首页> 外文期刊>International journal of chemical engineering >Competition Kinetics of the Nonbranched-Chain Addition of Free Radicals to Olefins, Formaldehyde, and Oxygen
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Competition Kinetics of the Nonbranched-Chain Addition of Free Radicals to Olefins, Formaldehyde, and Oxygen

机译:非分支链的竞争动力学向烯烃,甲醛和氧气添加自由基

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Five reaction schemes are suggested for the initiated nonbranched-chain addition of free radicals to the multiple bonds of alkenes, formaldehyde, and oxygen. The schemes include reactions competing with chain propagation through a reactive free radical. The chain evolution stage in these schemes involves three or four types of free radicals. One of them—CH2=C(CH3)C•H2,CH2=CHC•HOH,HC•=O,o−CH3C6H4CH2O4•, orHO4•—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 set up using quasi-steady-state treatment. These equations provide good fits for the nonmonotonic (peaking) dependences of the formation rates of the molecular addition products (1 : 1 adducts) on the concentration of the unsaturated component in liquid homogeneous binary systems consisting of a saturated component (hydrocarbon, alcohol, etc.) and an unsaturated component (olefin, formaldehyde, or dioxygen). The unsaturated compound in these systems is both a reactant and an autoinhibitor generating low-reactive free radicals. A similar kinetic description is applicable to nonbranched-chain free-radical hydrogen oxidation. The energetics of the key radical-molecule reactions is considered.
机译:提出五种反应方案,用于引发的非分支链向烯烃,甲醛和氧的多键添加自由基。该方案包括通过反应自由基与链繁殖竞争的反应。这些方案中的链进化阶段涉及三种或四种类型的自由基。其中之一-CH2 = C(CH3)C•H2,CH2 = CHC•HOH,HC•= O,O-CH3C6H4CH2O4•,ORHO4• - 通过缩短动力链长度来抑制链过程。基于所建议的方案,使用准稳态处理将含有一到三个参数的九个速率方程直接确定。这些等式提供了由饱和组分(烃,醇,醇等)的不饱和组分中的不饱和组分浓度的形成率的非单调(峰值)依赖性的良好拟合。)和不饱和组分(烯烃,甲醛或二恶英)。这些系统中的不饱和化合物是反应物和自身抑制剂产生低活性自由基。类似的动力学描述适用于非支链链自由基氧化。考虑关键自由基反应的能量学。

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