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首页> 外文期刊>Sensors >Measurement of the D/H, 18O/16O, and 17O/16O Isotope Ratios in Water by Laser Absorption Spectroscopy at 2.73 μm
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Measurement of the D/H, 18O/16O, and 17O/16O Isotope Ratios in Water by Laser Absorption Spectroscopy at 2.73 μm

机译:D / H, 18 O / 16 O和 17 O / 16 O同位素比的测量激光吸收光谱法测定的水为2.73μm

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摘要

A compact isotope ratio laser spectrometry (IRLS) instrument was developed for simultaneous measurements of the D/H, 18O/16O and 17O/16O isotope ratios in water by laser absorption spectroscopy at 2.73 μm. Special attention is paid to the spectral data processing and implementation of a Kalman adaptive filtering to improve the measurement precision. Reduction of up to 3-fold in standard deviation in isotope ratio determination was obtained by the use of a Fourier filtering to remove undulation structure from spectrum baseline. Application of Kalman filtering enables isotope ratio measurement at 1 s time intervals with a precision (<1‰) better than that obtained by conventional 30 s averaging, while maintaining a fast system response. The implementation of the filter is described in detail and its effects on the accuracy and the precision of the isotope ratio measurements are investigated.
机译:开发了一种紧凑的同位素比率激光光谱仪(IRLS),用于同时测量D / H, 18 O / 16 O和 17 O水中的/ 16 O同位素比,通过激光吸收光谱在2.73μm下进行。要特别注意光谱数据处理和卡尔曼自适应滤波的实施,以提高测量精度。通过使用傅立叶滤波从光谱基线中去除波动结构,可将同位素比测定的标准偏差降低多达3倍。卡尔曼滤波的应用使得以1 s的时间间隔进行同位素比测量的精度(<1‰)优于传统30 s平均获得的精度,同时保持了快速的系统响应。详细介绍了该滤波器的实现方式,并研究了其对同位素比测量精度和精度的影响。

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