首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Chemical Kinetic Study of the Oxidation of a Biodiesel-Bioethanol Surrogate Fuel: Methyl Octanoate-Ethanol Mixtures
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Chemical Kinetic Study of the Oxidation of a Biodiesel-Bioethanol Surrogate Fuel: Methyl Octanoate-Ethanol Mixtures

机译:生物柴油-生物乙醇替代燃料氧化的化学动力学研究:辛酸甲酯-乙醇混合物

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摘要

There is a growing interest for using bioethanol-biodiesel fuel blends in diesel engines but no kinetic data and model for their combustion were available. Therefore, the kinetics of oxidation of a biodiesel-bioethanol surrogate fuel (methyl octanoate-ethanol) was studied experimentally in a jet-stirred reactor at 10 atm and constant residence time, over the temperature range 560-1160 K, and for several equivalence ratios (0.5-2). Concentration profiles of reactants, stable intermediates, and final products were obtained by probe sampling followed by online FTIR, and off-line gas chromatography analyses. The oxidation of this fuel in these conditions was modeled using a detailed chemical kinetic reaction mechanism consisting of 4592 reversible reactions and 1087 species. The proposed kinetic reaction mechanism yielded a good representation of the kinetics of oxidation of this biodiesel-bioethanol surrogate under the JSR conditions. The modeling was used to delineate the reactions triggering the low-temperature oxidation of ethanol important for diesel engine applications.
机译:在柴油发动机中使用生物乙醇-生物柴油燃料共混物的兴趣日益浓厚,但没有有关其燃烧的动力学数据和模型。因此,在560-1160 K的温度范围内,在几个当量比的条件下,在喷射搅拌反应器中,在10个大气压和恒定的停留时间下,对生物柴油-生物乙醇替代燃料(辛酸甲酯-乙醇)的氧化动力学进行了实验研究。 (0.5-2)。通过探针采样,在线FTIR和离线气相色谱分析获得反应物,稳定的中间体和最终产物的浓度曲线。使用详细的化学动力学反应机理对这种燃料在这些条件下的氧化进行建模,该机理由4592个可逆反应和1087种组成。所提出的动力学反应机理很好地代表了这种生物柴油-生物乙醇替代物在JSR条件下的氧化动力学。该模型用于描述引发乙醇低温氧化的反应,这对于柴油发动机应用很重要。

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