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Calibrated high-precision sup17/supO-excess measurements using cavity ring-down spectroscopy with laser-current-tuned cavity resonance

机译:使用腔环衰荡光谱技术和激光电流调谐腔共振技术校准的高精度 17 O过剩测量

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High-precision analysis of the 17O / 16O isotope ratio in water and water vapor is of interest in hydrological, paleoclimate, and atmospheric science applications. Of specific interest is the parameter 17O excess (Δ17O), a measure of the deviation from a~linear relationship between 17O / 16O and 18O / 16O ratios. Conventional analyses of Δ17O of water are obtained by fluorination of H2O to O2 that is analyzed by dual-inlet isotope ratio mass spectrometry (IRMS). We describe a new laser spectroscopy instrument for high-precision Δ17O measurements. The new instrument uses cavity ring-down spectroscopy (CRDS) with laser-current-tuned cavity resonance to achieve reduced measurement drift compared with previous-generation instruments. Liquid water and water-vapor samples can be analyzed with a better than 8 per meg precision for Δ17O using integration times of less than 30 min. Calibration with respect to accepted water standards demonstrates that both the precision and the accuracy of Δ17O are competitive with conventional IRMS methods. The new instrument also achieves simultaneous analysis of δ18O, Δ17O and δD with precision of < 0.03‰, < 0.02 and < 0.2‰, respectively, based on repeated calibrated measurements.
机译:水和水蒸气中 17 O / 16 O同位素比的高精度分析在水文学,古气候和大气科学应用中都很有意义。特别感兴趣的是参数 17 O过剩(Δ 17 O),它是对 17 O /之间的线性关系的偏离的度量。 16 O和 18 O / 16 O的比率。通过将H 2 O氟化为O 2 进行水的Δ 17 O的常规分析,并通过双入口同位素比质量进行分析光谱仪(IRMS)。我们描述了一种用于高精度Δ 17 O测量的新型激光光谱仪。与上一代仪器相比,该新型仪器采用腔环衰荡光谱(CRDS)技术和激光电流调谐腔共振技术,可减少测量漂移。使用不到30分钟的积分时间,对于Δ 17 O而言,液态水和水蒸气样品的分析精度可以达到每兆精度8以上。根据公认的水标准进行的校准表明,Δ 17 O的精度和准确度均与常规IRMS方法相比具有竞争力。新仪器还可以同时分析δ 18 O,Δ 17 O和δ D ,精度分别为<0.03‰,<0.02和<基于重复的校准测量,分别为0.2‰。

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