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首页> 外文期刊>Analytical chemistry >Precision trace cas analysis by FT-IR spectroscopy. 1. Simultaneous analysis of CO2, CH4, N2O, and CO in air
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Precision trace cas analysis by FT-IR spectroscopy. 1. Simultaneous analysis of CO2, CH4, N2O, and CO in air

机译:通过FT-IR光谱进行精密痕量CAS分析。 1.同时分析空气中的CO2,CH4,N2O和CO

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We report the development of a method of trace gas analysis based on 1-cm(-1) resolution Fourier transform infrared (FT-IR) spectroscopy, deployable in both laboratory and held applications. Carbon dioxide, methane, nitrous oxide, and carbon monoxide may be analyzed simultaneously in a single air sample using this method, We have demonstrated that the method can provide analytical precision of the order of +/-0.15 mu mol mol(-1) for CO2, +/-0.9 mnol mol(-1) for CH4, +/-0.3 nmol mol(-1) for N2O, and +/-0.3 nmol mol(-1) for CO, expressed as mole fractions in dry air. The analytical precision is in all cases competitive with or superior to that of the more usual methods of analysis for these trace gases, namely, nondispersive infrared spectroscopy for CO2 and gas chromatography-based techniques for CH4, N2O, and CO. The novel FT-IR method relies on calibration using synthetically calculated absorbance spectra and a chemometric multivariate calibration algorithm, classical least squares. [References: 22]
机译:我们报告了一种基于1-cm(-1)分辨率傅里叶变换红外(FT-IR)光谱法的痕量气体分析方法的开发,该方法可在实验室和固定应用中部署。使用此方法可以在单个空气样品中同时分析二氧化碳,甲烷,一氧化二氮和一氧化碳,我们证明了该方法可以提供+/- 0.15μmol mol(-1)的分析精度。 CO2,CH4 +/- 0.9 mol(-1)mol(-1),N2O +/- 0.3 nmol mol(-1),CO +/- 0.3 nmol mol(-1),以干燥空气中的摩尔分数表示。在所有情况下,分析精度都与这些痕量气体的更常用分析方法(即用于CO2的非分散红外光谱法和用于CH4,N2O和CO的基于气相色谱的技术)相比具有竞争优势或优于后者。 IR方法依靠使用合成计算的吸收光谱和化学计量学多元校准算法(经典最小二乘法)进行校准。 [参考:22]

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