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Photoacoustic spectroscopy of formaldehyde with tunable laser radiation at the parts per billion level

机译:甲醛的光声光谱和可调谐的激光辐射,达十亿分之几的水平

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Selective and sensitive detection of formaldehyde (CH_2O) was achieved using a grazing-incidence optical parametric oscillator (GIOPO), pumped at high repetition rate, as a light source for photoacoustic spectroscopy. The photoacoustic spectrum of formaldehyde was measured in the range from 2785 to 2840 cm~(-1) and an absorption line at 2805.0 cm~(-1) was selected for detection. Concentrations down to 20 ppbv (parts per billion by volume) formaldehyde in nitrogen were recorded. The detection limit determined by background fluctuations was 3 ppbv (S/N = 1) for 3 s lock-in time constant and 3 min acquisition time. The 2805.0 cm~(-1) absorption line of the v_1 vibrational mode was chosen because of the absence of interference with water and carbon-dioxide bands. This allowed the direct detection of formaldehyde in laboratory air without filtering.
机译:使用以高重复频率泵浦的掠入射光学参量振荡器(GIOPO)作为光声光谱光源,可以选择性,灵敏地检测甲醛(CH_2O)。测得的甲醛的光声光谱范围为2785至2840 cm-1(-1),并选择2805.0 cm-1(-1)作为吸收线。记录到氮气中甲醛的浓度低至20 ppbv(十亿分之几)。对于3 s锁定时间常数和3 min采集时间,由背景波动确定的检测限为3 ppbv(S / N = 1)。之所以选择v_1振动模式的2805.0 cm〜(-1)吸收线,是因为它不干扰水和二氧化碳带。这使得无需过滤即可直接检测实验室空气中的甲醛。

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