Novel Biobased Sodium Shellac for Wrapping Disperse Multiscale Emulsion Particles

虫胶 乳状液 材料科学 微尺度化学 化学工程 胶束 两亲性 疏水 复合材料 聚合物 有机化学 化学 水溶液 涂层 共聚物 数学教育 工程类 数学
作者
Qingming Luo,Kai Li,Juan Xu,Kun Li,Hua Zheng,Lanxiang Liu,Hong Zhang,Yanlin Sun
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:64 (49): 9374-9380 被引量:32
标识
DOI:10.1021/acs.jafc.6b04417
摘要

As a result of amphipathic oligomers driven by different forces including hydrophobic interaction, electrostatic interaction, H-bond, and heat, multiscale emulsion particles can be wrapped. In this paper we attempted to use sodium shellac as a novel biobased wrapping material. The H+, Ca+, and spray-drying methods were employed to solidify the complex vitamin E (VE) emulsion with sodium shellac to fabricate the beads. The VE loading and encapsulation efficiency were used to evaluate the wrapping process. The results show that the microscale VE emulsion particles could easily be wrapped by these three means. However, due to the high solid content of the nanoscale emulsion particles, it was difficult to wrap them by spray-drying method. The beads solidified by H+ had higher VE loading and encapsulation efficiency than those solidified by other methods and even grabbed the hydrophobic molecule VE from the emulsion micelles. At an RVS of 1:4, these two parameters, which are obtained by the nanoscale emulsion particle wrapping process, could reach 18.9 and 64.3% supported by the single driving force of hydrophobic interaction. Above all, this research introduced a novel wrapping material driven by different forces that can aggregate and wrap the emulsion micelles. It can be widely used in the medical, food, and cosmetics industries.

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