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Optimizing the Supercritical Fluid Extraction of Lutein from Corn Gluten Meal

机译:优化玉米麸质膳食的超临界流体提取

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摘要

Supercritical CO2 was used to extract xanthophylls from corn gluten meal (CGM). Data from a Box-Behnken experimental design was used to model optimal lutein extraction based on extraction temperature (40-80 A degrees C), pressure (5500-7500 psi), and fraction of ethanol co-solvent added (5-15% by volume of total solvent). Lutein extraction was also strongly correlated with zeaxanthin extraction with a correlation coefficient (r) of 0.995. The response surface model for lutein extraction indicated that the amount of co-solvent had the largest impact (p & 0.001) on lutein extraction yield. Influence of temperature and pressure were limited to quadratic or interaction effects (p & 0.15). The optimal lutein extraction conditions predicted with the model were a temperature of 40 A degrees C, pressure of 6820 psi, and co-solvent (ethanol) addition of 15% by volume. At these conditions, lutein recovery from CGM was 2.6 times higher than the amount recovered with a quintuple extraction using ethanol and chloroform/dichloromethane (2:1). The strong linear effect of co-solvent addition suggests the possibility of further increasing lutein extraction with the addition of more co-solvent. CGM protein loss during extraction was also calculated and determined to be negligible.
机译:超临界CO2用于从玉米麸质膳食(CGM)中提取Xhortophylls。 Box-Behnken实验设计的数据用于基于提取温度(40-80℃),压力(5500-7500psi)和加入的乙醇共溶剂的一部分(5-15%)来模拟最佳叶黄素提取总溶剂的体积)。叶黄素萃取也与Zeaxanthin萃取的强烈相关,其相关系数(R)为0.995。叶黄素提取的响应表面模型表明共溶剂的量具有最大的影响(P& 0.001)对叶黄素提取产量的影响。温度和压力的影响仅限于二次或相互作用效应(P& 0.15)。用模型预测的最佳叶黄素提取条件为40℃,压力为6820psi的温度,并且共溶剂(乙醇)加入15%(体积)。在这些条件下,通过乙醇和氯仿/二氯甲烷(2:1),CGM从CGM中回收的叶黄素回收率高2.6倍。共溶剂添加的强线性效果表明,通过添加更多共溶剂,进一步增加叶黄素萃取的可能性。还计算出萃取过程中的CGM蛋白质损失并确定可忽略不计。

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