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Optimization and evaluation of wheat germ oil extracted by supercritical CO2

机译:超临界CO2萃取小麦胚芽油的优化与评价

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摘要

A Box-Behnken design combined with response surface methodology (RSM) was used to optimize the parameters of supercritical CO2 extraction (SFE) of wheat germ oil. The quality of the oil and residual meal obtained by SFE and solvent extraction (SE) were evaluated from proximate analysis, fatty acid composition and antioxidant activity. A maximum oil yield of 10.46% was achieved under the optimal conditions of wheat germ particle size 60-80 mesh; water content 4.37%; pressure 30MPa; temperature 40°C extraction time 1.7h. The oil obtained by SFE showed stronger DPPH radical scavenging ability than SE oil at the same concentration. The fatty acid composition of SFE oil was similar to SE oil. Higher contents of protein (34.3%) and lysine (2.47g/100g) were found in the residual meal obtained by SFE. The results show that oil and defatted meal obtained by SFE can be promising nutritional sources for food.
机译:将Box-Behnken设计与响应面方法(RSM)结合使用,以优化小麦胚芽油的超临界CO2萃取(SFE)参数。通过邻近分析,脂肪酸组成和抗氧化活性评估了通过SFE和溶剂萃取(SE)获得的油和残渣的质量。在小麦胚芽粒径为60-80目的最佳条件下,最高出油率为10.46%。含水量4.37%;压力30MPa;温度40°C提取时间1.7h。在相同浓度下,通过SFE获得的油显示出比SE油更强的DPPH自由基清除能力。 SFE油的脂肪酸组成类似于SE油。通过SFE获得的残留粕中发现蛋白质(34.3%)和赖氨酸(2.47g / 100g)的含量更高。结果表明,通过SFE获得的油和脱脂粗粉可以成为有前景的食品营养来源。

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