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An Experimental and Theoretical Investigation of 1-Butanol Pyrolysis

机译:1-丁醇热解的实验和理论研究

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摘要

Bioalcohols are a promising family of biofuels. Among them, 1-butanol has a strong potential as a substitute for petrol. In this manuscript, we report on a theoretical and experimental characterization of 1-butanol thermal decomposition, a very important process in the 1-butanol combustion at high temperatures. Advantage has been taken of a flash pyrolysis experimental set-up with mass spectrometric detection, in which the brief residence time of the pyrolyzing mixture inside a short, resistively heated SiC tube allows the identification of the primary products of the decomposing species, limiting secondary processes. Dedicated electronic structure calculations of the relevant potential energy surface have also been performed and RRKM estimates of the rate coefficients and product branching ratios up to 2,000 K are provided. Both electronic structure and RRKM calculations are in line with previous determinations. According to the present study, the H2O elimination channel leading to 1-butene is more important than previously believed. In addition to that, we provide experimental evidence that butanal formation by H2 elimination is not a primary decomposition route. Finally, we have experimental evidence of a small yield of the CH3 elimination channel.
机译:生物醇是有前途的生物燃料家族。其中,1-丁醇具有替代汽油的强大潜力。在此手稿中,我们报告了1-丁醇热分解的理论和实验表征,这是高温下1-丁醇燃烧的一个非常重要的过程。利用具有质谱检测的快速热解实验装置的优势,其中热解混合物在短的电阻加热的SiC管中的短暂停留时间可识别分解物的主要产物,从而限制了次要过程。还对相关的势能面进行了专门的电子结构计算,并提供了速率系数和产品分支比高达2,000 K的RRKM估计。电子结构和RRKM计算均与先前的确定相符。根据本研究,导致1-丁烯的H2O消除通道比以前认为的更为重要。除此之外,我们提供了实验证据,证明通过消除H2形成丁醛不是主要的分解途径。最后,我们有实验证明CH3消除通道的收率很小。

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