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烯醇的燃烧化学:火焰中可能的乙烯醇前体。

Combustion chemistry of enols: possible ethenol precursors in flames.

作者信息

Taatjes Craig A, Hansen Nils, Miller James A, Cool Terrill A, Wang Juan, Westmoreland Phillip R, Law Matthew E, Kasper Tina, Kohse-Höinghaus Katharina

机构信息

Combustion Research Facility, Mail Stop 9055, Sandia National Laboratories, Livermore, California 94551-0969, USA.

出版信息

J Phys Chem A. 2006 Mar 9;110(9):3254-60. doi: 10.1021/jp0547313.

Abstract

Before the recent discovery that enols are intermediates in many flames, they appeared in no combustion models. Furthermore, little is known about enols' flame chemistry. Enol formation in low-pressure flames takes place in the preheat zone, and its precursors are most likely fuel species or the early products of fuel decomposition. The OH + ethene reaction has been shown to dominate ethenol production in ethene flames although this reaction has appeared insufficient to describe ethenol formation in all hydrocarbon oxidation systems. In this work, the mole fraction profiles of ethenol in several representative low-pressure flames are correlated with those of possible precursor species as a means for judging likely formation pathways in flames. These correlations and modeling suggest that the reaction of OH with ethene is in fact the dominant source of ethenol in many hydrocarbon flames, and that addition-elimination reactions of OH with other alkenes are also likely to be responsible for enol formation in flames. On this basis, enols are predicted to be minor intermediates in most flames and should be most prevalent in olefinic flames where reactions of the fuel with OH can produce enols directly.

摘要

在最近发现烯醇是许多火焰中的中间体之前,它们并未出现在任何燃烧模型中。此外,人们对烯醇的火焰化学了解甚少。低压火焰中烯醇的形成发生在预热区,其前体很可能是燃料物种或燃料分解的早期产物。尽管已表明OH与乙烯的反应在乙烯火焰中主导乙烯醇的生成,但该反应似乎不足以描述所有烃类氧化系统中乙烯醇的形成。在这项工作中,几种代表性低压火焰中乙烯醇的摩尔分数分布与可能的前体物种的摩尔分数分布相关联,以此作为判断火焰中可能的生成途径的一种方法。这些关联和模型表明,OH与乙烯的反应实际上是许多烃类火焰中乙烯醇的主要来源,并且OH与其他烯烃的加成-消除反应也可能是火焰中烯醇形成的原因。在此基础上,预计烯醇在大多数火焰中是次要中间体,并且在燃料与OH的反应可直接产生烯醇的烯烃火焰中最为普遍。

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