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On-line screening of airborne PAH contamination by simultaneous multiphoton ionization and laser induced fluorescence

机译:同时进行多光子电离和激光诱导荧光在线筛选机载PAH污染物

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摘要

In this preliminary study, the feasibility of on-line monitoring of sub-micron polycyclic aromatic hydrocarbon (PAH) aerosols by a combination of laser-induced-fluorescence (LIF) and laser multiphoton ionization (LMPI) techniques was investigated. For this purpose, an aerosol contaminated nitrogen gas was slowly bubbled through a quartz measurement chamber filled with hexane. Continuous PAH monitoring was maintained over two hours of the resultant concentration process. Simultaneous LIF and LMPI excitation was achieved by a pulsed dye laser, operated at 283 nm. For this wavelength, pyrene and naphthalene aerosols were used as target PAH materials. The resultant fluorescence light was collected by an optical fiber, while the LMPI signals were acquired by a pair of stainless steel electrodes immersed in the solution, allowing an automated readout of the photoionization current. The results indicate that PAH sub-micron aerosols, at an air concentration of 1 mg m{sup}(-3), can be monitored in this way.
机译:在这项初步研究中,研究了结合使用激光诱导荧光(LIF)和激光多光子电离(LMPI)技术在线监测亚微米多环芳烃(PAH)气溶胶的可行性。为此,将被气溶胶污染的氮气缓慢鼓泡通过装有己烷的石英测量室。在浓缩过程的两个小时内,连续进行PAH监测。通过在283 nm下操作的脉冲染料激光可以同时激发LIF和LMPI激发。对于此波长,使用and和萘气溶胶作为目标PAH材料。产生的荧光是通过光纤收集的,而LMPI信号是通过浸入溶液中的一对不锈钢电极获取的,从而可以自动读取光电离电流。结果表明,可以用这种方法监测空气浓度为1 mg m {sup}(-3)的PAH亚微米气溶胶。

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