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首页> 外文期刊>Atmospheric Measurement Techniques >Correcting the impact of the isotope composition on the mixing ratio dependency of water vapour isotope measurements with cavity ring-down spectrometers
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Correcting the impact of the isotope composition on the mixing ratio dependency of water vapour isotope measurements with cavity ring-down spectrometers

机译:校正同位素组成对水蒸气同位素测量与腔响光光谱仪的混合比依赖性的影响

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摘要

Recent advances in laser spectroscopy enable high-frequency in situ measurements of the isotope composition of water vapour. At low water vapour mixing ratios, however, the measured stable water isotope composition can be substantially affected by a measurement artefact known as the mixing ratio dependency, which is commonly considered independent of the isotope composition. Here we systematically investigate how the mixing ratio dependency, in a range from 500 to 23 000 ppmv of three commercial cavity ring-down spectrometers, is affected by the isotope composition of water vapour. We find that the isotope composition of water vapour has a substantial and systematic impact on the mixing ratio dependency for all three analysers, particularly at mixing ratios below 4000 ppmv. This isotope composition dependency can create a deviation of +/- 0.5 parts per thousand and +/- 6.0 parts per thousand for delta O-18 and delta D, respectively, at similar to 2000 ppmv, resulting in about 2 parts per thousand-3 parts per thousand deviation for the d-excess. An assessment of the robustness of our findings shows that the overall behaviour is reproducible over up to 2 years for different dry gas supplies, while being independent of the method for generating the water vapour and being the first order of the evaluation sequence. We propose replacing the univariate mixing ratio dependency corrections with a new, combined isotope composition-mixing ratio dependency correction. Using aircraft- and ship-based measurements in an Arctic environment, we illustrate a relevant application of the correction. Based on our findings, we suggest that the dependency on the isotope composition may be primarily related to spectroscopy. Repeatedly characterising the combined isotope composition-mixing ratio dependency of laser spectrometers when performing water vapour measurements at high elevations, on aircraft, or in polar regions appears critical to enable reliable data interpretation in dry environments.
机译:激光光谱的最新进展使水蒸气同位素组成的原位测量能够实现高频。然而,在低水蒸气混合比中,测量的稳定水同位素组合物可以基本上受到称为混合比依赖性的测量人工的影响,这通常被认为与同位素组合物无关。在这里,我们系统地研究了混合比依赖性,在三个商业腔循环光谱仪的500至23000ppmv的范围内,受水蒸汽的同位素组成的影响。我们发现水蒸气的同位素组成对所有三种分析仪的混合比依赖性具有大量和系统的影响,特别是在低于4000ppmV的比例下。这种同位素组成依赖性可以分别为ΔO-18和Δd的千分之一和+/- 6.0分别造成+/-的+/- 6.0份左右的偏差,类似于2000 ppmv,导致每千千分之二左右零件每千次偏差为D余量。对我们研究结果的稳健性的评估表明,对于不同的干气供应,整体行为可重复于多达2年的时间,同时独立于产生水蒸气的方法并是评价序列的第一阶的方法。我们提出用新的组合同位素组成混合比依赖性校正替代单变量混合比依赖性校正。在北极环境中使用飞机和船舶测量,我们说明了校正的相关应用。基于我们的研究结果,我们建议对同位素组成的依赖性主要与光谱有关。在高凸起的水蒸气测量时,在飞机上或极地区域的高升高时,反复表征激光光谱仪的组合式混合比依赖性,以便在干燥环境中实现可靠的数据解释,这是至关重要的。

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