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Kinetics of oxidation of a LPG blend mixture in a JSR: experimental and modeling study

机译:JSR中LPG混合物的氧化动力学:实验和模型研究

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For the first time, a detailed study of the gas-phase oxidation of a LPG blend mixture (propane-butane/iso-butane), a spark ignition engine fuel, is reported. The experiments were performed in a jet-stirred reactor at 1 atm, over the temperature range 950-1450 K and for equivalence ratios of 0.25, 0.5, 1, 1.5, 2 and 4. Mole fraction profiles as a function of temperature were obtained for molecular species (reactants, intermediates and final products) via sonic quartz probe sampling and on-line FTIR analyses and off-line gas chromatography analyses. These measurements were used to validate a detailed kinetic reaction mechanism consisting of 112 species and 827 reactions (most of them reversible). Overall, the modeling is in very good agreement with the experimental measurements. Reaction path analyses were used to interpret the results.
机译:首次报道了对火花点火发动机燃料LPG共混物(丙烷/正丁烷/异丁烷)的气相氧化的详细研究。实验是在1atm的喷射搅拌反应器中进行的,温度范围为950-1450 K,当量比为0.25、0.5、1、1.5、2和4。通过声波石英探针采样,在线FTIR分析和离线气相色谱分析获得分子种类(反应物,中间体和最终产品)。这些测量结果被用来验证详细的动力学反应机理,该机理包括112种和827种反应(其中大多数是可逆的)。总体而言,建模与实验测量非常吻合。反应路径分析用于解释结果。

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