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Analysis of alkenone unsaturation indices with fast gas chromatography/time-of-flight mass spectrometry

机译:快速气相色谱/飞行时间质谱法分析烯酮不饱和指数

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Extensively purified C-37 alkenone references and mixtures thereof were analyzed by gas chromatography/flame ionization detection (GC/FID) and fast gas chromatography/time-of-flight mass spectrometry (GC/TOF-MS), to establish the latter as an alternative, fast, and reliable analysis method for alkenone unsaturation indices (U-37(k')). This index is a tool for past sea surface temperature reconstructions with extensive use in paleoclimate and paleoceanographic research. TOF-MS was chosen because of its unique capability to acquire full-range spectra at high data rates (up to 500 spectra s(-1)) and to produce homogeneous spectra across a gaschromatographic peak, allowing faster separations than conventional GC/MS and the employment of enhanced peak deconvolution algorithms. Analysis time per sample could be reduced to run times of < 10 min, i.e., by a factor of similar to 10 compared to conventional GC/FID (90-100 min) methods. However, U-37(k') values from GC/TOF-MS showed deviations from those obtained by GC/FID, resulting from sensitivity differences between the C-37:2 and C-37:3 alkenone when analyzed by GC/TOF-MS. A solution to this bias is presented by determining compound-specific linear response factor equations to derive sensitivity ratios (S-R) that allow conversion of GC/TOF-MS values into calibrated GC/FID data. Using alkenone mixtures of known composition and a variety of samples from natural environments, the applicability of this approach is demonstrated.
机译:通过气相色谱/火焰电离检测(GC / FID)和快速气相色谱/飞行时间质谱(GC / TOF-MS)分析了广泛纯化的C-37烯酮参考物及其混合物。烯酮不饱和指数(U-37(k'))的另一种快速,可靠的分析方法。该指数是过去海面温度重建的一种工具,在古气候和古海洋学研究中得到广泛使用。之所以选择TOF-MS,是因为它具有独特的能力,可以以高数据速率(高达500个光谱s(-1))采集全范围光谱,并在整个气相色谱峰上产生均一的光谱,与传统的GC / MS和使用增强的峰值反卷积算法。与常规GC / FID(90-100分钟)方法相比,每个样品的分析时间可缩短至<10分钟,即减少10倍。但是,来自GC / TOF-MS的U-37(k')值显示与通过GC / FID获得的值存在偏差,这是由于通过GC / TOF分析时C-37:2和C-37:3烯酮之间的灵敏度差异造成的-多发性硬化症。通过确定特定于化合物的线性响应因子方程式,以导出允许将GC / TOF-MS值转换为校准的GC / FID数据的灵敏度比(S-R),可以解决该偏差。使用已知组成的烯酮混合物和来自自然环境的各种样品,证明了该方法的适用性。

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