The cool-flame oxidation of 3-ethylpentane

Author:

Abstract

Detailed studies have been carried out of the combustion of 3-ethylpentane with special reference to the chemical changes taking place in the cool-flame region, where at least 74 individual products are formed. At ca . 300 °C, the first products to appear are 3-ethylpent-1-ene and 3-ethylpent-2-ene, C 7 O -heterocycles and alkenes of carbon number less than seven; the rates of consumption of 3-ethylpentane and of formation of all products increase dramatically just before propagation of the first cool-flame but do not vary appreciably when subsequent cool-flames pass. As the temperature is raised to ca . 400 °C, the quantities of 3-ethylpentane consumed and of lower molecular mass products formed increase markedly while the amounts of most C 7 products decrease. Consideration of the analytical results indicates that alkylperoxy radical isomerization plays an important part in the primary chain-propagation cycle both in and out of the cool-flame region and at temperatures as high as 400 °C. It appears that the initial reaction of alkyl radicals with oxygen takes place, largely, if not exclusively, by direct addition to form alkylperoxy radicals. Different modes of isomerization of these radicals leads to the wide variety of products found and decomposition of the a-hydroperoxyalkyl radicals by direct loss of HO 2 is probably the sole source of the conjugate alkenes. The results also provide the first recorded evidence of ethyl group migration during alkylperoxy radical isomerization.

Publisher

The Royal Society

Subject

Pharmacology (medical)

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Understanding cool flames and warm flames;Proceedings of the Combustion Institute;2021

2. The Fundamentals of Spontaneous Ignition of Gaseous Hydrocarbons and Related Organic Compounds;Advances in Chemical Physics;2007-03-14

3. Analytical—phenomenological studies of overall hydrocarbon combustion;Chemistry of Hydrocarbon Combustion;1985

4. The cool-flame combustion of decane;Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences;1982-08-09

5. The importance of peroxy radical chain-breaking reactions in the cool flame domain;Combustion and Flame;1979-01

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