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首页> 外文期刊>Analytica chimica acta >Quantitative millimetre wavelength spectrometry at pressures approaching atmospheric part I. Absolute determination of transition line strengths and sample concentrations with a confocal fabry-perot cavity spectrometer
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Quantitative millimetre wavelength spectrometry at pressures approaching atmospheric part I. Absolute determination of transition line strengths and sample concentrations with a confocal fabry-perot cavity spectrometer

机译:接近大气压部分的压力下的定量毫米波波长光谱法。使用共焦法布里-珀罗腔光谱仪绝对确定过渡线强度和样品浓度

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摘要

The absolute determination of the millimetre wave power absorption coefficient of gas sampls in a Fabry-Perot cavity whose resonant frequency is synchronised to a millimetre wavelength source is described. A theoretical treatment valid for pressures > 200 Pa is developed. Absolute absorption coefficient measurements have been made on lines of SO_2 in the 50-60 GHz region that compared favourably with literature values. A calibration curve for SO_2 using the 5922.84 MHz lime at 667 Pa over the concentration range 1-100% in N_2 has been produced. This technique could be especially useful for remote monitoring and process control applications because it is not necessary to scan the spectral line in order to determine the concentration of a species. The source runs as a single frequency coinciding with the peak of a millimetre wavelength (MMW) absorption line. This means that the technique could operate effectively at pressures up to and above atmospheric without the need for sophisticated MMW sources that can sweep across a wide frequency band.
机译:描述了谐振频率与毫米波波长源同步的法布里-珀罗腔中气体样品的毫米波功率吸收系数的绝对确定。开发了一种适用于压力> 200 Pa的理论处理方法。在50-60 GHz区域内的SO_2线上进行了绝对吸收系数测量,与文献值相比具有优势。使用5922.84 MHz石灰在667 Pa下在N_2的浓度范围为1-100%时生成的SO_2的校准曲线。该技术对于远程监视和过程控制应用可能特别有用,因为不必扫描光谱线即可确定物种的浓度。源以与毫米波波长(MMW)吸收线的峰值一致的单一频率运行。这意味着该技术可以在高达及高于大气压的压力下有效运行,而无需复杂的MMW信号源,该信号可以扫过很宽的频带。

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