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基于蓝激光二极管腔衰荡光谱技术的高灵敏度、多功能大气 NO2 和 NOx 检测仪。

A sensitive and versatile detector for atmospheric NO2 and NOx based on blue diode laser cavity ring-down spectroscopy.

机构信息

Earth System Research Laboratory, National Oceanic and Atmospheric Administration, Boulder, CO, USA.

出版信息

Environ Sci Technol. 2009 Oct 15;43(20):7831-6. doi: 10.1021/es902067h.

Abstract

A sensitive, small detector was developed for atmospheric NO2 and NOx concentration measurements. NO2 is directly detected by laser diode based cavity ring-down spectroscopy (CRDS) at 404 nm. The sum of NO and NO2 (=NOx) is simultaneously measured in a second cavity by quantitative conversion of ambient NO to NO2 in excess ozone. Interferences due to absorption by other trace gases at 404 nm, such as ozone and water vapor, are either negligible or small and are easily quantified. The limit of detection is 22 pptv (2sigma precision) for NO2 at 1 s time resolution. The conversion efficiency of NO to NO2 is 99% in excess O3. The accuracy of the NO2 measurement is mainly limited by the NO2 absorption cross section to +/-3%. Because of the formation of undetectable higher nitrogen oxides in subsequent reactions of NO2 with ozone in the NOx channel, the (1sigma) accuracy of the NOx measurement is increased to approximately +/-5% depending on the level of NOx. The new instrument was designed to be easily deployed in the field with respect to size, weight and consumables. Measurements were validated against a photolysis/chemiluminescence detector during six days of sampling ambient air with colocated inlets. The data sets for NO2, NO and NOx exhibit high correlation and good agreement within the combined accuracies of both methods. Linear fits for all three species give similar slopes of 0.99 in ambient air.

摘要

一种灵敏、小巧的探测器被开发出来,用于测量大气中的 NO2 和 NOx 浓度。NO2 采用基于激光二极管的腔衰荡光谱(CRDS)在 404nm 处直接检测。在第二个腔中,通过过量臭氧定量转化环境 NO 到 NO2 来同时测量 NO 和 NO2(=NOx)的总和。在 404nm 处,其他痕量气体(如臭氧和水蒸气)的吸收引起的干扰可以忽略不计或很小,并且很容易定量。对于 1s 时间分辨率的 NO2,检测限为 22pptV(2sigma 精度)。在过量 O3 中,NO 到 NO2 的转化率为 99%。NO2 测量的准确性主要受 NO2 吸收截面的限制,精度为 +/-3%。由于在 NOx 通道中 NO2 与臭氧随后的反应中形成了不可检测的更高氮氧化物,因此根据 NOx 的水平,NOx 测量的(1sigma)准确性增加到大约 +/-5%。新仪器的设计考虑到尺寸、重量和消耗品,便于在现场部署。在对环境空气进行六天采样的过程中,通过在相同位置设置入口,将该仪器与光解/化学发光探测器进行了验证。NO2、NO 和 NOx 的数据集具有很高的相关性,并且在两种方法的综合精度内具有良好的一致性。所有三种物质的线性拟合都给出了类似的斜率,在环境空气中为 0.99。

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