首页> 外文期刊>Journal of Chemical Engineering of Japan >Modelint of the Formation Kinetics of Polyurea Microcapsules with Size Dstribution by Interfacial Polycondensation
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Modelint of the Formation Kinetics of Polyurea Microcapsules with Size Dstribution by Interfacial Polycondensation

机译:界面缩聚法制备尺寸分布的聚脲微胶囊形成动力学模型

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The kinetics of membrane formation of polyurea microcapsule by interfacial polycondensation was studied both experimentally and theoretically. Diethylenetriamine (DETA) and hexamethylene-1,6-diisocyanate (HMDI) were used as a trifunctional hydrophilic monomer and a biffunctional hydrophobic monomer, respectively, so that a polymer with cross-linked structure was formed. The oil in water (O/W) emulsion was first prepared using water, cclohexane containing HMDI, and surfactant Tween 85. The emulsion solution was then mixed with DETA aqueous solution to start the interfacial polycondensation. A mathematical model in which DETA transferred to the polymer surface in the water phase, diffused through the polymer membrane, and reacted with HMDI at an interface of the polymer and the oil phase was proposed. The size distribution of microcapsule and diffusion of DETA of both unprotonated and protonated froms were incorporated, and the relation between pH and the concentration of DETA was derived from ionic equilibrium. The calculated results explained well the time variation of the conver-sion of DETA at a different initial number of moles of DETA and different initial mole ratio of HMDI to DETA. The time variation of the thickness of the polymer membrane was also simulated.
机译:通过实验和理论研究了通过界面缩聚作用形成的聚脲微胶囊的膜形成动力学。使用二亚乙基三胺(DETA)和六亚甲基-1,6-二异氰酸酯(HMDI)作为三官能的亲水性单体和双官能的疏水性单体,从而形成具有交联结构的聚合物。首先使用水,含HMDI的环己烷和表面活性剂Tween 85制备水包油(O / W)乳液。然后将乳液溶液与DETA水溶液混合以开始界面缩聚。提出了一种数学模型,其中DETA在水相中转移到聚合物表面,扩散通过聚合物膜,并在聚合物和油相的界面上与HMDI反应。结合了未质子化和质子化的微囊的尺寸分布和DETA的扩散,并从离子平衡推导了pH与DETA浓度之间的关系。计算结果很好地说明了在不同的DETA初始摩尔数和HMDI与DETA的初始摩尔比不同的情况下,DETA的转化率随时间的变化。还模拟了聚合物膜厚度的时间变化。

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