MQW laser diode photoacoustic detection of formaldehyde in 2.3 μm spectral range

J. Cihelka, S. Civiš, I. Matulková
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Abstract

The spectrum of formaldehyde was studied in the 4350 - 4361 cm-1 region using photoacoustic detection in combination with a semiconductor GalnAsSb/AlGaAsSb diode laser as a radiation source. This laser operates at laboratory and higher temperatures in the 4342 - 4362 cm-1 region with an output of about 1 mW. The spectrum of formaldehyde was measured photoacoustically and this was compared with other techniques, such as laser absorption in a single path 0.4 m long cell and Fourier transform spectroscopy. The dependence of the photoacoustic signal on the pressure of the measured gas was recorded. The same technique was employed to determine the detection limit (less than 0.1 ppmV) of formaldehyde diluted with nitrogen for the strongest absorption line in the emission region of the diode laser.
MQW激光二极管在2.3 μm光谱范围内光声检测甲醛
采用半导体GalnAsSb/AlGaAsSb二极管激光器作为辐射源,结合光声检测,研究了甲醛在4350 ~ 4361 cm-1区域的光谱。该激光器在4342 - 4362 cm-1区域的实验室和更高温度下工作,输出功率约为1 mW。甲醛的光谱是光声测量的,并与其他技术进行比较,如0.4 m长单路电池的激光吸收和傅里叶变换光谱。记录了光声信号与被测气体压力的关系。用同样的方法测定了二极管激光器发射区最强吸收线中氮稀释甲醛的检出限(小于0.1 ppmV)。
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