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Cavity ring-down spectroscopy sensor for detection of hydrogen chloride

机译:用于检测氯化氢的腔衰荡光谱传感器

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A laser-based cavity ring-down spectroscopy (CRDS) sensor for measurement of hydrogen chloride (HC1) has been developed and characterized. The instrument uses light from a distributed-feedback diode laser at 1742 nm coupled to a high finesse optical cavity to make sensitive and quantifiable concentration measurements of HC1 based on optical absorption. The instrument has a (1σ) limit of detection of <20pptv in 1 min and has high specificity to HC1. The measurement response time to changes in input HCl concentration is <15 s. Validation studies with a previously calibrated permeation tube setup show an accuracy of better than 10%. The CRDS sensor was preliminarily tested in the field with two other HCl instruments (mist chamber and chemical ionization mass spectrometry), all of which were in broad agreement. The mist chamber and CRDS sensors both showed a 400 pptv plume within 50 pptv agreement. The sensor also allows simultaneous sensitive measurements of water and methane, and minimal hardware modification would allow detection of other near-infrared absorbers.
机译:已经开发并表征了用于测量氯化氢(HC1)的基于激光的腔衰荡光谱(CRDS)传感器。该仪器使用来自1742 nm的分布式反馈二极管激光器的光并耦合到高精细光学腔,以基于光吸收对HCl进行敏感且可量化的浓度测量。该仪器在1分钟内的检测极限(1σ)小于20pptv,并且对HC1具有高特异性。输入HCl浓度变化的测量响应时间小于15 s。使用先前校准的渗透管设置进行的验证研究显示,其准确度优于10%。 CRDS传感器已在野外用另外两台HCl仪器(雾室和化学电离质谱法)进行了初步测试,所有这些仪器都具有广泛的一致性。雾室和CRDS传感器均显示出在50 pptv协议范围内的400 pptv羽流。该传感器还可以同时对水和甲烷进行灵敏的测量,并且只需进行最少的硬件改动即可检测其他近红外吸收剂。

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