Syft Technologies Ltd, 3 Craft Pl, Christchurch, New Zealand.
Rapid Commun Mass Spectrom. 2014 Jan 15;28(1):10-8. doi: 10.1002/rcm.6747.
The gold standard for monitoring volatile organic compounds (VOCs) is gas chromatography/mass spectrometry (GC/MS). However, in many situations, when VOC concentrations are at the ppmv level, there are complicating factors for GC/MS. Selected ion flow tube mass spectrometry (SIFT-MS) is an emerging technique for monitoring VOCs in air. It is simpler to use and provides results in real time.
Three different experiments were used for the comparison. First SIFT-MS was applied to monitor the concentrations of 25 VOCs in a mixture at concentrations up to 1 ppmv using only a generic database for known kinetic data of three reagent ions (H3O(+), NO(+) and O2(+)) with each VOC. In experiment 2, a side-by-side comparison was made of 17 VOCs at concentrations between 1 ppmv and 5 ppbv after small corrections had been made to the SIFT-MS kinetic data. In a third experiment, a side-by-side comparison examined two groups of samples received for commercial analysis.
In experiment 1, 85% of the VOC concentrations were within 35% of their stated values without any calibration of the SIFT-MS instrument. In experiment 2, the two techniques yielded good correspondence between the measured VOC concentrations. In experiment 3, good correlation was found for VOCs from three of the samples. However, interferences from some product ions gave over-reported values in one sample from the SIFT-MS instrument.
These three experiments showed that GC/MS was better suited to monitoring samples containing large numbers of VOCs at high concentrations. In all other applications, SIFT-MS proved simpler to use, was linear with concentration over a much wider concentration range than GC/MS and provided faster results.
监测挥发性有机化合物(VOCs)的金标准是气相色谱/质谱法(GC/MS)。然而,在许多情况下,当 VOC 浓度达到 ppmv 水平时,GC/MS 会出现复杂因素。选择离子流管质谱(SIFT-MS)是一种新兴的监测空气中 VOC 的技术。它使用起来更简单,并提供实时结果。
使用了三种不同的实验进行比较。首先,SIFT-MS 被应用于监测浓度高达 1 ppmv 的 25 种 VOC 在混合物中的浓度,仅使用一个通用数据库即可获得三种试剂离子(H3O(+)、NO(+)和 O2(+))对每种 VOC 的已知动力学数据。在实验 2 中,在对 SIFT-MS 动力学数据进行小的修正后,对浓度在 1 ppmv 和 5 ppbv 之间的 17 种 VOC 进行了并排比较。在第三个实验中,对两组用于商业分析的样品进行了并排比较。
在实验 1 中,85%的 VOC 浓度在其规定值的 35%以内,而无需对 SIFT-MS 仪器进行任何校准。在实验 2 中,两种技术在测量的 VOC 浓度之间具有良好的对应关系。在实验 3 中,从三个样品中发现了 VOC 的良好相关性。然而,一些产物离子的干扰导致 SIFT-MS 仪器中一个样品的报告值过高。
这三个实验表明,GC/MS 更适合监测高浓度下含有大量 VOC 的样品。在所有其他应用中,SIFT-MS 证明使用起来更简单,线性度优于 GC/MS,且能提供更快的结果。