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Microencapsulation of Gac Oil by Spray Drying: Optimization of Wall Material Concentration and Oil Load Using Response Surface Methodology

机译:喷雾干燥法对Gac油进行微囊化:使用响应面法优化壁材料的浓度和油负荷

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摘要

The objective of this study was to optimize the wall material concentration and the oil load on the encapsulation of Gac oil using spray drying by response surface methodology. Results showed that the quadratic polynomial model was sufficient to describe and predict encapsulation efficiencies in terms of oil, P-carotene, lycopene, peroxide value (PV), moisture content (MC), and total color difference (△E) with R~2 values of 0.96, 0.95, 0.86, 0.89, 0.88, and 0.87, respectively. Under optimum conditions (wall concentration of 29.5% and oil load of 0.2), the encapsulation efficiencies for oil, β-carotene, lycopene, PV, MC, and △E were predicted and confirmed as 92%, 80%, 74%, 3.91 meq/kg, 4.14% and 12.38, respectively. The physical properties of the encapsulated oil powders obtained by different formulations were also determined. It was concluded that the protein-polysaccharide matrix as the wall material was effectively used for spray-drying encapsulation of Gac oil.
机译:这项研究的目的是通过响应表面方法进行喷雾干燥,以优化Gac油包封的壁材料浓度和油负载。结果表明,二次多项式模型足以描述和预测油,P-胡萝卜素,番茄红素,过氧化物值(PV),水分含量(MC)和总色差(△E)在R〜2下的包封效率。值分别为0.96、0.95、0.86、0.89、0.88和0.87。在最佳条件下(壁浓度为29.5%,油负荷为0.2),预测油,β-胡萝卜素,番茄红素,PV,MC和△E的包封效率为92%,80%,74%,3.91毫克当量/千克,分别为4.14%和12.38。还确定了通过不同配方获得的包封的油粉的物理性质。结论是,蛋白质-多糖基质作为壁材料可有效地用于Gac油的喷雾干燥封装。

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