首页> 美国卫生研究院文献>Scientific Reports >Highly Sensitive and Precise Analysis of SF6 Decomposition Component CO by Multi-comb Optical-feedback Cavity Enhanced Absorption Spectroscopy with a 2.3 μm Diode Laser
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Highly Sensitive and Precise Analysis of SF6 Decomposition Component CO by Multi-comb Optical-feedback Cavity Enhanced Absorption Spectroscopy with a 2.3 μm Diode Laser

机译:利用2.3μm二极管激光器的多梳状光反馈腔增强吸收光谱对SF6分解组分CO的高灵敏度和精确分析

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摘要

A ppb-level CO sensor based on multi-comb optical-feedback cavity enhanced absorption spectroscopy with a 2.3 μm diode laser was developed for SF6 decomposition analysis in electric power system. The effective optical path reached to 4.5 km within 35 cm length cavity. Besides, through modulating the cavity length five times automatically, the spectral resolution was improved to 0.0015 cm−1 from 0.0071 cm−1. Targeting the R(6) line of CO first overtone band at 4285.01 cm−1, which is interference free from absorption spectra of SF6 mixtures (SF6, SO2, H2S, SO2F2, HF, CF4, CO2, COS, O2 and H2O), the minimum detection limit and detection precision under different gas pressures were performed. At optimum integration time of 30 s determined by Allan deviation analysis and gas pressure of 40 torr, the minimum detection limit and detection precision of CO were better than 18 ppb and 150 ppt, respectively.
机译:研制了一种基于多梳光反馈腔增强吸收光谱仪和2.3μm二极管激光器的ppb级CO传感器,用于电力系统中的SF6分解分析。在35厘米长的腔内,有效光路达到4.5公里。此外,通过自动调节腔长五次,光谱分辨率从0.0071 cm -1 提高到0.0015 cm -1 。将CO第一泛音带的R(6)线对准4285.01 cm -1 ,不受SF6混合物(SF6,SO2,H2S,SO2F2,HF,CF4,CO2, COS,O2和H2O),最低检测限和不同气体压力下的检测精度。通过艾伦偏差分析确定的最佳积分时间为30 s,气压为40托时,CO的最小检出限和检出精度分别优于18 ppb和150 ppt。

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