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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Cavity ring-down spectroscopy sensor development for high-time-resolution measurements of gaseous elemental mercury in ambient air
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Cavity ring-down spectroscopy sensor development for high-time-resolution measurements of gaseous elemental mercury in ambient air

机译:腔衰荡光谱传感器的开发,可用于高分辨率环境气体中的气态元素汞的测量

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We describe further development of a previous laboratory prototype pulsed cavity ring-down spectroscopy (CRDS) sensor into a field-deployable system for high-time-resolution, continuous, and automated measurement of gaseous elemental mercury (GEM) concentrations in ambient air. We employed an external, isotopically enriched Hg cell for automated locking and stabilization of the laser wavelength on the GEM peak absorption during measurements. Further, we describe implementation of differential absorption measurements via a piezoelectric tuning element for pulse-by-pulse tuning of the laser wavelength onto and off of the GEM absorption line. This allowed us to continuously correct (at 25 Hz) for system baseline extinction losses unrelated to GEM absorption. brbr Extensive measurement and calibration data obtained with the system were based on spike addition in both GEM-free air and ambient air. Challenges and interferences that occurred during measurements (particularly in ambient air) are discussed including temperature and ozone (Osub3/sub) concentration fluctuations, and steps taken to reduce these. CRDS data were highly linear (ir/isup2/sup ≥ 0.98) with data from a commercial Tekran 2537 Hg analyzer across a wide range of GEM concentrations (0 to 127 ng msup−3/sup) in Hg-free and ambient air. Measurements during periods of stable background GEM concentrations provided a conservative instrument sensitivity estimate of 0.35 ng msupa??3/sup for the CRDS system when time averaged for 5 min. This sensitivity, along with concentration patterns observed in ambient air (with the CRDS system and verified with the Tekran analyzer), showed that the sensor was capable of characterizing GEM fluctuations in ambient air. The value of fast-response GEM measurements was shown by a series of GEM spike additions a?? highlighting that high-temporal-resolution measurement allowed for detailed characterization of fast concentration fluctuations not possible with traditional analyzers.
机译:我们描述了将以前的实验室原型脉冲腔衰荡光谱(CRDS)传感器进一步发展为可现场部署的系统,用于高分辨率,连续和自动测量环境空气中气态元素汞(GEM)浓度的技术。我们使用外部同位素富集的Hg池在测量过程中自动锁定和稳定GEM峰吸收上的激光波长。此外,我们描述了通过压电调谐元件实现差分吸收测量的方法,该压电调谐元件用于在GEM吸收线上进行激光波长的逐脉冲调谐。这使我们能够连续校正(25 Hz)与GEM吸收无关的系统基线消光损失。 该系统获得的大量测量和校准数据均基于在不含GEM的空气和环境空气中添加的峰值。讨论了在测量过程中(尤其是在环境空气中)发生的挑战和干扰,包括温度和臭氧(O 3 )的浓度波动,以及为减少这些波动而采取的措施。 CRDS数据具有高度线性( r 2 ≥ 0.98),其数据来自市售Tekran 2537汞分析仪,其分析范围很广(0至127 ng m &min ;; 3 )在无汞和环境空气中。当平均时间为5分钟时,CRDS系统在稳定的背景GEM浓度期间进行的测量提供的保守仪器灵敏度估计为0.35 ng m a ?? 3 。这种灵敏度以及在环境空气中观察到的浓度模式(使用CRDS系统并通过Tekran分析仪进行了验证)表明,该传感器能够表征环境空气中的GEM波动。快速响应的GEM测量值由一系列GEM尖峰附加值a?强调指出,高温分辨率测量可以对传统浓度分析仪无法实现的快速浓度波动进行详细表征。

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