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Improved GC/MS methods for measuring hourly PAH and nitro-PAH concentrations in urban particulate matter

机译:改进的GC / MS方法,用于测量城市颗粒物中每小时的PAH和硝基PAH浓度

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This study presents two methods for the quantification of nitro-substituted and parent polycyclic aromatic hydrocarbons (NPAH and PAH, respectively), respectively, utilizing large volume injection gas chromatography/mass spectrometry (GC/MS). Both methods (PAH and NPAH, respectively) employed a programmed temperature vaporization injector (PTV) in solvent vent mode, optimized using standard solutions. For the PAH method, the precision of the PTV was comparable to hot splitless injection for exhibiting a percent relative standard deviation (%RSD) consistently below 8% for 100 pg injections. Compound %RSDs for the NPAH method were consistently below 5% using the PTV. Microgram quantities (30-500 μg) of particulate matter Standard Reference Materials (SRM 1649 and 1650, National Institutes of Standards and Technology) were analyzed to simulate PAH and NPAH quantification on small aerosol mass loadings. The method detection limits from this study suggest PAHs and NPAHs can be easily quantified using low-volume samplers (> 5 Lpm) on hourly timescales. In addition, this technique enabled the quantification of 12-h NPAH size distributions in the Baltimore, MD, atmosphere.
机译:这项研究提出了两种定量方法,分别采用大体积进样气相色谱/质谱法(GC / MS)对硝基取代的母体多环芳烃(分别为NPAH和PAH)进行定量。两种方法(分别为PAH和NPAH)均采用溶剂排放模式下的程控温度汽化注射器(PTV),并使用标准溶液进行了优化。对于PAH方法,PTV的精度与热不分流进样相当,因为100 pg进样的相对标准偏差百分比(%RSD)始终低于8%。使用PTV时,NPAH方法的化合物%RSD始终低于5%。分析了微克量(30-500μg)的颗粒物标准参考材料(SRM 1649和1650,美国国家标准技术研究院),以模拟在少量气溶胶负载下的PAH和NPAH定量。这项研究的方法检测极限表明,使用小体积采样器(> 5 Lpm)可以在小时时间尺度上轻松量化PAH和NPAH。此外,这项技术还可以量化马里兰州巴尔的摩市大气中12小时NPAH的大小分布。

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