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Stabilizing the Oil-in-Water Emulsions Using the Mixtures of Dendrobium Officinale Polysaccharides and Gum Arabic or Propylene Glycol Alginate

机译:利用石斛型多糖和胶阿拉伯语或丙二醇藻酸盐的混合物稳定水包油乳液

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Coconut oil-in-water emulsions were prepared using three polysaccharides: Dendrobium officinale polysaccharide (DOP), propylene glycol alginate (PGA), gum arabic (GA) and their polysaccharide complexes as emulsifiers. The effects of the ratio of the compounded polysaccharides on their apparent viscosity and interfacial activity were explored in this study. The average particle size, zeta potential, microstructure, rheological properties, and physical stability of the emulsions prepared with different compound-polysaccharides were studied. The results showed that mainly DOP contributed to the apparent viscosity of the compound-polysaccharide, while the interfacial activity and zeta potential were mainly influenced by PGA or GA. Emulsions prepared with compound-polysaccharides exhibited smaller average particle sizes, and microscopic observations showed smaller droplets and less droplet aggregation. In addition, the stability analysis of emulsions by a dispersion analyzer LUMiSizer showed that the emulsion prepared by compounding polysaccharides had better physical stability. Finally, all of the above experimental results showed that the emulsions prepared by PGA:DOP = 2:8 (total concentration = 1.5 wt%) and 2.0% GA + 1.5% DOP were the most stable.
机译:使用三种多糖制备椰子油 - 水乳液:石斛兰内白糖(DOP),丙二醇藻酸盐(PGA),阿拉伯(GA)及其多糖复合物作为乳化剂。本研究探讨了复合多糖与复合多糖比例对其表观粘度和界面活性的影响。研究了用不同化合物 - 多糖制备的乳液的平均粒度,ζ电位,微观结构,流变性和物理稳定性。结果表明,主要的DOP有助于化合物 - 多糖的表观粘度,而界面活性和Zeta电位主要受PGA或Ga的影响。用化合物 - 多糖制备的乳液表现出较小的平均粒度,并且微观观察显示较小的液滴和较少的液滴聚集。此外,分散分析仪Lumisizer的乳液的稳定性分析表明,通过复合多糖制备的乳液具有更好的物理稳定性。最后,上述所有实验结果表明,PGA制备的乳液:DOP = 2:8(总浓度= 1.5wt%)和2.0%Ga + 1.5%DOP是最稳定的。

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