琼脂糖
膜乳化
乳状液
材料科学
表面积体积比
色谱法
化学工程
粒径
化学
工程类
作者
Bo Zhang,Tingyuan Yang,Qibao Wang,Guifeng Zhang,Junsheng Huo,Jian Huang,Lianyan Wang
标识
DOI:10.1016/j.colsurfa.2016.03.039
摘要
In this study, the uniform alginate-agarose microcapsules entrapping FeSO4 were successfully fabricated by premix membrane emulsification technique combined with ionic crosslinking solidification method. It was the first time to employ four phase emulsions system of W1/O1/W2/O2 for encapsulating FeSO4 into alginate-agarose microcapsules. We systematically investigated how the preparation parameters including type of oil phase and emulsifier, concentrations of alginate and agarose and volume ratios between oil and water phase influenced the stability of emulsions, the morphology and size distributions of microcapsules and loading efficiency of FeSO4. We found that the stability of emulsion was improved with the increase of viscosity and density of outer oil phase (O2), the concentration of emulsifier as well as the volume ratio between inner water phase and inner oil phase (W1/O1) within a certain range. Besides, loading capacity of Fe2+ in alginate/agarose microcapsules presented an increase tendency with the decrease of the volume ratio between external water phase (W2) and primary emulsion [W2/(O1/W1) (v/v)], and also decreased with the concentration of W2. Furthermore, Young's modulus grew significantly with the increase of agarose/alginate (w/w). According to the above investigation, the optimal preparation parameters were obtained, and the microcapsules prepared with these parameters showed spherical and smooth morphology, average size of 2 μm in diameter, narrow size distributions and higher FeSO4 loading efficiency of 13.7 mg/g. The microcapsules could be applied for the human body iron supplement, and the encapsulation could well shield bad taste of FeSO4.
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