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A new purge and trap headspace technique to analyze low volatile compounds from fluid inclusions of rocks and minerals

机译:一种新的吹扫捕集顶空技术,用于分析岩石和矿物的流体包裹体中的低挥发性化合物

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摘要

A new method for the analysis of trace gases from fluid inclusions of minerals has been developed. The purge and trap GC-MS system is based on the system described by Nolting et al. (1988) and was optimized for the analyses of halogenated volatile organic compounds (VOCs) having boiling points as low as -128. °C (carbon tetrafluoride).The sample preconcentration cold trap consists of a U-shaped glass lined steel tube (GLT™), that is immersed into a small liquid nitrogen Dewar vessel for cooling. A rapid desorption step heats up the preconcentration tube in 30s from -196°C to 200°C. The process is carried out by using a pressurized air stream to dissipate the liquid nitrogen followed by resistive heating of the trap. The design of the cold trap and the direct transfer of desorbed analytes onto the GC column via a deactivated capillary column retention gap made sample refocusing within the GC oven unnecessary. Furthermore, a special air-tight grinding device was developed in which samples ranging from soft halite (hardness 2, Mohs scale) to hard quartz (hardness 7) are effectively ground to average diameters of 1000nm or below, thereby releasing gases from fluid inclusions of minerals. The gases are then purged from the grinding chamber with a He carrier gas flow. The detection and quantitative determination of gases, such as SF6 and CF4 released from fluorites and CH3Cl from halite samples is demonstrated.
机译:开发了一种分析矿物流体包裹体中痕量气体的新方法。吹扫捕集GC-MS系统基于Nolting等人描述的系统。 (1988),并针对沸点低至-128的卤化挥发性有机化合物(VOC)的分析进行了优化。 °C(四氟化碳)。样品预浓缩冷阱由U型玻璃衬里的钢管(GLT™)组成,浸入小型液氮杜瓦瓶中进行冷却。快速解吸步骤可在30秒内将预浓缩管从-196°C加热到200°C。该过程是通过使用压缩空气流驱散液氮,然后对捕集阱进行电阻加热来进行的。冷阱的设计以及通过失活的毛细管色谱柱保留间隙将解吸的分析物直接转移到GC色谱柱上,因此无需在GC柱箱内重新聚焦样品。此外,还开发了一种特殊的气密性研磨设备,可以有效地研磨从软盐岩(硬度为2,莫氏硬度)到硬石英(硬度为7)的样品,平均直径为1000nm或以下,从而从流体夹杂物中释放出气体矿物质。然后用氦气载气流从研磨室中清除气体。证明了对萤石中释放出的气体(例如SF6和CF4以及卤石样品中的CH3Cl)进行检测和定量测定的方法。

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