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Effects of oxygenate concentration on species mole fractions in premixed n-heptane flames

机译:含氧量对预混正庚烷火焰中物质摩尔分数的影响

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摘要

Atmospheric pressure, laminar, premixed, fuel-rich flames of n-heptane/oxygen/argon and n-heptane/oxygenate/oxygen/argon were studied at an equivalence ratio of 1.97 to determine the effects of oxygenate concentration on species mole fractions. The oxygen weight percents in n-heptane/oxygenate mixtures were 2.7 and 3.4. Three different fuel oxygenates (i.e. MTBE, methanol, and ethanol) were tested. A heated quartz micro-probe coupled to an on-line gas chromatography/mass spectrometry has been used to establish the identities and absolute concentrations of stable major, minor, and trace species by the direct analysis of samples, withdrawn from the flames. The oxygenate addition has increased the maximum flame temperatures and reduced the mole fractions of CO, low-molecular-weight hydrocarbons, aromatics, and polycyclic aromatic hydrocarbons. The reduction in mole fractions of aromatic and polycyclic aromatic hydrocarbon species by an increase in oxygenate concentration was more significant.
机译:研究了正庚烷/氧气/氩气和正庚烷/氧气/氧气/氧气/氩气的层流,预混合,富含燃料的火焰,当量比为1.97,以确定氧气浓度对物种摩尔分数的影响。正庚烷/加氧混合物中的氧重量百分比为2.7和3.4。测试了三种不同的燃料含氧化合物(即MTBE,甲醇和乙醇)。通过直接分析从火焰中取出的样品,已将加热的石英微探针与在线气相色谱/质谱联用,用于确定稳定的主要,次要和痕量物种的身份和绝对浓度。含氧化合物的添加提高了最高火焰温度,并降低了CO,低分子量烃,芳烃和多环芳烃的摩尔分数。通过增加含氧化合物的浓度来减少芳族和多环芳族烃种类的摩尔分数更为显着。

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