Galletta Micaela, Zoccali Mariosimone, Jones Nick, Mondello Luigi, Tranchida Peter Q
Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina, Italy.
Department of Mathematical and Computer Science, Physical Sciences and Earth Sciences, University of Messina, Messina, Italy.
Anal Bioanal Chem. 2022 Sep;414(21):6371-6378. doi: 10.1007/s00216-022-04086-4. Epub 2022 Apr 30.
The present research is focused on the use and evaluation of hydrogen, as a more sustainable alternative to helium, within the context of fast flow modulation comprehensive two-dimensional gas chromatography-time-of-flight mass spectrometry. In such a respect, a comparison was made between the two mobile phases in terms of speed and overall chromatography performance. All experiments were carried out by using the following column set: low polarity with dimensions 10 m × 0.25 mm ID × 0.25 µm d and medium polarity with dimensions 2 m × 0.10 mm ID × 0.10 µm d. Fundamental gas chromatography parameters (efficiency, resolution) were measured under different experimental conditions, using the two carrier gases. Efficiency was measured in both the first and second dimensions, using a probe compound under isothermal conditions; after defining the optimum carrier gas conditions, a mixture containing 20 pesticides was analyzed to measure resolution, again in the first and second dimensions, using a temperature program. It was found (as expected) that a similar chromatography performance could be attained when using hydrogen, albeit with a circa 25% reduction in analysis time. Signal-to-noise ratios of the pesticides were calculated, using both carrier gases, with such values generally reduced (on average by 14%) when using hydrogen. Finally, a comparison was made between mass spectral profiles obtained analyzing the pesticides and fatty acid methyl esters using the two mobile phases. Even though mass spectral differences were observed, the ion profiles could be considered generally similar.
本研究聚焦于在快速流动调制全二维气相色谱-飞行时间质谱分析中,使用氢气作为比氦气更具可持续性的替代气体并对其进行评估。在这方面,对两种流动相在速度和整体色谱性能方面进行了比较。所有实验均使用以下色谱柱组合进行:低极性柱,尺寸为10 m×0.25 mm内径×0.25 µm膜厚;中极性柱,尺寸为2 m×0.10 mm内径×0.10 µm膜厚。在不同实验条件下,使用两种载气测量了基本气相色谱参数(柱效、分离度)。在等温条件下,使用一种探针化合物在第一维和第二维测量柱效;在确定了最佳载气条件后,使用温度程序分析了一种含有20种农药的混合物,以测量第一维和第二维的分离度。结果发现(正如预期的那样),使用氢气时可获得类似的色谱性能,不过分析时间大约缩短了25%。使用两种载气分别计算了农药的信噪比,使用氢气时这些值通常会降低(平均降低14%)。最后,对使用两种流动相分析农药和脂肪酸甲酯所获得的质谱图进行了比较。尽管观察到了质谱差异,但离子图谱总体上可认为是相似的。