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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Characterization of core-shell calcium-alginate macrocapsules fabricated by electro-coextrusion
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Characterization of core-shell calcium-alginate macrocapsules fabricated by electro-coextrusion

机译:电共挤出制备核壳型海藻酸钙大胶囊的表征

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摘要

Spherical macrocapsules, where calcium-alginate shell enclosed olive oil as a model core medium, were fabricated by electro-coextrusion. The effects of three key process factors, including alginate concentration in shell fluid (0.5-4.0%), shell-to-core flow rate ratio (4-12 at a fixed core flow rate of 0.05 mL/min), and applied voltage (0-10 kV), on the morphological and textural characteristics of the macrocapsules were analyzed using response surface methodology. The analysis showed that the diameter, shell thickness, hardness, and breaking energy of the macrocapsules were in the ranges of 0.89-1.61 mm, 17.4-66.4 μm, 1.37-11.01 N, and 0.34-6.90 mj, respectively, and strongly influenced by all the three factors, except that the surface appearance was only significantly affected by the shell-to-core flow rate ratio. The process factors were also optimized for the practically useful macrocapsules, having non-oily surface and hardness larger than 3 N, using a graphical optimization technique.
机译:通过电共挤出制备球形大胶囊,其中海藻酸钙壳包裹橄榄油作为模型核心介质。三个关键工艺因素的影响,包括壳液中的藻酸盐浓度(0.5-4.0%),壳与核的流速比(在固定的核流速为0.05 mL / min时为4-12)和施加的电压( (0-10 kV),使用响应表面方法分析了大胶囊的形态和质地特征。分析表明,大胶囊的直径,壳厚度,硬度和断裂能分别在0.89-1.61 mm,17.4-66.4μm,1.37-11.01 N和0.34-6.90 mj的范围内,并受到强烈的影响。所有这三个因素,除了表面外观仅受到壳核流速比的显着影响。还使用图形优化技术针对非油性表面且硬度大于3 N的实际有用的大胶囊对工艺因素进行了优化。

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