邻苯二甲酸酯型增塑剂溴化的动力学方面

R. Plotnikova
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摘要

考虑了以邻苯二甲酸2-乙基己基-2-乙基己烯同分异构体为主要“工作组分”的不饱和增塑剂-溴复合体系的主要特性。考虑到邻苯二甲酸酯型酯增塑剂是一种极性化合物,其偶极矩在其组成物中含有的邻苯二甲酸二辛酯水平上。研究表明,在溴化过程中,分子溴与增塑剂的各组分发生物理相互作用。由于各组分的溶解度参数几乎相同,以高搅拌速度向体系中适量引入溴可以形成均匀的热力学稳定体系。使用溴-邻苯二甲酸二辛酯-邻苯二甲酸二丁酯模型混合物,结果表明,以任何研究比例将溴与增塑剂混合都不会导致“增塑剂中的溴”或“溴中的增塑剂”边界的出现。这就确定了溴在增塑剂中在溴化条件下的无限溶解度。醋酸-溴-水模型混合物的紫外光谱研究醋酸-溴-己烷,证明了在实际体系中,不饱和增塑剂-溴,很可能只与分子溴发生溴化而不形成溴二聚体。研究了增塑剂中不饱和邻苯二甲酸酯的溴化反应机理。提出了一种无量纲变量的动力学方程组。结果表明,理论曲线的性质与溴的引入速率密切相关,反应机理不变。注意到溴化过程的限制阶段的变化取决于系统中溴的引入速率。
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Kinetic aspects of bromination of a phthalate-type plasticizer
The main characteristics of a complex system of unsaturated plasticizer-bromine using the main "working components" - isomers of 2-ethylhexyl-2-ethylhexene phthalate are considered. It is taken into account that the phthalate-type ester plasticizer is a polar compound with a dipole moment at the level of dioctyl phthalate included in its composition. It has been shown that in the process of bromination, molecular bromine enters into physical interaction with all components of the plasticizer. Dosed introduction of bromine into the system at high stirring speeds leads to the formation of a homogeneous thermodynamically stable system, since the solubility parameters of the components are practically the same. Using a model mixture of bromine-dioctyl phthalate-dibutyl phthalate, it was shown that mixing bromine with plasticizers in any investigated ratios does not lead to the appearance of the boundary “bromine in a plasticizer” or “plasticizer in bromine”. This established the unlimited solubility of bromine in the plasticizer under the conditions of its bromination. Using the method of UV spectroscopy on model mixtures of acetic acid-bromine-water; acetic acid-bromine-hexane, it was proved that in a real system, unsaturated plasticizer-bromine, bromination is most likely carried out only with molecular bromine without the formation of bromine dimers. The mechanism of bromination of unsaturated phthalates included in the plasticizer is shown. A system of kinetic equations in dimensionless variables is proposed. It was found that the nature of the theoretical curves significantly depends on the rate of introduction of bromine with a constant reaction mechanism. A change in the limiting stages of the bromination process was noted depending on the rate of bromine introduction into the system.
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