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Combustion exhaust measurements of nitric of nitric oxide with an ultraviolet diode-laser-based absorption sensor

机译:基于紫外二极管激光的吸收传感器测量一氧化氮的燃烧尾气

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A diode-laser-based sensor has been developed for ultraviolet absorption measurements of the nitric oxide (NO) molecule. The sensor is based on the sum-frequency mixing (SFM) of the output of a tunable, 395-nm external-cavity diode laser and a 532-nm diode-pumped, frequency-doubled Nd:YAG laser in a β-barium borate crystal. The SFM process generates 325±75 nW of ultraviolet radiation at 226.8 nm, corresponding to the (v′=0, v″=0) band of the A~(2)Σ~(+)-X~(2)Π electronic transition of NO. Results from initial laboratory experiments in a gas cell are briefly discussed, followed by results from field demonstrations of the sensor for measurements in the exhaust streams of a gas turbine engine and a well-stirred reactor. It is demonstrated that the sensor is capable of fully resolving the absorption spectrum and accurately measuring the NO concentration in actual combustion environments. Absorption is clearly visible in the gas turbine exhaust even for the lowest concentrations of 9 parts per million (ppm) for idle conditions and for a path length of 0.51 m. The sensitivity of the current system is estimated at 0.23%, which corresponds to a detection limit of 0.8 ppm in 1 m for 1000 K gas. The estimated uncertainty in the absolute concentrations that we obtained using the sensor is 10%.
机译:已经开发出基于二极管激光的传感器,用于一氧化氮(NO)分子的紫外线吸收测量。该传感器基于可调谐395 nm外腔二极管激光器和532 nm二极管泵浦倍频Nd:YAG激光器在β钡硼酸盐中的输出的总和混频(SFM)水晶。 SFM过程在226.8 nm处产生325±75 nW的紫外线辐射,对应于A〜(2)Σ〜(+)-X〜(2)Π电子的(v'= 0,v''= 0)波段NO的过渡简要讨论了在气室中进行的初始实验室实验的结果,然后是在燃气涡轮发动机和搅拌良好的反应堆的排气流中测量传感器的现场演示结果。结果表明,该传感器能够完全解析吸收光谱并能够准确测量实际燃烧环境中的NO浓度。即使在怠速工况和路径长度为0.51 m的最低浓度为百万分之9(ppm)的情况下,燃气轮机排气中的吸收也清晰可见。当前系统的灵敏度估计为0.23%,对应于1000 K气体在1 m中的检测极限为0.8 ppm。我们使用传感器获得的绝对浓度的估计不确定度为10%。

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