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Using Response Surface Methodology to Optimize Microencapsulation of Oil from Schisandra ChinensisfTurcz.) Baill

机译:使用响应面方法从Schisandra Chinensisfturcz优化油的微胶囊。)扑克

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In order to avoid the oxidation of the oil from Schisandra chinensis (Turcz.) which has higher levels of unsaturated fatty acids, it was studied by spray drying method with β-cyclodextrin and glutin as wall materials and sucrose ester as emulsifier, and the optimal technological parameters were determined by response surface methodology (RSM). Results show that the optimal homogenizing pressure is 32.34MPa, the temperature of inlet and outlet air is 180.95 V and 81.66°C respectively, and the embedding rate can reach 91.36%.The particle of microencapsulation produced characterizes in milky white and the special fragrance. The moisture content is 1.28%, the density is 0.82g/cm3 and the diameter is 8pm. Through microscopes the particle is well-distributed and quite complete. The surface has tiny concavity without apparent defect. Above all, these results are reasonable, enlarging the uses of Schisandra chinensis (Turcz.) Baill.
机译:为了避免含有较高水平的不饱和脂肪酸的石油氧化油(Turcz。)通过用β-环糊精和谷氨酸作为壁材料和蔗糖酯作为乳化剂来研究其作为乳化剂的糖粉和最佳的通过响应表面方法(RSM)确定技术参数。结果表明,最佳均化压力为32.34MPa,入口和出口空气的温度分别为180.95 V和81.66°C,嵌入速率可达91.36%。微胶囊颗粒在乳白色和特殊香气中表现为特征。水分含量为1.28%,密度为0.82g / cm 3,直径为8pm。通过显微镜,粒子是良好分布的,完整。没有明显缺陷的表面具有微小的凹面。最重要的是,这些结果是合理的,扩大了Schisandra Chinensis(Turcz。)桶的用途。

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