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Long open-path measurements of greenhouse gases in air using near-infrared Fourier transform spectroscopy

机译:使用近红外傅里叶变换光谱法对空气中温室气体进行长时开放路径测量

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In complex and urban environments, atmospheric trace gas composition is highly variable in time and space. Point measurement techniques for trace gases with in situ instruments are well established and accurate, but do not provide spatial averaging to compare against developing high-resolution atmospheric models of composition and meteorology with resolutions of the order of a kilometre. Open-path measurement techniques provide path average concentrations and spatial averaging which, if sufficiently accurate, may be better suited to assessment and interpretation with such models. Open-path Fourier transform spectroscopy (FTS) in the mid-infrared region, and differential optical absorption spectroscopy (DOAS) in the UV and visible, have been used for many years for open-path spectroscopic measurements of selected species in both clean air and in polluted environments. Near infrared instrumentation allows measurements over longer paths than mid-infrared FTS for species such as greenhouse gases which are not easily accessible to DOAS.In this pilot study we present the first open-path near-infrared (4000–10?000?cmsup?1/sup, 1.0–2.5?μm) FTS measurements of COsub2/sub, CHsub4/sub, Osub2/sub, Hsub2/subO and HDO over a 1.5?km path in urban Heidelberg, Germany. We describe the construction of the open-path FTS system, the analysis of the collected spectra, several measures of precision and accuracy of the measurements, and the results a four-month trial measurement period in July–November?2014. The open-path measurements are compared to calibrated in situ measurements made at one end of the open path. We observe significant differences of the order of a few ppm for COsub2/sub and a few tens of ppb for CHsub4/sub between the open-path and point measurements which are 2 to 4 times the measurement repeatability, but we cannot unequivocally assign the differences to specific local sources or sinks. We conclude that open-path FTS may provide a valuable new tool for investigations of atmospheric trace gas composition in complex, small-scale environments such as cities.
机译:在复杂的城市环境中,大气中痕量气体的成分随时间和空间变化很大。使用现场仪器进行痕量气体的点测量技术已经建立并且准确,但是不能提供空间平均值,无法与发展的高分辨率大气组成和气象大气模型进行比较,分辨率约为一千米。开放路径测量技术提供路径平均浓度和空间平均,如果足够准确,则可能更适合使用此类模型进行评估和解释。多年来,中空区域的开放路径傅里叶变换光谱(FTS)以及紫外和可见光中的差分光学吸收光谱(DOAS)已用于清洁空气和空气中选定物种的开放路径光谱测量。在污染的环境中。与中红外FTS相比,近红外仪器可以对DOAS不易获取的温室气体等物种进行比中红外FTS更长的测量。在这项先导研究中,我们提出了第一个开放路径的近红外(4000-10?000?cm < sup>?1 ,1.0–2.5?μm)对CO 2 ,CH 4 ,O 2 ,H <位于德国海德堡的1.5公里公里路径上的sub> 2 O和HDO。我们描述了开放式FTS系统的建设,收集到的光谱的分析,测量的精确度和准确性的几种测量方法,以及2014年7月至11月为期四个月的试验测量结果。将开放路径的测量结果与在开放路径的一端进行的校准后的现场测量结果进行比较。我们观察到在开放路径和点测量之间,CO 2 的几ppm级和CH 4 的几ppb级的显着差异为2到4乘以测量重复性,但是我们不能明确地将差异分配给特定的本地源或汇。我们得出的结论是,开放路径FTS可能为研究复杂,小规模环境(例如城市)中的大气痕量气体成分提供有价值的新工具。

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