"Dipartimento di Scienze Chimiche, Biologiche, Farmaceutiche ed Ambientali", University of Messina, Polo Annunziata, Messina, Italy.
Chromaleont s.r.l., c/o "Dipartimento di Scienze Chimiche, Biologiche, Farmaceutiche ed Ambientali", University of Messina, Polo Annunziata, Messina, Italy.
J Sep Sci. 2019 Feb;42(3):691-697. doi: 10.1002/jssc.201801095. Epub 2018 Dec 11.
The present research is based on the use of a recently developed comprehensive two-dimensional gas chromatography thermal modulator, which is defined as solid-state modulator. The transfer device was installed on top of a single gas chromatography oven, while benchtop low-resolution time-of-flight mass spectrometry was used to monitor the compounds exiting the second analytical column. The solid-state modulator was first described by Luong et al. in 2016, and it is a moving modulator that does not require heating and cooling gases to generate comprehensive two-dimensional gas chromatography data. The accumulation and remobilization steps occur on a trapping capillary, this being subjected to thermoelectric cooling and micathermic heating. In this study, the effects of the gas linear velocity on the modulation performance were evaluated by using two different uncoated trapping capillaries, viz., 0.8 m × 0.25 mm id and 0.8 m × 0.20 mm id. Solid-state modulator applications were carried out on a standard solution containing n-alkanes (C C C ), and on a sample of diesel fuel. The results indicated that the type of trapping capillary and gas velocity have a profound effect on modulation efficiency.
本研究基于最近开发的综合二维气相色谱热调制器的使用,该调制器被定义为固态调制器。传输装置安装在单气相色谱炉的顶部,同时采用台式低分辨率飞行时间质谱仪来监测第二分析柱流出的化合物。固态调制器于 2016 年由 Luong 等人首次描述,它是一种移动调制器,不需要加热和冷却气体来生成综合二维气相色谱数据。在捕集毛细管上进行累积和再迁移步骤,该毛细管采用热电冷却和微热加热。在这项研究中,通过使用两种不同的未涂层捕集毛细管(即 0.8 m×0.25mm id 和 0.8 m×0.20mm id),评估了气体线速度对调制性能的影响。固态调制器应用于含有正构烷烃(C-C-C)的标准溶液和柴油燃料样品中。结果表明,捕集毛细管的类型和气体速度对调制效率有深远的影响。