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首页> 外文期刊>Microwave and optical technology letters >High-sensitivity detection and quantification of CHCl3 vapors in various gas environments based on the photoacoustic spectroscopy
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High-sensitivity detection and quantification of CHCl3 vapors in various gas environments based on the photoacoustic spectroscopy

机译:基于光声光谱的各种气体环境中CHCL3蒸汽的高灵敏度检测和定量

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In this study, the quality factor and cell constant vs acoustic resonator sizes in the first radial and longitudinal modes were calculated using our homemade simulation. Based on these simulations a photoacoustic (PA) spectroscopy system was designed, optimized, and finally fabricated as a highsensitivity gas sensor. The subsequent experiments have been done to online monitoring of the trichloromethane (CHCl3) vapors trace. The sensitivity of system for detection of CHCl3 vapors was measured 488 ppb. Corresponding PA signal for different concentrations of CHCl3 vapors is determined in the presence of N-2, synthetic air, He, and Ar in various gas environments. It is shown that the effect of buffer gas and the relevant pressures are substantiated to achieve the minimum detectable concentration. In other words, using heavier gases at the same experimental conditions lead to detection of the lower concentrations. When the buffer gas of systemwasHe, the lowest PA signalwas recorded. This faint signal of He is due to vibrational-translational processes of He, thermodynamic and acoustic properties of system such as cell constant, quality factor, speed of sound, thermal diffusion, thermal boundary layer, and viscous boundary layer for He. These properties for various buffer gases were calculated and discussed.
机译:在该研究中,使用我们的自制模拟计算第一径向和纵向模式中的质量因子和电池常数VS声学谐振器尺寸。基于这些模拟,设计,优化,优化光声(PA)光谱系统,最终制成高度敏感气体传感器。随后的实验已经在在线监测三氯甲烷(CHCl 3)蒸气痕量。测量了488 ppb检测系统的系统的敏感性。用于不同浓度的CHCl3蒸气的相应PA信号在各种气体环境中存在N-2,合成空气,HE和AR的存在下确定。结果表明,缓冲气体和相关压力的效果被证实以实现最小可检测浓度。换句话说,在相同的实验条件下使用较重气体导致检测较低浓度。当系统洗脱的缓冲气体时,记录的最低PA信号。这种微弱的信号是由于振动翻译过程,系统的热力学和声学特性,例如细胞常数,质量因子,声音,热扩散,热边界层和粘性边界层的效果。计算并讨论各种缓冲气体的这些性质。

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