Aseev Oleg, Tuzson Béla, Looser Herbert, Scheidegger Philipp, Liu Chang, Morstein Carina, Niederhauser Bernhard, Emmenegger Lukas
Opt Express. 2019 Feb 18;27(4):5314-5325. doi: 10.1364/OE.27.005314.
We report on the development and validation of a compact laser instrument using mid-IR direct absorption spectroscopy (DAS) for high-precision measurements of ethanol in breath-like air mixtures. Leveraging the intermittent continuous wave (iCW) driving for conventional narrow-band distributed feedback (DFB) quantum cascade laser (QCL) emitting around 9.3 µm and using a 25 m path length multiple-pass absorption cell at reduced pressure, a precision of 9 ppb (amount fraction, nmol mol) at 60 s integration time is achieved even in the presence of 5% of HO and CO. Thus, the instrument is well suitable for metrological studies to investigate observed, but yet unquantified, discrepancies between different breath alcohol reference-generation methods. The approach can be generalized and applied for other organic molecules in a wide range of applications.
我们报告了一种紧凑型激光仪器的开发与验证,该仪器采用中红外直接吸收光谱法(DAS)对类似呼吸的空气混合物中的乙醇进行高精度测量。利用间歇性连续波(iCW)驱动传统的窄带分布反馈(DFB)量子级联激光器(QCL),其发射波长约为9.3 µm,并使用在减压条件下具有25 m光程的多通吸收池,即使在存在5%的H₂O和CO的情况下,在60 s积分时间内也能实现9 ppb(摩尔分数,nmol/mol)的精度。因此,该仪器非常适合进行计量学研究,以调查不同呼气酒精参考生成方法之间已观察到但尚未量化的差异。该方法可以推广并应用于广泛应用中的其他有机分子。