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Real-Time Quantitative Analysis of Combustion-Generated Polycyclic Aromatic Hydrocarbons by Resonance-Enhanced Multiphoton Ionization Time-of-Flight Mass Spectrometry

机译:共振增强多光子电离飞行时间质谱对燃烧产生的多环芳烃进行实时定量分析

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We have combined resonance-enhanced multiphoton ionization (REMPI) time-of-flight mass spectrometry with on-line flame sampling to determine the centerline concentrations of naphthalene, fluorene, and anthracene in a pure methane + oxygen/argon (1:5) diffusion flame. Naphthalene concentrations between 100 parts per billion by volume (ppbV) and 6 parts per million by volume (ppmV) and fluorene concentrations below 50 ppbV are determined using one-color REMPI on jet-cooled samples extracted from the flame; anthracene concentrations in the 5-40 ppbV range are determined using two-color REMPI. The REMPI ion signals are converted to absolute concentrations in real time by performing gas-phase standard additions to the flame sample. Isomer-selective detection of larger polycyclic aromatic hydrocarbons, such as perylene and benzo [a] pyrene, is possible using the two-color REMPI approach.
机译:我们将共振增强多光子电离(REMPI)飞行时间质谱与在线火焰采样相结合,以确定纯甲烷+氧气/氩气(1:5)扩散中萘,芴和蒽的中心浓度火焰。使用单色REMPI对从火焰中提取的喷射冷却样品测定萘浓度在十亿分之100(ppbV)到六百万分之一(ppmV)之间,芴浓度低于50 ppbV。使用两种颜色的REMPI测定5-40 ppbV范围内的蒽浓度。通过对火焰样品进行气相标准添加,可将REMPI离子信号实时转换为绝对浓度。使用双色REMPI方法可以对较大的多环芳烃(例如per和苯并[a] ene)进行异构体选择性检测。

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