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Techniques for avoiding discrimination errors in the dynamic sampling of condensable vapors

机译:避免在可冷凝蒸气的动态采样中出现鉴别误差的技术

摘要

In the mass spectrometric sampling of dynamic systems, measurements of the relative concentrations of condensable and noncondensable vapors can be significantly distorted if some subtle, but important, instrumental factors are overlooked. Even with in situ measurements, the condensables are readily lost to the container walls, and the noncondensables can persist within the vacuum chamber and yield a disproportionately high output signal. Where single pulses of vapor are sampled this source of error is avoided by gating either the mass spectrometer ""on'' or the data acquisition instrumentation ""on'' only during the very brief time-window when the initial vapor cloud emanating directly from the vapor source passes through the ionizer. Instrumentation for these techniques is detailed and its effectiveness is demonstrated by comparing gated and nongated spectra obtained from the pulsed-laser vaporization of several materials.
机译:在动态系统的质谱采样中,如果忽略了一些细微但重要的仪器因素,可冷凝和不可冷凝蒸气的相对浓度的测量值可能会显着失真。即使进行现场测量,可冷凝物也很容易丢失到容器壁上,并且不可冷凝物会残留在真空室内,并产生不成比例的高输出信号。在采样单个蒸气脉冲的情况下,仅在非常短的时间窗口内直接从初始蒸气云散发出来的时候,通过对质谱仪“ on”或数据采集仪器“ on”进行门控,可以避免这种误差源。蒸气源通过电离器。详细介绍了这些技术的仪器,并通过比较几种材料的脉冲激光汽化获得的门控和非门控光谱来证明其有效性。

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  • 作者

    Lincoln K. A.;

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  • 年度 1983
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