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High-precision determination of the 13CO2/12CO2 isotope ratio using a portable 2.008-µm diode-laser spectrometer

机译:使用便携式2.008-µm二极管激光光谱仪高精度测定13CO2 / 12CO2同位素比

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摘要

A compact and portable diode-laser spectrometer is developed for high-precision measurements of the 13CO2/12CO2 isotope ratio. Ro-vibrational transitions belonging to different combination bands, around 2.008 µm, are detected for the two isotopomers, using wavelength-modulation spectroscopy with first-harmonic detection. The determination of the isotope ratio is performed through a comparison between the spectra, simultaneously acquired in two different multiple-reflection cells designed to contain the sample and reference gases. The reproducibility of our method is extensively investigated over different time scales. In particular, the short-term precision of the isotope ratio determination is found to be 0.03%. We discuss the presence of possible systematic shifts in the δ-value and optimise the operating conditions to ensure accuracy within the precision level. A possible use for in-situ measurements in volcanic gases is also discussed.
机译:开发了一种紧凑的便携式二极管激光光谱仪,用于13CO2 / 12CO2同位素比的高精度测量。使用具有初谐波检测功能的波长调制光谱法,对这两种同功异构体检测到属于2.008 µm附近不同波段的Ro振动跃迁。同位素比的确定是通过光谱之间的比较来进行的,光谱是在两个不同的多反射池中同时采集的,这些池设计为容纳样品和参考气体。我们的方法的重现性已在不同时间范围内进行了广泛研究。特别地,发现同位素比测定的短期精度为0.03%。我们讨论了δ值可能发生系统偏移的情况,并优化了工作条件以确保精度水平内。还讨论了在火山气体中进行现场测量的可能用途。

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