过饱和度
结晶
结晶度
乳状液
蜂蜡
化学工程
材料科学
化学
Crystal(编程语言)
亚麻籽油
结晶学
蜡
有机化学
复合材料
程序设计语言
计算机科学
工程类
作者
Wanjun Han,Xiuhang Chai,Farah Zaaboul,Chin Ping Tan,Yanwen Sun,Chunhuan Liu,Yuanfa Liu
标识
DOI:10.1016/j.lwt.2022.113594
摘要
Beeswax (BW) is widely used in structured oil to mimic fat crystals, due to its needle-like crystal structure and effective gelling ability. In this study, the crystallization behavior of BW in liquid oil was analyzed at different cooling temperatures and BW concentrations. Results showed that temperature and BW concentrations played a role in reaching the supersaturation state for the system of BW in linseed oil, with 40%BW at 20 °C and 20%BW at 5 °C, respectively. Short nuclear induction time and higher crystallinity of BW were found at lower cooling temperatures, promoting formation of supersaturation state. In addition, the apparent activation energy of the crystallization process indicates that crystallization is inhibited at high BW concentrations. Furthermore, higher supersaturation levels and lower cooling temperatures affected the droplet size and crystal structure of the O/W emulsions; these conditions accelerated the penetration of crystals through the interfacial membrane and led to droplet aggregation and coalescence. High supersaturation level and low cooling temperature promoted emulsion instability and had a remarkable impact on food quality.
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