High-sensitivity remote detection of atmospheric pollutants and greenhouse gases at low ppm levels using near-infrared tunable diode lasers

A. Roy, A. Upadhyay, A. Chakraborty
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引用次数: 2

Abstract

The concentration of atmospheric pollutants and greenhouse gases needs to be precisely monitored for sustainable industrial development and to predict the climate shifts caused by global warming. Such measurements are made on a continuous basis in ecologically sensitive and urban areas in the advanced countries. Tunable diode laser spectroscopy (TDLS) is the most versatile non-destructive technology currently available for remote measurements of multiple gases with very high selectivity (low cross-sensitivity), very high sensitivity (on the order of ppm and ppb) and under hazardous conditions. We demonstrate absolute measurements of acetylene, methane and carbon dioxide using a fielddeployable fully automated TDLS system that uses calibration-free 2f wavelength modulation spectroscopy (2f WMS) techniques with sensitivities of low ppm levels. A 40 mW, 1531.52 nm distributed feedback (DFB) diode laser, a 10 mW, 1650 nm DFB laser and a 1 mW, 2004 nm vertical cavity surface emitting laser (VCSEL) are used in the experiments to probe the P9 transition of acetylene, R4 transition of methane and R16 transition of carbon dioxide respectively. Data acquisition and on-board analysis comprises a Raspberry Pi-based embedded system that is controllable over a wireless connection. Gas concentration and pressure are simultaneously extracted by fitting the experimental signals to 2f WMS signals simulated using spectroscopic parameters obtained from the HITRAN database. The lowest detected concentration is 11 ppm for acetylene, 275 ppm for methane and 285 ppm for carbon dioxide using a 28 cm long single-pass gas cell.
使用近红外可调谐二极管激光器对低ppm水平的大气污染物和温室气体进行高灵敏度远程检测
为了可持续的工业发展和预测全球变暖引起的气候变化,需要精确监测大气污染物和温室气体的浓度。在发达国家的生态敏感地区和城市地区,这种测量是在持续的基础上进行的。可调谐二极管激光光谱(TDLS)是目前最通用的非破坏性技术,可用于多种气体的远程测量,具有非常高的选择性(低交叉灵敏度),非常高的灵敏度(在ppm和ppb的数量级上)和危险条件。我们演示了使用现场部署的全自动TDLS系统对乙炔、甲烷和二氧化碳的绝对测量,该系统使用无校准的2f波长调制光谱(2f WMS)技术,灵敏度低至ppm水平。利用40 mW、1531.52 nm分布反馈(DFB)二极管激光器、10 mW、1650 nm DFB激光器和1 mW、2004 nm垂直腔面发射激光器,分别对乙炔的P9跃迁、甲烷的R4跃迁和二氧化碳的R16跃迁进行了实验研究。数据采集和机载分析包括一个基于树莓派的嵌入式系统,该系统可以通过无线连接进行控制。利用从HITRAN数据库获取的光谱参数模拟的2f WMS信号与实验信号拟合,同时提取气体浓度和压力。使用28厘米长的单通道气体电池,最低检测浓度为乙炔11 ppm,甲烷275 ppm和二氧化碳285 ppm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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