食品科学 ›› 2024, Vol. 45 ›› Issue (6): 199-207.doi: 10.7506/spkx1002-6630-20230605-037

• 食品工程 • 上一篇    下一篇

均质和杀菌条件对核桃油微胶囊化的影响及贮藏稳定性

王明明,陈银艳,余智瑾,盛军,赵存朝   

  1. (1.云南农业大学食品科学技术学院,云南 昆明 650201;2.昆明生物制造研究院有限公司,云南 昆明 650201;3.云南省高原特色农业产业研究院,云南 昆明 650201)
  • 出版日期:2024-03-25 发布日期:2024-04-03
  • 基金资助:
    云南农业大学第十五届学生创新创业行动基金项目(2022XGKY025);云南省省市一体化专项(202302AN360002)

Effects of Homogenization and Sterilization Conditions on microencapsulation and Storage Stability of Walnut Oil

WANG Mingming, CHEN Yinyan, YU Zhijin, SHENG Jun, ZHAO Cunchao   

  1. (1. College of Food Science and Technology, Yunnan Agricultural University, Kunming 650201, China; 2. Kunming Biological Manufacturing Research Institute Co. Ltd., Kunming 650201, China; 3. Yunnan Plateau Characteristic Agricultural Industry Research Institute, Kunming 650201, China)
  • Online:2024-03-25 Published:2024-04-03

摘要: 为研究不同均质及杀菌条件下乳化液特性与微胶囊包埋率、表面油质量分数之间的相关性,通过LUMiSizer 611分散体分析仪探究不同条件下乳化液稳定性、粒径大小和粒径分布规律对微胶囊包埋率的影响,并对最优条件下的微胶囊形貌和贮藏稳定性进行分析。结果表明,在均质压力40 MPa、均质温度65 ℃和杀菌条件为85 ℃/15 min时乳化液不稳定性指数和平均粒径最小,粒径分布离散度总体呈下降趋势,此时包埋率分别为95.38%、97.12%和94.23%;在上述最适工艺条件下核桃油微胶囊平均粒径为6.62 μm,表面油质量分数为1.03%,微胶囊化包埋率为96.41%,在扫描电镜下观察微胶囊表面和内部结构良好,具有良好的包埋效果。加速贮藏实验表明,与未包埋的核桃油相比,核桃油微胶囊具有良好的氧化稳定性;在不同条件下经过35 d贮藏,其保留率下降幅度有所不同,将微胶囊于低温、避光、无氧或氧气含量很少条件下保存时效果最佳。本研究可为核桃油乳液和微胶囊产品的均质和杀菌工艺选择以及应用提供理论依据。

关键词: 核桃油;均质条件;杀菌条件;粒径;包埋率;稳定性

Abstract: In order to study the correlation between emulsion properties and microencapsulation rates and surface oil contents under different homogenization and sterilization conditions, the effects of emulsion stability, particle size, and particle size distribution on microencapsulation efficiency under different conditions were measured using a LUMiSizer 611 dispersion analyzer, and the morphological properties and storage stability of microcapsules under optimal conditions were analyzed. The results showed that the homogenization pressure and temperature and the sterilization conditions that provided the smallest emulsion stability index and average particle size were 40 MPa, 65 ℃ and 85 ℃/15 min, respectively. Under these conditions, particle size distribution was less scattered, and encapsulation rates of 95.38%, 97.12% and 94.23% were obtained, respectively. The average particle size of walnut oil microcapsules was 6.62 μm, with a surface oil content of 1.03% and an encapsulation rate of 96.41%. The surface and internal structure of the microcapsules were found to be good by scanning electron microscopy (SEM) indicating good encapsulation efficiency. Under accelerated storage conditions, walnut oil microcapsules showed better stability than free walnut oil. After 35 days of storage under different conditions, the reduction in the retention rate of walnut oil microcapsules varied, and the highest retention rate was achieved under the conditions of low temperature, darkness, and no oxygen or low oxygen concentration. This study could provide a theoretical basis for the selection and application of homogenization and sterilization processes for walnut oil emulsion and microcapsule products.

Key words: walnut oil; homogenization conditions; sterilization conditions; particle size; encapsulation rate; stability

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