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An aircraft gas chromatograph-mass spectrometer System for Organic Fast Identification Analysis (SOFIA): design, performance and a case study of Asian monsoon pollution outflow

机译:用于有机快速鉴定分析(sOFIa)的飞机气相色谱 - 质谱仪系统:亚洲季风污染物流出的设计,性能和案例研究

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摘要

Volatile organic compounds (VOC) are important for global air quality and oxidation processes in the troposphere. In addition to ground-based measurements, the chemical evolution of such species during transport can be studied by performing in-situ airborne measurements. Generally, aircraft instrumentation needs to be sensitive, robust and sample at higher frequency than ground based systems while their construction must comply with rigorous mechanical and electrical safety standards. Here, we present a new System for Organic Fast Identification Analysis (SOFIA), which is a custom built fast Gas Chromatography – Mass Spectrometry (GC-MS) system with a time resolution of 2–3 min. The relatively high time resolution is the result of a novel cryogenic pre-concentration unit which rapidly cools (~ 6 °C/s) the sample enrichment traps to −140 °C, and a new chromatographic oven designed for rapid cooling rates (~ 30 °C/s) and subsequent thermal stabilization. SOFIA was installed in the High Altitude and Long Range Research Aircraft (HALO) for the Oxidation Mechanism Observations (OMO) campaign in August 2015, aimed at investigating the Asian monsoon pollution outflow in the tropical upper troposphere. In addition to a comprehensive instrument characterization we present an example monsoon plume crossing flight as a case study to demonstrate the instrument capability. Hydro- and halocarbon data from SOFIA are compared with mixing ratios of carbon monoxide (CO) and methane (CH4), used to define the pollution plume. By using excess (ExR) and normalized excess mixing ratios (NEMRs) the pollution could be attributed to two air masses of distinctly different origin, identified by back-trajectory analysis. This work endorses the use of SOFIA for aircraft operation and demonstrates the value of relatively high-frequency, multicomponent measurements in atmospheric chemistry research.
机译:挥发性有机化合物(VOC)对于对流层中的全球空气质量和氧化过程很重要。除了基于地面的测量外,还可以通过执行原位空中测量来研究此类物质在运输过程中的化学演化。通常,飞机仪表必须比地面系统灵敏,坚固,频率更高,同时其构造必须符合严格的机械和电气安全标准。在这里,我们介绍了一个新的有机快速鉴定分析系统(SOFIA),这是一个定制的快速气相色谱-质谱(GC-MS)系统,其时间分辨率为2-3分钟。相对较高的时间分辨率是新颖的低温预浓缩装置的结果,该装置可将样品富集阱快速冷却(〜6°C / s)至-140 C,并设计了一种新的色谱炉用于快速冷却(〜30) °C / s)和随后的热稳定化。 SOFIA于2015年8月安装在高空和远程研究飞机(HALO)中,用于氧化机理观测(OMO)运动,旨在调查热带对流层上亚洲季风的污染流出情况。除了全面的仪器表征外,我们还提供一个示例性季风羽流穿越飞行作为案例研究,以演示仪器的功能。将来自SOFIA的碳氢化合物和卤化碳数据与一氧化碳(CO)和甲烷(CH4)的混合比进行比较,以定义污染羽流。通过使用过量(ExR)和归一化过量混合比(NEMR),污染可以归因于两个来源明显不同的空气团,通过反向轨迹分析确定了这些空气团。这项工作支持将SOFIA用于飞机运行,并证明了相对高频,多组分测量在大气化学研究中的价值。

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