Energy and Environment Research Laboratories, Industrial Technology Research Institute, Hsinchu 300, Taiwan.
J Chromatogr A. 2010 Jan 15;1217(3):353-8. doi: 10.1016/j.chroma.2009.11.053. Epub 2009 Nov 26.
A gas chromatographic system was constructed to simultaneously measure ambient non-methane hydrocarbons (NMHCs) and halocarbons, which play significant roles in tropospheric ozone formation and stratospheric ozone loss, respectively. A heart-cut device based on a Deans switch was connected to two capillary columns to cover the full range of NMHCs and halocarbons. Analytes more volatile than C(6) NMHCs and the halocarbon CFC-113 were separated with a PLOT column, while the remaining less volatile compounds were separated with a DB-1 column. Merge-and-split of the flows at the end of the two columns allowed the NMHCs and halocarbons to be observed simultaneously by electron capture detection (ECD) and flame ionization detection (FID). To avoid peak-overlap from the two columns while merging, programmed pressures were incorporated to control the Deans switch. In addition to the advantage of measuring two important classes of compounds in the atmosphere at the same time, this method has the additional benefit of using the homogeneity of atmospheric CFC-113 as an "intrinsic" internal reference. Thus, better data continuity, less consumption of gas standards, and real-time quality control can all be achieved.
构建了一个气相色谱系统,用于同时测量环境中非甲烷烃(NMHCs)和卤代烃,它们分别在对流层臭氧形成和平流层臭氧损耗中起着重要作用。基于 Dean 开关的切心装置连接到两根毛细管柱,以覆盖 NMHCs 和卤代烃的全范围。比 C(6)NMHCs 和卤代烃 CFC-113 更易挥发的分析物用 PLOT 柱分离,而其余较不易挥发的化合物用 DB-1 柱分离。在两根柱子末端的流动合并和分流允许电子俘获检测(ECD)和火焰离子化检测(FID)同时观察 NMHCs 和卤代烃。为了避免在合并时来自两根柱子的峰重叠,采用程序压力来控制 Dean 开关。除了同时测量大气中两个重要化合物类别的优势外,该方法还具有利用大气 CFC-113 的均一性作为“内在”内标的额外优势。因此,可以实现更好的数据连续性、更少的气体标准品消耗和实时质量控制。