首页> 外文期刊>International Journal of Thermophysics >Step-Scan T-Cell Fourier Transform Infrared Photoacoustic Spectroscopy (FTIR-PAS) for Monitoring Environmental Air Pollutants
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Step-Scan T-Cell Fourier Transform Infrared Photoacoustic Spectroscopy (FTIR-PAS) for Monitoring Environmental Air Pollutants

机译:步进扫描T细胞傅里叶变换红外光声光谱(FTIR-PAS)用于监测环境空气污染物

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摘要

Air pollutants have adverse effects on the Earth's climate system. There is an urgent need for cost-effective devices capable of recognizing and detecting various ambient pollutants. An FTIR photoacoustic spectroscopy (FTIR-PAS) method based on a commercial FTIR spectrometer developed for air contamination monitoring will be presented. A resonant T-cell was determined to be the most appropriate resonator in view of the low-frequency requirement and space limitations in the sample compartment. Step-scan FTIR-PAS theory for regular cylinder resonator has been described as a reference for prediction of T-cell vibration principles. Both simulated amplitude and phase responses of the T-cell show good agreement with measurement data Carbon dioxide IR absorption spectra were used to demonstrate the capacity of the FTIR-PAS method to detect ambient pollutants. The theoretical detection limit for carbon dioxide was found to be 4 ppmv. A linear response to carbon dioxide concentration was found in the range from 2500 ppmv to 5000 ppmv. The results indicate that it is possible to use step-scan FTIR-PAS with a T-cell as a quantitative method for analysis of ambient contaminants.
机译:空气污染物会对地球的气候系统产生不利影响。迫切需要能够识别和检测各种环境污染物的具有成本效益的设备。将介绍一种基于商业FTIR光谱仪开发的FTIR光声光谱法(FTIR-PAS)方法,用于监测空气污染。考虑到低频要求和样品室中的空间限制,谐振T单元被确定为最合适的谐振器。已经描述了用于常规圆柱谐振器的步进扫描FTIR-PAS理论,作为预测T单元振动原理的参考。 T细胞的模拟幅度和相位响应与测量数据均显示出良好的一致性。二氧化碳红外吸收光谱用于证明FTIR-PAS方法检测环境污染物的能力。发现二氧化碳的理论检测极限为4ppmv。发现对二氧化碳浓度的线性响应在2500ppmv至5000ppmv的范围内。结果表明,可以将带有T细胞的步进扫描FTIR-PAS用作定量分析环境污染物的定量方法。

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