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OH radical measurements in combustion environments using wavelength modulation spectroscopy and dual-frequency comb spectroscopy near 1491 nm

机译:使用波长调制光谱和双频梳状光谱在1491 nm附近测量燃烧环境中的OH自由基

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摘要

Hydroxyl radical (OH) is a key intermediate reactive species during combustion processes relevant to power production, transportation, and manufacturing. We demonstrate an OH sensor based on in situ laser absorption spectroscopy for deployment in industrial conditions. The sensor relies on telecommunications-fiber-coupled, tunable-diode-laser absorption spectroscopy of an OH transition near 1491 nm. By employing wavelength modulation spectroscopy, the sensor is capable of in situ, quantitative detection of OH down to mole fraction values of 10(-5) over a 75-cm pathlength. To increase the accuracy of the OH sensor, we perform the first dual-comb spectroscopy measurement above a flame and use the results to create an absorption database of water vapor transitions from 1489.2 to 1492.5 nm at temperatures up to 2165 K. The database is included in the analysis procedure for the tunable diode laser sensor to account for the water vapor absorption that overlaps with the OH absorption. The utility of the laser sensor is demonstrated by characterizing the concentration of OH radical above a catalytic combustor under different operating conditions.
机译:羟基自由基(OH)是与电力生产,运输和制造相关的燃烧过程中的关键中间反应物种。我们演示了基于原位激光吸收光谱的OH传感器,可在工业条件下进行部署。该传感器依赖于电信光纤耦合的可调谐二极管激光吸收光谱,其光谱接近1491 nm。通过使用波长调制光谱,该传感器能够在75厘米的光程中原位定量检测低至10(-5)的摩尔分数的OH。为了提高OH传感器的精度,我们在火焰上方执行了首次双梳光谱测量,并使用该结果创建了温度高达2165 K时从1489.2 nm到1492.5 nm的水蒸气跃迁的吸收数据库。该数据库包括在内在可调谐二极管激光传感器的分析过程中,要考虑到与OH吸收重叠的水蒸气吸收。通过在不同操作条件下表征催化燃烧器上方OH自由基的浓度,可以证明激光传感器的实用性。

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