自由基非支链机理加成过程的动力学方程

M. M. Silaev
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引用次数: 0

摘要

本研究的目的是总结简单的动力学方程,以描述在饱和和不饱和组分二元反应体系中饱和自由基加成到不饱和分子双键上的从头算引发的非支链过程。在这类过程中,分子加成产物(1:1加合物)的形成速率作为不饱和组分浓度的函数具有最大值。对该加成过程提出了五种反应方案。提出的方案包括通过活性自由基与链传播反应竞争的反应。这些方案的链演化阶段涉及三到四种类型的自由基。其中一种反应性较低,通过缩短动力学链长来抑制链过程。在此基础上,采用准稳态处理方法推导出9个速率方程(包含1 ~ 3个参数)。在由饱和组分(碳氢化合物、醇等)和不饱和组分(烯烃、烯丙醇、甲醛或二氧)组成的二元体系中,分子产物(1:1加合物)的形成速率与不饱和组分浓度的非单调(峰值)依赖性提供了很好的拟合。这些体系中的不饱和化合物既是反应物又是自身抑制剂,产生低活性自由基。类似的动力学描述也适用于自由基氢氧化的非支链过程,其中氧随着其浓度的增加开始起氧化自激剂(或抗氧化剂)的作用。考虑了关键的自由基-分子反应的能量学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Kinetic Equations of Addition Processes by the Free-Radical Nonbranched-Chain Mechanism
The aim of this study was the conclusion of simple kinetic equations to describe ab initio initiated nonbranchedchain processes of the saturated free-radical addition to the double bonds of unsaturated molecules in the binary reaction systems of saturated and unsaturated components. In the processes of this kind the formation rate of the molecular addition products (1:1 adducts) as a function of concentration of the unsaturated component has a maximum. Five reaction schemes are suggested for this addition processes. The proposed schemes include the reaction competing with chain propagation reactions through a reactive free radical. The chain evolution stage in these schemes involves three or four types of free radicals. One of them is relatively low-reactive and inhibits the chain process by shortening of the kinetic chain length. Based on the suggested schemes, nine rate equations (containing one to three parameters to be determined directly) are deduced using quasi-steady-state treatment. These equations provide good fits for the nonmonotonic (peaking) dependences of the formation rates of the molecular products (1:1 adducts) on the concentration of the unsaturated component in binary systems consisting of a saturated component (hydrocarbon, alcohol, etc.) and an unsaturated component (alkene, allyl alcohol, formaldehyde, or dioxygen). The unsaturated compound in these systems is both a reactant and an autoinhibitor generating lowreactive free radicals. A similar kinetic description is applicable to the nonbranched-chain process of the free-radical hydrogen oxidation, in which the oxygen with the increase of its concentration begins to act as an oxidation autoingibitor (or an antioxidant). The energetics of the key radical-molecule reactions is considered.
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