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Gas Measurement Using Static Fourier Transform Infrared Spectrometers

机译:使用静态傅立叶变换红外光谱仪进行气体测量

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摘要

Online monitoring of gases in industrial processes is an ambitious task due to adverse conditions such as mechanical vibrations and temperature fluctuations. Whereas conventional Fourier transform infrared (FTIR) spectrometers use rather complex optical and mechanical designs to ensure stable operation, static FTIR spectrometers do not require moving parts and thus offer inherent stability at comparatively low costs. Therefore, we present a novel, compact gas measurement system using a static single-mirror Fourier transform spectrometer (sSMFTS). The system works in the mid-infrared range from 650 cm−1 to 1250 cm−1 and can be operated with a customized White cell, yielding optical path lengths of up to 120 cm for highly sensitive quantification of gas concentrations. To validate the system, we measure different concentrations of 1,1,1,2-Tetrafluoroethane (R134a) and perform a PLS regression analysis of the acquired infrared spectra. Thereby, the measured absorption spectra show good agreement with reference data. Since the system additionally permits measurement rates of up to 200 Hz and high signal-to-noise ratios, an application in process analysis appears promising.
机译:由于不利条件,例如机械振动和温度波动,在线监测工业过程中的气体是一项艰巨的任务。传统的傅立叶变换红外(FTIR)光谱仪使用相当复杂的光学和机械设计来确保稳定的操作,而静态FTIR光谱仪不需要活动部件,因此以相对较低的成本提供了固有的稳定性。因此,我们提出了一种使用静态单镜傅立叶变换光谱仪(sSMFTS)的新颖,紧凑的气体测量系统。该系统在650 cm -1 到1250 cm -1 的中红外范围内工作,并且可以与定制的白电池一起使用,产生的光路长度可达120 cm用于气体浓度的高灵敏度定量。为了验证系统,我们测量了不同浓度的1,1,1,2-四氟乙烷(R134a),并对获得的红外光谱进行了PLS回归分析。因此,测得的吸收光谱与参考数据显示出良好的一致性。由于该系统还允许高达200 Hz的测量速率和高信噪比,因此在过程分析中的应用似乎很有希望。

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