Heshka Nicole E, Hager Darcy B
CanmetENERGY, Natural Resources Canada;
CanmetENERGY, Natural Resources Canada.
J Vis Exp. 2015 Dec 10(106):e53416. doi: 10.3791/53416.
A method for the analysis of dissolved hydrogen sulfide in crude oil samples is demonstrated using gas chromatography. In order to effectively eliminate interferences, a two dimensional column configuration is used, with a Deans switch employed to transfer hydrogen sulfide from the first to the second column (heart-cutting). Liquid crude samples are first separated on a dimethylpolysiloxane column, and light gases are heart-cut and further separated on a bonded porous layer open tubular (PLOT) column that is able to separate hydrogen sulfide from other light sulfur species. Hydrogen sulfide is then detected with a sulfur chemiluminescence detector, adding an additional layer of selectivity. Following separation and detection of hydrogen sulfide, the system is backflushed to remove the high-boiling hydrocarbons present in the crude samples and to preserve chromatographic integrity. Dissolved hydrogen sulfide has been quantified in liquid samples from 1.1 to 500 ppm, demonstrating wide applicability to a range of samples. The method has also been successfully applied for the analysis of gas samples from crude oil headspace and process gas bags, with measurement from 0.7 to 9,700 ppm hydrogen sulfide.
介绍了一种使用气相色谱法分析原油样品中溶解硫化氢的方法。为有效消除干扰,采用二维柱配置,使用迪恩斯切换器将硫化氢从第一根柱子转移到第二根柱子(中心切割)。液态原油样品首先在二甲基聚硅氧烷柱上分离,轻质气体进行中心切割,然后在键合多孔层开管(PLOT)柱上进一步分离,该柱能够将硫化氢与其他轻质含硫物质分离。然后用硫化学发光检测器检测硫化氢,增加了一层选择性。在分离和检测硫化氢之后,系统进行反吹以去除原油样品中存在的高沸点烃类并保持色谱完整性。已对液态样品中1.1至500 ppm的溶解硫化氢进行了定量,表明该方法对一系列样品具有广泛的适用性。该方法也已成功应用于原油顶空气体样品和工艺气袋的分析,硫化氢的测量范围为0.7至9700 ppm。