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首页> 外文期刊>Atmospheric Measurement Techniques >The airborne mass spectrometer AIMS - Part 2: Measurements of trace gases with stratospheric or tropospheric origin in the UTLS
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The airborne mass spectrometer AIMS - Part 2: Measurements of trace gases with stratospheric or tropospheric origin in the UTLS

机译:航空质谱仪AIMS-第2部分:UTLS中平流层或对流层起源的痕量气体的测量

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Understanding the role of climate-sensitive trace gas variabilities in the upper troposphere and lower stratosphere region (UTLS) and their impact on its radiative budget requires accurate measurements. The composition of the UTLS is governed by transport and chemistry of stratospheric and tropospheric constituents, such as chlorine, nitrogen oxide and sulfur compounds. The Atmospheric chemical Ionization Mass Spectrometer AIMS has been developed to accurately measure a set of these constituents on aircraft by means of chemical ionization. Here we present a setup using SF5- reagent ions for the simultaneous measurement of trace gas concentrations of HCl, HNO3 and SO2 in the pptv to ppmv (10(-12) to 10(-6) mol mol(-1)) range with in-flight and online calibration called AIMS-TG (Atmospheric chemical Ionization Mass Spectrometer for measurements of trace gases). Part 1 of this paper (Kaufmann et al., 2016) reports on the UTLS water vapor measurements with the AIMS-H2O configuration. The instrument can be flexibly switched between two configurations depending on the scientific objective of the mission. For AIMS-TG, a custom-made gas discharge ion source has been developed for generation of reagent ions that selectively react with HCl, HNO3, SO2 and HONO. HNO3 and HCl are routinely calibrated in-flight using permeation devices; SO2 is continuously calibrated during flight adding an isotopically labeled (SO2)-S-34 standard. In addition, we report on trace gas measurements of HONO, which is sensitive to the reaction with SF5-. The detection limit for the various trace gases is in the low 10 pptv range at a 1 s time resolution with an overall uncertainty of the measurement of the order of 20 %. AIMS has been integrated and successfully operated on the DLR research aircraft Falcon and HALO (High Altitude LOng range research aircraft). As an example, measurements conducted during the TACTS/ESMVal (Transport and Composition of the LMS/UT and Earth System Model Validation) mission with HALO in 2012 are presented, focusing on a classification of tropospheric and stratospheric influences in the UTLS region. The combination of AIMS measurements with other measurement techniques yields a comprehensive picture of the sulfur, chlorine and reactive nitrogen oxide budget in the UTLS. The different trace gases measured with AIMS exhibit the potential to gain a better understanding of the trace gas origin and variability at and near the tropopause.
机译:要了解对流层上和平流层下层区域(UTLS)中对气候敏感的微量气体的作用及其对辐射预算的影响,需要进行准确的测量。 UTLS的组成受平流层和对流层成分(例如氯,氮氧化物和硫化合物)的运输和化学性质控制。大气化学电离质谱仪AIMS的开发旨在通过化学电离精确测量飞机上的这些成分。在这里,我们介绍了一种使用SF5-试剂离子的装置,用于同时测量pptv至ppmv(10(-12)至10(-6)mol mol(-1))范围内的HCl,HNO3和SO2的痕量气体浓度,飞行中和在线校准称为AIMS-TG(用于测量痕量气体的大气化学电离质谱仪)。本文的第1部分(Kaufmann等人,2016)报告了使用AIMS-H2O配置进行的UTLS水蒸气测量。仪器可以根据任务的科学目的在两种配置之间灵活切换。对于AIMS-TG,已经开发了一种定制的气体放电离子源,用于生成与HCl,HNO3,SO2和HONO选择性反应的试剂离子。 HNO3和HCl在飞行中使用渗透设备进行常规校准;飞行期间会不断校准SO2,添加同位素标记的(SO2)-S-34标准品。此外,我们报告了HONO的痕量气体测量结果,它对与SF5-的反应敏感。在1 s的时间分辨率下,各种痕量气体的检测极限在10 pptv的低范围内,测量的总体不确定性约为20%。 AIMS已在DLR研究飞机Falcon和HALO(高空范围远程研究飞机)上集成并成功运行。例如,介绍了在2012年与HALO进行的TACTS / ESMVal(LMS / UT的运输和组成以及地球系统模型验证)任务期间进行的测量,重点是对UTLS地区对流层和平流层影响的分类。 AIMS测量与其他测量技术的结合可全面了解UTLS中的硫,氯和反应性氮氧化物的收支状况。用AIMS测量的不同痕量气体具有潜在的潜力,可以更好地了解对流层顶及其附近的痕量气体来源和变异性。

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