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Incoherent Broadband Cavity Enhanced Absorption Spectroscopy For In Situ Measurements Of No_2 With A Blue Light Emitting Diode

机译:非相干宽带腔增强吸收光谱用于用蓝光二极管原位测量No_2

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We report on the development of Incoherent Broadband Cavity Enhanced Absorption Spectroscopy (IB-BCEAS) using a blue light emitting diode (LED) for the detection of NO_2 in laboratory ambient air. Absorption of the oxygen collisional pair in the atmosphere was also detected in the same spectral range. The mirror reflectivity was determined using a standard gas sample mixture of NO_2, and calibrated with the help of the absorption spectrum of the oxygen collisional pair in pure oxygen at atmospheric pressure. Optimization of the experimental parameters was investigated and is discussed in detail. For the first time in IBBCEAS involving broadband absorption spectra, averaging time for signal-to-noise ratio enhancement has been optimized using Allan variance plot. 18.1 ppbv NO_2 in laboratory ambient air has been retrieved from the absorption spectra using differential fitting method over a 40 nm spectral region centered at 470 nm. A minimum detection sensitivity of about 2.2 ppbv (1σ) for NO_2 at atmospheric pressure has been achieved using the optimal averaging time of 100 s by means of a high finesse optical cavity formed with two moderate reflectivity (~99.55%) mirrors. No purging of the cavity mirrors by high purity He or N_2 gas streams was necessary to prevent contamination of the mirror faces for the in situ measurements.
机译:我们报告使用蓝色发光二极管(LED)检测实验室环境空气中NO_2的非相干宽带腔增强吸收光谱(IB-BCEAS)的发展。在相同的光谱范围内,还检测到了大气中氧气对的吸收。使用标准的NO_2气体样品混合物确定镜面反射率,并在大气压下借助纯氧中的氧气碰撞对的吸收光谱进行校准。研究了实验参数的优化并进行了详细讨论。 IBBCEAS中首次涉及宽带吸收光谱,使用艾伦方差图优化了平均信噪比增强时间。使用差分拟合方法,在以470 nm为中心的40 nm光谱区域上,从吸收光谱中检索了实验室环境空气中的18.1 ppbv NO_2。使用具有两个中等反射率(〜99.55%)反射镜的高精细光学腔,使用100 s的最佳平均时间,在大气压力下对NO_2的最低检测灵敏度达到约2.2 ppbv(1σ)。无需通过高纯度He或N_2气流吹扫腔镜来防止原位测量时污染镜面。

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