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Real-time quadrupole mass spectrometer analysis of gas in borehole fluid samples acquired using the U-tube sampling methodology

机译:使用U形管采样方法采集的井眼流体​​样品中气体的实时四极质谱仪分析

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Sampling of fluids in deep boreholes is challenging because of the necessity of minimizing external contamination and maintaining sample integrity during recovery. The U-tube sampling methodology was developed to collect large volume, multiphase samples at in situ pressures. As a permanent or semi-permanent installation, the U-tube can be used for rapidly acquiring multiple samples or it may be installed for long-term monitoring applications. The U-tube was first deployed in Liberty County, TX to monitor crosswell CO_2 injection as part of the Frio CO_2 sequestration experiment. Anatysis of gases (dissolved or separate phase) was performed in the field using a quadrupole mass spectrometer, which served as the basis for determining the arrival of the CO_2 plume. The presence of oxygen and argon in elevated concentrations, along with reduced methane concentration, indicates sample alteration caused by the introduction of surface fluids during borehole completion. Despite producing the well to eliminate non-native fluids, measurements demonstrate that contamination persists until the immiscible CO_2 injection swept formation fluid into the observation wellbore.
机译:深井孔中的流体采样具有挑战性,因为有必要将外部污染降至最低并在恢复过程中保持样品完整性。开发了U型管采样方法,以在原位压力下收集大量多相样品。作为永久性或半永久性安装,U型管可以用于快速采集多个样品,也可以安装用于长期监测应用。作为Frio固存实验的一部分,U型管首先部署在德克萨斯州的自由县,以监测井间CO_2的注入。使用四极质谱仪在现场对气体(溶解相或分离相)进行分析,这是确定CO_2羽流到达的基础。高浓度氧气和氩气的存在以及甲烷浓度的降低表明在井眼完井过程中由于地表流体的引入而引起的样品变化。尽管生产该井以消除非天然流体,但测量结果表明,污染一直持续到不混溶的CO_2注入将地层流体扫入观测井眼为止。

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