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Dynamic terahertz spectroscopy of gas molecules mixed with unwanted aerosol under atmospheric pressure using fibre-based asynchronous-optical-sampling terahertz time-domain spectroscopy

机译:使用基于光纤的异步光学采样太赫兹时域光谱在大气压力下动态混合气体分子与有害气溶胶的太赫兹光谱

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Terahertz (THz) spectroscopy is a promising method for analysing polar gas molecules mixed with unwanted aerosols due to its ability to obtain spectral fingerprints of rotational transition and immunity to aerosol scattering. In this article, dynamic THz spectroscopy of acetonitrile (CH3CN) gas was performed in the presence of smoke under the atmospheric pressure using a fibre-based, asynchronous-optical-sampling THz time-domain spectrometer. To match THz spectral signatures of gas molecules at atmospheric pressure, the spectral resolution was optimized to 1?GHz with a measurement rate of 1?Hz. The spectral overlapping of closely packed absorption lines significantly boosted the detection limit to 200?ppm when considering all the spectral contributions of the numerous absorption lines from 0.2?THz to 1?THz. Temporal changes of the CH3CN gas concentration were monitored under the smoky condition at the atmospheric pressure during volatilization of CH3CN droplets and the following diffusion of the volatilized CH3CN gas without the influence of scattering or absorption by the smoke. This system will be a powerful tool for real-time monitoring of target gases in practical applications of gas analysis in the atmospheric pressure, such as combustion processes or fire accident.
机译:太赫兹(THz)光谱学是一种用于分析与有害气溶胶混合的极性气体分子的有前途的方法,因为它具有获得旋转转变的光谱指纹和抗气溶胶散射的能力。在本文中,使用基于光纤的异步光学采样THz时域光谱仪,在大气压下在烟雾存在下,对乙腈(CH3CN)气体进行动态THz光谱分析。为了匹配大气压下气体分子的THz光谱特征,将光谱分辨率优化为1?GHz,测量速率为1?Hz。考虑到大量吸收线的所有光谱贡献(从0.2?THz到1?THz),紧密堆积的吸收线的光谱重叠会极大地将检测限提高到200?ppm。在烟气条件下,在CH3CN液滴挥发过程中以及在随后的挥发的CH3CN气体扩散过程中,在大烟条件下监测CH3CN气体浓度的时间变化,而不受烟气的散射或吸收的影响。该系统将成为在大气压力下进行气体分析的实际应用(例如燃烧过程或火灾事故)中实时监测目标气体的强大工具。

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