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Comparison of GC/time-of-flight MS with GC/quadrupole MS for halocarbon trace gas analysis

机译:GC /飞行时间MS与GC /四极杆MS用于卤代烃痕量气体分析的比较

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摘要

We present the application of time-of-flight mass spectrometry (TOF MS) for the analysis of halocarbons in the atmosphere after cryogenic sample preconcentration and gas chromatographic separation. For the described field of application, the quadrupole mass spectrometer (QP MS) is a state-of-the-art detector. This work aims at comparing two commercially available instruments, a QP MS and a TOF MS, with respect to mass resolution, mass accuracy, stability of the mass axis and instrument sensitivity, detector sensitivity, measurement precision and detector linearity. Both mass spectrometers are operated on the same gas chromatographic system by splitting the column effluent to both detectors. The QP MS had to be operated in optimised single ion monitoring (SIM) mode to achieve a sensitivity which could compete with the TOF MS. The TOF MS provided full mass range information in any acquired mass spectrum without losing sensitivity. Whilst the QP MS showed the performance already achieved in earlier tests, the sensitivity of the TOF MS was on average higher than that of the QP MS in the "operational" SIM mode by a factor of up to 3, reaching detection limits of less than 0.2 pg. Measurement precision determined for the whole analytical system was up to 0.2% depending on substance and sampled volume. The TOF MS instrument used for this study displayed significant non-linearities of up to 10% for two-thirds of all analysed substances.
机译:我们介绍了飞行时间质谱(TOF MS)在低温样品预浓缩和气相色谱分离后分析大气中卤代烃的应用。对于所描述的应用领域,四极质谱仪(QP MS)是最先进的检测器。这项工作旨在比较两种商用仪器QP MS和TOF MS在质量分辨率,质量准确度,质量轴的稳定性和仪器灵敏度,检测器灵敏度,测量精度和检测器线性方面。通过将色谱柱流出物分配到两个检测器,两个质谱仪在相同的气相色谱系统上运行。 QP MS必须在优化的单离子监测(SIM)模式下运行才能获得可以与TOF MS竞争的灵敏度。 TOF MS可在任何获得的质谱图中提供完整的质量范围信息,而不会降低灵敏度。虽然QP MS表现出在较早的测试中已经达到的性能,但是TOF MS的灵敏度平均比“操作” SIM模式下的QP MS的灵敏度高出3倍,检测极限小于0.2 pg。整个分析系统确定的测量精度最高为0.2%,具体取决于物质和采样量。用于本研究的TOF MS仪器显示出,对于所有分析物质的三分之二,高达10%的明显非线性。

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