Worton David R, Mills Graham P, Oram David E, Sturges William T
School of Environmental Sciences, University of East Anglia, Norwich, UK.
J Chromatogr A. 2008 Aug 1;1201(1):112-9. doi: 10.1016/j.chroma.2008.06.019. Epub 2008 Jun 18.
Alkyl nitrates and very short-lived halocarbon species are important atmospheric trace gas species that are present in the low to sub parts per trillion concentration range. This presents an analytical challenge for their detection and quantification that requires instrumentation with high sensitivity and selectivity. In this paper, we present a new in situ gas chromatograph negative ion chemical ionization mass spectrometer (GC/NICI-MS) coupled to a non-cryogen sample pre-concentration system. This instrument, with detection limits of <0.01 ppt, is capable of detecting and quantifying a large suite of alkyl nitrate and halocarbon species with high sensitivity and precision. The effects of ion source temperature and reagent gas pressure on the ionization efficiency of the NICI mode are investigated and the results are used to optimize the sensitivity. The NICI mode is compared to the more frequently used electron impact (EI) ionization and the enhancements in sensitivity are presented for all the calibrated compounds.
烷基硝酸盐和寿命极短的卤代烃物种是重要的大气痕量气体物种,其浓度范围在万亿分之一以下至万亿分之几。这对它们的检测和定量提出了分析挑战,需要具有高灵敏度和选择性的仪器。在本文中,我们展示了一种新的原位气相色谱负离子化学电离质谱仪(GC/NICI-MS),它与一个非低温样品预浓缩系统相连。该仪器的检测限<0.01 ppt,能够以高灵敏度和高精度检测和定量一大类烷基硝酸盐和卤代烃物种。研究了离子源温度和反应气压力对NICI模式电离效率的影响,并将结果用于优化灵敏度。将NICI模式与更常用的电子轰击(EI)电离进行了比较,并给出了所有校准化合物灵敏度的增强情况。