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乳液形成微胶囊过程中液滴尺寸的变化。

Variation of droplet sizes during the formation of microcapsules from emulsions.

作者信息

Ovez B, Citak B, Oztemel D, Balbaş A, Peker S, Cakir S

机构信息

Department of Chemical Engineering, Ege University, Bornova, Imir, Turkey.

出版信息

J Microencapsul. 1997 Jul-Aug;14(4):489-99. doi: 10.3109/02652049709033833.

Abstract

The size distributions of microcapsules are important in determining the surface area over which the contents of the microcapsules are released. The size distribution is generally not normal around the mean, but biased toward smaller capsule sizes, forming a mode around some characteristic diameter. In order to assess the factors effective in determining this characteristic drop size, size distribution analyses were carried out photographically at each stage of the complex coacervation process. In addition, the emulsion drop size distributions were investigated as a function of stirring rate, stirring time and phase ratio. The results agreed qualitatively with the theory of isotropy but were an order of magnitude smaller. This theory is valid for Newtonian liquids. Elongational stresses could be operative with large-sized macromolecules and a mechanism was proposed based on variation of elongational stresses with velocity and rates of extension. Elongational viscosities measured for the gelatin solutions supported the proposed mechanism.

摘要

微胶囊的尺寸分布对于确定微胶囊内容物释放的表面积很重要。尺寸分布通常在均值附近不是正态的,而是偏向较小的胶囊尺寸,在某个特征直径附近形成一个众数。为了评估在确定这种特征液滴尺寸方面有效的因素,在复凝聚过程的每个阶段通过摄影进行尺寸分布分析。此外,研究了乳液滴尺寸分布作为搅拌速率、搅拌时间和相比的函数。结果在定性上与各向同性理论一致,但小了一个数量级。该理论对牛顿液体有效。对于大分子,拉伸应力可能起作用,并基于拉伸应力随速度和延伸速率的变化提出了一种机制。对明胶溶液测量的拉伸粘度支持了所提出的机制。

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