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首页> 外文期刊>Applied Spectroscopy >In Situ Infrared Emission Spectroscopy for Quantitative Gas-Phase Measurement Under High Temperature Reaction Conditions: An Analytical Method for Methane by Means of an Innovative Small-Volume Flowing Cell
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In Situ Infrared Emission Spectroscopy for Quantitative Gas-Phase Measurement Under High Temperature Reaction Conditions: An Analytical Method for Methane by Means of an Innovative Small-Volume Flowing Cell

机译:高温反应条件下气相定量测量的原位红外发射光谱:通过创新的小体积流通池进行甲烷分析的方法

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We have used infrared emission spectroscopy (IRES) in order to perform in situ studies under flowing gas-phase conditions. When the small-volume cell developed herein is used, we can (1) observe emission spectra from a hot gas-phase sample having an effective volume much less than one milliliter, (2) observe spectra of typical molecular species present, and (3) observe spectra of the more important molecular species down to below 10% and in some cases even as low as 1%. In addition, an analytical method has been derived in order to conduct quantitative studies under typical reaction conditions. We show that simplifications can be made in the data acquisition and handling for a direct linear correlation between band intensity and concentration with only simple background correction. The practical lower limit for methane in the present setup is approximately 0.5–1% v/v depending on the selected temperature. Our data were collected at 500, 600, and 700 °C, respectively. The major features of the present cell design are fairly simple and basically formed by a quartz tube (outer diameter=6 mm, inner diameter=4 mm) inside a metal pipe and two tubular ceramic heaters. This simple setup has advantages and attractive features that have extended the application of IRES to new fields and, in particular, for in situ studies of hydrocarbon reactions at different residence times at high temperature.
机译:为了在流动的气相条件下进行原位研究,我们使用了红外发射光谱(IRES)。使用本文开发的小体积电池时,我们可以(1)观察有效体积远小于1毫升的热气相样品的发射光谱,(2)观察存在的典型分子种类的光谱,以及(3) )观察更重要的分子种类的光谱,直至10%以下,在某些情况下甚至低至1%。另外,为了在典型的反应条件下进行定量研究,已经提出了一种分析方法。我们表明,只需简单的背景校正,就可以在数据采集和处理中进行简化,以实现谱带强度与浓度之间的直接线性相关。在当前设置中,实际的甲烷下限取决于所选温度,约为0.5-1%v / v。我们的数据分别在500、600和700°C下收集。本电池设计的主要特点是相当简单,基本上由金属管内部的石英管(外径= 6 mm,内径= 4 mm)和两个管状陶瓷加热器形成。这种简单的设置具有优点和吸引人的功能,这些优点和优点已将IRES的应用扩展到了新领域,尤其是用于在高温下不同停留时间进行烃类反应的原位研究。

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    《Applied Spectroscopy》 |2010年第2期|141-148|共8页
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