳(SC-CO2 )在40至80℃,30至50 MPa下分馏预压菜籽(甘蓝型油菜)饼油的可能性,并提高了浓度油中微量脂质(固醇,生育酚,类胡萝卜素)的含量。次要脂质部分负责所需的抗氧化剂作用,这些作用可防止降解并赋予油以功能价值。分析在最初60分钟内收集的油馏分中次要脂质的重量和浓度。当压力≤35MPa时,累积油产率随压力和温度≥40 MPa而增加,但在80°C时比在40°C时低。油和次要脂质之间的溶解度差异说明了生育酚的分馏效应很小。与生育酚不同,生育酚和类胡萝卜素与生育酚的溶解度比油脂要低,而甾醇和类胡萝卜素的溶解度却比油脂低,在提取的后期阶段,尤其是在≥40 MPa的情况下,它们的浓度会增加。足够的油使CO2相饱和由于对菜籽油成分的分馏作用,与提取的前半部分相比,该油在后半部分的抗氧化活性有所提高。因此,这项研究表明,SC-CO2 萃取可用于分离功能价值更高的植物油馏分。

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