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首页> 外文期刊>Journal of mass spectrometry: JMS >EGT-A sensitive time-of-flight mass spectrometer for multielement isotope gas analysis
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EGT-A sensitive time-of-flight mass spectrometer for multielement isotope gas analysis

机译:EGT-A型飞行时间质谱仪,用于多元素同位素气体分析

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摘要

The principles of operation and figures of merit of a novel, compact (324 mm x o 114 mm; volume approximately 1000 cm(3)) reflectron-type time-of-flight mass spectrometer designed for simultaneous multielement isotope gas analysis is presented. The system, which consists of a pulsed electron impact ion source, is designed either to directly analyse gas samples collected and stored in a compartment or samples extracted from solids using a CW laser system (fibre-coupled diode laser, 75 W, lambda = 808 +/- 10 nm). In latter case, laser pulses are focussed onto the sample surface to spot sizes of approximately 400 mu m in diameter that allows for direct ablation and vaporisation of solid sample material and releasing of trapped gases. A cleaning and trapping system that consists of various cold stages and getters is used before the gas enters the mass analyser. Measurements on various gases were conducted for performance evaluation, ranging from standard gases (Ar, Kr, and Xe) to trapped gases extracted from a sample of the Millbillillie meteorite. At optimised instrument settings, mass spectrometric measurements can be conducted with a mass resolution m/ increment m of up to approximately 1200 (O-16 and CH4 can be resolved), with a dynamic range of approximately 6 orders of magnitude and a mass calibration accuracy of approximately 100 ppm. The high detection sensitivity of the system allows the detection of gas species at partial pressures down to the low 10(-16) mbar level (corresponding to 10 particles/cm(3) at standard temperature and pressure, including an ion transmission of approximately 80%). Measurements using standard gases demonstrated that the isotope ratios for a given element can be measured with an accuracy at the per mill level (relative to terrestrial values). Measurements of Ar extracted from the meteorite Millbillillie gave a Ar-36/Ar-38 ratio of approximately 1.6, which is in good agreement with literature values.
机译:本文介绍了一种新型紧凑型(324mm×114mm;体积约1000cm(3))反射式飞行时间质谱仪的工作原理和优点。该系统由脉冲电子碰撞离子源组成,设计用于直接分析收集并储存在隔间中的气体样品,或使用连续激光系统(光纤耦合二极管激光器,;75 W,λ=808+/-10 nm)从固体中提取的样品。在后一种情况下,激光脉冲聚焦在样品表面,光斑直径约为400μm,允许固体样品材料直接烧蚀和蒸发,并释放捕获的气体。在气体进入质量分析仪之前,使用由各种冷级和吸气剂组成的清洁和捕集系统。为了进行性能评估,对各种气体进行了测量,从标准气体(Ar、Kr和Xe)到从Millbilillie陨石样品中提取的捕获气体。在优化的仪器设置下,质谱测量的质量分辨率m/增量m可高达约1200(可分辨O-16和CH4),动态范围约为6个数量级,质量校准精度约为100 ppm。该系统的高检测灵敏度允许在低至10(-16)mbar的分压下检测气体种类(在标准温度和压力下对应于;10个粒子/cm(3),包括大约80%的离子传输)。使用标准气体进行的测量表明,给定元素的同位素比率可以在每工厂水平上(相对于地面值)进行精确测量。对从陨石Millbilillie中提取的Ar进行测量,得出Ar-36/Ar-38的比值约为1.6,这与文献值非常一致。

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