食品科学 ›› 2017, Vol. 38 ›› Issue (21): 106-111.doi: 10.7506/spkx1002-6630-201721017

• 基础研究 • 上一篇    下一篇

4 种物理方法制备香草兰精油微胶囊的比较分析

朱红梅,张彦军,徐飞,田建文,初众   

  1. (1.宁夏大学农学院,宁夏?银川 750021;2.中国热带农业科学院香料饮料研究所,海南?万宁 571533)
  • 出版日期:2017-11-15 发布日期:2017-11-01
  • 基金资助:
    中央级公益性科研院所基本科研业务费专项(1630142016002;1630142016004)

Comparative Analysis of Vanilla Essence Oil Microcapsules Prepared by Four Physical Methods

ZHU Hongmei, ZHANG Yanjun, XU Fei, TIAN Jianwen, CHU Zhong   

  1. (1. College of Agronomy, Ningxia University, Yinchuan 750021, China; 2. Spice and Beverage Research Institute, Chinese Academy of Tropical Agricultural Sciences, Wanning 571533, China)
  • Online:2017-11-15 Published:2017-11-01

摘要: 本研究采用菠萝蜜种子淀粉作为壁材,利用饱和水溶液法(saturated water solution method,SWSM)、分子包埋法(paste method,PM)、超声波法(ultrasonic method,UM)、喷雾干燥法(spray-drying method,SDM)4?种物理方法包埋香草兰精油,通过测定产率、包埋率、载油量、缓释性、贮藏稳定性等指标,对比分析4?种物理方法包埋效果。结果表明:香草兰精油微胶囊产率在74.34%~92.06%,对应的包埋率范围为68.90%~74.49%,载油量为21.27%~26.71%。其中SDM的产率和包埋率最大,分别为92.06%和74.49%,PM产率和包埋率最小,分别为74.34%和68.90%。4?种方法均能成功包埋香草兰精油,且色泽上无明显差异,微胶囊为均一球状。在粒径方面,SDM制备的香草兰精油微胶囊粒径最大,为600?nm左右,SWSM最小,为200?nm左右。SWSM制备的香草兰精油微胶囊贮存50?d后香兰素保留率为49.11%,贮存15?d后过氧化值为14.24?mmol/kg,说明缓释性、贮藏稳定性较其他3?种香草兰精油微胶囊好。综合所有指标,对比其他3?种方法,SWSM是香草兰精油微胶囊的最佳制备方法。

关键词: 物理法, 微胶囊化, 菠萝蜜种子淀粉, 香草兰精油

Abstract: Vanilla essence oil microcapsules were prepared with jackfruit seed starch as the shell material by four physical methods including saturated water solution method (SWSM), paste method (PM), ultrasonic method (UM), and spray-drying method (SDM). They were comparatively evaluated in terms of product yield, microencapsulation efficiency, loading, slow release capacity, storage stability and other physicochemical properties. The data we obtained showed that product yields range from 74.34% to 92.06%, microencapsulation efficiencies ranged from 68.90% to 74.49%, and loadings varied between 21.27% and 26.71%. SDM showed the maximum yield (92.06%) and microencapsulation efficiency (74.49%) among the four methods, while the minimum yield and microencapsulation efficiency of 74.34% and 68.90%, respectively were obtained by PM. Fourier transform infrared spectroscopy results showed that vanilla essence oil could be embedded by the four methods successfully. All four microcapsules showed no significant color differences and were uniformly spherical in shape. The microcapsules prepared by SDM showed the biggest particle size (around 600 nm), whereas those prepared by SWSM exhibited the smallest particle size (around 200 nm). The SDM microcapsules showed the best thermal stability but the lowest slow-releasing potential and storage stability, and the retention rate of vanillin and peroxide value were 49.11% and 14.24 mmol/kg after 50 and 15 days of storage, respectively. Overall, compared to the other three methods, SWSM was the best method for preparing vanilla essence oil microcapsules.

Key words: physical method, microencapsulation, jackfruit seed starch, vanilla essence oil

中图分类号: