Merritt D A, Hayes J M, Des Marais D J
Department of Chemistry, Indiana University, Bloomington, USA.
J Geophys Res. 1995 Jan 20;100(D1):1317-26. doi: 10.1029/94jd02689.
Less than 15 min are required for the determination of delta 13CPDB with a precision of 0.2% (1 sigma, single measurement) in 5-mL samples of air containing CH4 at natural levels (1.7 ppm). An analytical system including a sample-introduction unit incorporating a preparative gas chromatograph (GC) column for separation of CH4 from N2, O2, and Ar is described. The 15-min procedure includes time for operation of that system, high-resolution chromatographic separation of the CH4, on-line combustion and purification of the products, and isotopic calibration. Analyses of standards demonstrate that systematic errors are absent and that there is no dependence of observed values of delta on sample size. For samples containing 100 ppm or more CH4, preconcentration is not required and the analysis time is less than 5 min. The system utilizes a commercially available, high-sensitivity isotope-ratio mass spectrometer. For optimal conditions of sample handling and combustion, performance of the system is within a factor of 2 of the shot-noise limit. The potential exists therefore for analysis of samples as small as 15 pmol CH4 with a standard deviation of <1%.
对于含有自然水平甲烷(1.7 ppm)的5 mL空气样本,测定δ¹³Cᴾᴰᴮ的精度为0.2%(1σ,单次测量)所需时间不到15分钟。本文描述了一种分析系统,该系统包括一个进样单元,该进样单元包含一个制备型气相色谱(GC)柱,用于从N₂、O₂和Ar中分离CH₄。这一15分钟的流程包括该系统的运行时间、CH₄的高分辨率色谱分离、产物的在线燃烧和纯化以及同位素校准。标准品分析表明不存在系统误差,且δ的观测值与样品大小无关。对于含有100 ppm或更多CH₄的样品,无需预浓缩,分析时间不到5分钟。该系统使用市售的高灵敏度同位素比率质谱仪。在样品处理和燃烧的最佳条件下,该系统的性能在散粒噪声极限的2倍以内。因此,有可能分析低至15 pmol CH₄的样品,标准偏差<1%。