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Application of laser induced fluorescence to monitor atmospheric polycyclic aromatic hydrocarbons

机译:激光诱导荧光在大气多环芳烃监测中的应用

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Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous environmental pollutants that are of concern due to their potential human health effects. A laser induced fluorescence (LIF) selective screening technique has been developed based on the sampling of atmospheric PAHs onto a novel silicone rubber trap. After fluorescence screening, analytes on the traps can be quantified by thermal desorption-gas chromatography-mass spectrometry (TD-GC-MS). The use of the traps in a denuder configuration, where two traps in series are separated by a quartz fibre filter, allows for the monitoring of both gaseous and particle phase PAHs, which is important from a human health impact perspective.This paper reports on the application of the denuder technology and LIF method to the monitoring of PAH emissions produced from household fires, diesel internal combustion engines, sugar cane burning and industrial emissions in South Africa. Naphthalene was found to be the most abundant PAH in all cases, with gaseous concentrations monitored in the primary trap ranging from 1.8 ug.m~(-3) (diesel vehicular emissions) to 26 μg.m~(-3) (industrial emissions). Breakthrough of naphthalene occurred at sampling volumes > 5 /. Total transferand detection of analytes collected on the traps is possible with TD-GC-MS, which enhances detection limits and allows for shorter sampling times and flow rates. It has been demonstrated that our method performs well in practical applications and real PAH concentrations.
机译:多环芳烃(PAH)是普遍存在的环境污染物,由于其潜在的人类健康影响而受到关注。基于将大气中的PAHs采样到新型硅橡胶捕集阱上,已经开发了激光诱导荧光(LIF)选择性筛选技术。进行荧光筛查后,可以通过热脱附-气相色谱-质谱法(TD-GC-MS)对捕集阱上的分析物进行定量。在裸露配置中使用捕集阱,其中两个捕集阱由石英纤维过滤器隔开,可以监测气相和颗粒相PAH,这从人类健康影响的角度来看很重要。 本文报告了剥蚀技术和LIF方法在监测南非家庭火灾,柴油内燃机,甘蔗燃烧和工业排放所产生的PAH排放中的应用。在所有情况下,萘都是多环芳烃中含量最高的化合物,初级捕集阱中监测到的气态浓度范围为1.8 ug.m〜(-3)(柴油车辆排放物)至26μg.m〜(-3)(工业排放物)。 )。样品量> 5 /时,萘会发生突破。总转账 TD-GC-MS可以检测捕集阱上收集的分析物,从而提高了检测限,并缩短了采样时间和流速。已经证明我们的方法在实际应用中和实际的PAH浓度下表现良好。

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