首页> 外文会议>Proceedings of the Combustion Institute >Exploring the oxidative decompositions of methyl esters: Methyl butanoate and methyl pentanoate as model compounds for biodiesel
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Exploring the oxidative decompositions of methyl esters: Methyl butanoate and methyl pentanoate as model compounds for biodiesel

机译:探索甲酯的氧化分解:丁酸甲酯和戊酸甲酯作为生物柴油的模型化合物

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Biodiesel mechanism development poses interrelated challenges. Kinetic parameters of interest for the numerous steps with implications for low-temperature biodiesel combustion can be determined largely via computational means, but the computational approaches that best balance expense and accuracy in generating these parameters have not been systematically determined. A CO_2 production pathway recently proposed in the literature to occur in the methyl esters commonly used as surrogates for complex biofuel chemistry provides an opportunity to explore both these areas. We quantified this previously-proposed CO_2 production pathway using composite (G3B3) calculations and identified areas for potential side reactions, in both methyl butanoate and methyl pentanoate. Alternative isomerizations were also examined and suggest that side reactions may play an increasingly larger role in the chemistry of long-chain methyl esters, compared to methyl butanoate. In methodological terms, G3MP2B3 calculations matched quantitatively and qualitatively well with benchmark G3B3 data, while density functional theory (DFT) approaches generally failed to achieve the accuracy or precision desirable in determining reaction barriers. Potential energy surfaces generated via G3MP2B3 calculations were used to explore kinetic parameters for reactions implicated in early CO_2 production and competing pathways for methyl esters; these parameters were compared to extant mechanistic data.
机译:生物柴油机制的发展提出了相互关联的挑战。涉及低温生物柴油燃烧的众多步骤所需要的动力学参数可以通过计算手段来很大程度上确定,但是尚未系统地确定在这些参数的生成上达到最佳平衡费用和准确性的计算方法。最近在文献中提出的发生在通常用作复杂生物燃料化学替代物的甲酯中的CO_2产生途径为探索这两个领域提供了机会。我们使用合成的(G3B3)计算对先前提出的CO_2生产路径进行了量化,并确定了在丁酸甲酯和戊酸甲酯中潜在的副反应区域。与丁酸甲酯相比,还检查了其他异构化反应,并表明副反应在长链甲酯的化学反应中可能起着越来越大的作用。从方法上讲,G3MP2B3计算在质量和质量上与基准G3B3数据相匹配,而密度泛函理论(DFT)方法通常无法达到确定反应障碍所需的准确性或精密度。通过G3MP2B3计算生成的势能面用于探索与早期CO_2产生和甲基酯竞争途径有关的反应的动力学参数。这些参数与现有的机械数据进行了比较。

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