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A Quantitative Analysis Method Based on Collision Broadening for Trace Gas Using Terahertz Heterodyne Spectrometer.

Spectrochimica acta Part A, Molecular and biomolecular spectroscopy(2022)

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Abstract
Quantitative analysis of trace gases is an important research field in analytical chemistry. The terahertz electronic spectrometer is one of the most powerful tools for detecting trace gas. Here, a terahertz spectrometer based on frequency multiplier chain and heterodyne detection was presented. The rotational spectra of acetonitrile (CH3CN) gas were measured in the 290-370 GHz frequency band with 100 kHz spectral resolution. The spectrometer demonstrated excellent spectral specificity and the extrapolated limit of detection for CH3CN gas of 1.4 ppm. Furthermore, a novel quantification method of trace gas was proposed based on broadening mechanisms. The CH3CN self-and nitrogen (N-2)-collisional broadening coefficients were obtained experimentally for verifying the method. The CH3CN concentration of the validation group was calculated, and the relative error was 0.1%. The error analysis of the different number of measurements of the method was carried out. The method could provide a new perspective for trace gas quantitative analysis. (C)& nbsp;2022 Elsevier B.V. All rights reserved.
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Key words
Quantitative analysis,Terahertz rotation spectroscopy,Collisional broadening,Trace gas
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