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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Sampling, storage, and analysis of C-2-C-7 non-methane hydrocarbons from the US National Oceanic and Atmospheric Administration Cooperative Air Sampling Network glass flasks
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Sampling, storage, and analysis of C-2-C-7 non-methane hydrocarbons from the US National Oceanic and Atmospheric Administration Cooperative Air Sampling Network glass flasks

机译:美国国家海洋和大气管理局合作空气采样网络玻璃烧瓶中的C-2-C-7非甲烷碳氢化合物的采样,存储和分析

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摘要

An analytical technique was developed to analyze light non-methane hydrocarbons (NMHC), including ethane, propane, iso-butane, n-butane, iso-pentane, n-pentane, n-hexane, isoprene, benzene and toluene from whole air samples collected in 2.51-glass flasks used by the National Oceanic and Atmospheric Administration, Earth System Research Laboratory, Global Monitoring Division (NOAA ESRL GMD, Boulder, CO, USA) Cooperative Air Sampling Network. This method relies on utilizing the remaining air in these flasks (which is at below-ambient pressure at this stage) after the completion of all routine greenhouse gas measurements from these samples. NMHC in sample aliquots extracted from the flasks were preconcentrated with a custom-made, cryogen-free inlet system and analyzed by gas chromatography (GC) with flame ionization detection (FID). C-2-C-7 NMHC, depending on their ambient air mixing ratios, could be measured with accuracy and repeatability errors of generally <= 10-20%. Larger deviations were found for ethene and propene. Hexane was systematically overestimated due to a chromatographic co-elution problem. Saturated NMHC showed less than 5% changes in their mixing ratios in glass flask samples that were stored for up to I year. In the same experiment ethene and propene increased at similar to 30% yr(-1). A series of blank experiments showed negligible contamination from the sampling process and from storage (<10 pptv yr(-1)) of samples in these glass flasks. Results from flask NMHC analyses were compared to in-situ NMHC measurements at the Global Atmospheric Watch station in Hohenpeissenberg, Germany. This 9-months side-by-side comparison showed good agreement between both methods. More than 94% of all data comparisons for C-2-C-5 alkanes, isoprene, benzene and toluene fell within the combined accuracy and precision objectives of the World Meteorological Organization Global Atmosphere Watch (WMO-GAW) for NMHC measurements. (C) 2008 Elsevier B.V. All rights reserved.
机译:开发了一种分析技术来分析整个空气样品中的轻质非甲烷碳氢化合物(NMHC),包括乙烷,丙烷,异丁烷,正丁烷,异戊烷,正戊烷,正己烷,异戊二烯,苯和甲苯收集在由美国国家海洋和大气管理局,地球监测研究室,全球监测部门(NOAA ESRL GMD,美国科罗拉多州博尔德)合作空气采样网络使用的2.51玻璃烧瓶中。此方法依赖于完成这些样品的所有常规温室气体测量之后,利用这些烧瓶中的剩余空气(在此阶段压力低于室温)。从烧瓶中提取的样品等分试样中的NMHC用定制的无制冷剂入口系统进行预浓缩,并通过带有火焰离子化检测(FID)的气相色谱仪(GC)进行分析。 C-2-C-7 NMHC取决于它们的周围空气混合比,可以精确度和重复性误差<= 10-20%进行测量。发现乙烯和丙烯的偏差较大。由于色谱共洗脱问题,系统地高估了己烷。饱和NMHC在保存长达1年的玻璃烧瓶样品中,其混合比变化小于5%。在同一实验中,乙烯和丙烯的yr(-1)增幅接近30%。一系列空白实验表明,采样过程和样品在这些玻璃烧瓶中的存储(<10 pptv yr(-1))污染可忽略不计。将烧瓶NMHC分析的结果与德国Hohenpeissenberg的全球大气监测站的原位NMHC测量结果进行了比较。这项9个月的并排比较显示了两种方法之间的良好一致性。 C-2-C-5烷烃,异戊二烯,苯和甲苯的所有数据比较中,超过94%属于世界气象组织全球大气监视网(WMO-GAW)进行NMHC测量的综合精度和精密度指标。 (C)2008 Elsevier B.V.保留所有权利。

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