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Water vapor δ2H, δ18O and δ17O measurements using an off-axis integrated cavity output spectrometer – sensitivity to water vapor concentration, delta value and averaging-time

机译:使用离轴集成腔输出光谱仪测量水蒸气δ2H,δ18O和δ17O–对水蒸气浓度,增量值和平均时间的敏感性

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摘要

RationaleHigh-precision analysis of atmospheric water vapor isotope compositions, especially δ17O values, can be used to improve our understanding of multiple hydrological and meteorological processes (e.g., differentiate equilibrium or kinetic fractionation). This study focused on assessing, for the first time, how the accuracy and precision of vapor δ17O laser spectroscopy measurements depend on vapor concentration, delta range, and averaging-time.MethodsA Triple Water Vapor Isotope Analyzer (T-WVIA) was used to evaluate the accuracy and precision of δ2H, δ18O and δ17O measurements. The sensitivity of accuracy and precision to water vapor concentration was evaluated using two international standards (GISP and SLAP2). The sensitivity of precision to delta value was evaluated using four working standards spanning a large delta range. The sensitivity of precision to averaging-time was assessed by measuring one standard continuously for 24 hours.ResultsOverall, the accuracy and precision of the δ2H, δ18O and δ17O measurements were high. Across all vapor concentrations, the accuracy of δ2H, δ18O and δ17O observations ranged from 0.10‰ to 1.84‰, 0.08‰ to 0.86‰ and 0.06‰ to 0.62‰, respectively, and the precision ranged from 0.099‰ to 0.430‰, 0.009‰ to 0.080‰ and 0.022‰ to 0.054‰, respectively. The accuracy and precision of all isotope measurements were sensitive to concentration, with the higher accuracy and precision generally observed under moderate vapor concentrations (i.e., 10000–15000 ppm) for all isotopes. The precision was also sensitive to the range of delta values, although the effect was not as large compared with the sensitivity to concentration. The precision was much less sensitive to averaging-time than the concentration and delta range effects.ConclusionsThe accuracy and precision performance of the T-WVIA depend on concentration but depend less on the delta value and averaging-time. The instrument can simultaneously and continuously measure δ2H, δ18O and δ17O values in water vapor, opening a new window to better understand ecological, hydrological and meteorological processes.
机译:原理大气水蒸气同位素组成的高精度分析,尤其是δ17O值,可用于增进我们对多种水文和气象过程(例如区分平衡或动力学分级)的了解。这项研究的重点是首次评估蒸汽δ17O激光光谱测量的准确性和精密度如何取决于蒸汽浓度,δ范围和平均时间。方法使用三重水蒸气同位素分析仪(T-WVIA)进行评估δ2H,δ18O和δ17O测量的精度和精确度。使用两个国际标准(GISP和SLAP2)评估了准确度和精确度对水蒸气浓度的敏感性。使用跨越大变化量范围的四个工作标准评估了精度对变化量值的敏感性。通过连续测量24小时的一种标准液来评估精度对平均时间的敏感性。结果总体而言,δ2H,δ18O和δ17O测量的准确性和精密度很高。在所有蒸汽浓度下,δ2H,δ18O和δ17O观测值的精度分别为0.10‰至1.84‰,0.08‰至0.86‰和0.06‰至0.62‰,精度范围为0.099‰至0.430‰,0.009‰至0.69‰。 0.080‰和0.022‰至0.054‰。所有同位素测量的准确度和精密度都对浓度敏感,通常在中等浓度的蒸气浓度(即10000-15000 ppm)下观察到所有同位素都具有较高的准确度和精密度。精度对增量值的范围也很敏感,尽管与浓度敏感度相比影响并不大。与浓度和增量范围效应相比,精度对平均时间的敏感性要低得多。结论T-WVIA的精度和精密度性能取决于浓度,但对增量值和平均时间的依赖性较小。该仪器可以同时连续测量水蒸气中的δ2H,δ18O和δ17O值,从而打开了一个新的窗口,可以更好地了解生态,水文和气象过程。

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