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首页> 外文期刊>Sensors and Actuators. B, Chemical >Precise measurement of the ~(13)CH_4/~(12)CH_4 ratio of diluted methane using a near-infrared laser absorption spectrometer
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Precise measurement of the ~(13)CH_4/~(12)CH_4 ratio of diluted methane using a near-infrared laser absorption spectrometer

机译:使用近红外激光吸收光谱仪精确测量稀释甲烷的〜(13)CH_4 /〜(12)CH_4比

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摘要

We measure the ~(13)CH_4/~(12)CH_4 ratio of methane diluted with air or nitrogen to investigate the applicability of our laser spectrometer to real environmental samples. We developed a 1.66 μm diode laser absorption spectrometer and demonstrated high precision on pure methane, but for practical observations it is appropriate to measure the samples directly without purification. We examine effects of different pressure, concentration and the kind of gases for diluting between samples and a working-standard on the measurement. The effects are found to be small and the high repetitive precision (reproducibility) of ~0.1 per thousand (1σ) is obtained at 10 and 1% methane concentrations without any correction or automatic control of the gas conditions. At 0.1% concentration, however, the precision stays at ~1per thousand. It is expected that the high precision of ~0.1per thousand at the 0.1% concentration cannot be achieved, due to saturation of the signal intensity at high pressure of the sample in a multi-pass cell, caused by pressure broadening of methane absorption lines. The relationship between the isotopic ratio measured by the laser and that by the isotopic ratio mass spectrometer (IRMS) is linear with small fluctuations, but the slope is slightly different from unity.
机译:我们测量了用空气或氮气稀释的甲烷的〜(13)CH_4 /〜(12)CH_4比率,以研究我们的激光光谱仪对实际环境样品的适用性。我们开发了1.66μm二极管激光吸收光谱仪,并证明了其对纯甲烷的高精度,但对于实际观察而言,无需纯化即可直接测量样品是合适的。我们检查了不同压力,浓度以及样品之间的稀释气体种类和工作标准对测量的影响。发现影响很小,并且在甲烷浓度为10%和1%的情况下,无需任何校正或自动控制气体条件,即可获得〜0.1千分之几(1σ)的高重复精度(重现性)。但是,在浓度为0.1%时,精度保持在〜千分之一。由于甲烷吸收管线的压力加宽,由于在多通道样品池中样品在高压下的信号强度饱和,因此预期无法在0.1%的浓度下达到约0.1 /千的高精度。激光测得的同位素比与同位素比质谱仪(IRMS)的同位素比之间的关系呈线性,波动很小,但斜率与单位略有不同。

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