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Validation of acetonitrile (CHsub3/subCN) measurements in the stratosphere and lower mesosphere from the SMILES instrument on the International Space Station

机译:从国际空间站微笑仪器验证平流层和较低介质层中的乙腈(CH <亚> 3 CN)测量

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Acetonitrile (CH3CN) is a volatile organic compound (VOC) and a potential tracer of biomass burning. We evaluated the capability of using observations derived from the Superconducting Submillimeter-Wave Limb-Emission Sounder (SMILES) on the International Space Station (ISS) to measure CH3CN profiles. The error in a CH3CN vertical profile from the Level-2 research (L2r) product version 3.0.0 was estimated by theoretical error analysis and also compared with other instrumental measurements. We estimated the systematic and random errors to be ~5.8 ppt (7.8 %) and 25 ppt (60 %), respectively, for a single observation at 15.7 hPa in the tropics, where the CH3CN measurements are enhanced. The major source of systematic error was the pressure-broadening coefficient, and its contribution to the total systematic error was approximately 60 % in the middle stratosphere (15.7–4.8 hPa). The random error decreased to less than 40 % after averaging 10 profiles in the pressure range of 28.8–1.6 hPa. The total error due to uncertainties in other molecular spectroscopic parameters (2.8 ppt) was comparable to that of CH3CN spectroscopic parameters. We compared the SMILES CH3CN profiles with those of the microwave limb sounder (MLS) on the Aura satellite (version 4.2). The SMILES CH3CN values were consistent with those from MLS within the standard deviation (1σ) of the MLS observations. The difference between the SMILES and MLS CH3CN profiles increased with altitude and was within 20–35 ppt (20 %–260 %) at 15.7–1.6 hPa. We observed discrepancies of 5–10 ppt (10 %–30 %) between the SMILES CH3CN profiles observed by different spectrometers, and hence, we do not recommend merging SMILES CH3CN profiles derived from different spectrometers. We found that the SMILES CH3CN volume mixing ratio (VMR) in the upper stratosphere has a seasonal maximum in February.
机译:乙腈(CH 3 CN)是挥发性有机化合物(VOC)和生物质燃烧的潜在示踪剂。我们评估了使用从国际空间站(ISS)上的超导亚峰值波肢体发射探测器(SMILILES)的观测的能力来测量CH3CN配置文件。通过理论误差分析估计了来自Level-2研究(L2R)产品版本3.0.0的CH3CN垂直轮廓中的误差。与其他仪器测量相比,也估计了7.0.0版本3.0.0。我们估计系统和随机误差分别为〜5.8 ppt(7.8%)和25 ppt(60%),在热带地区的15.7 HPA下单一观察,CH3CN测量得到增强。系统误差的主要来源是压力拓宽系数,其对中间平流层(15.7-4.8 HPA)的总系统误差的贡献约为60%。随机误差在平均10分布在28.8-1.6 HPa的压力范围内降低至小于40%。由于其他分子光谱参数(2.8 pPT)中的不确定性导致的总误差与CH3CN光谱参数的不确定性相当。我们将微笑CH3CN配置文件与Aura卫星(版本4.2)的微波肢体声音(MLS)进行了比较。微笑CH3CN值与来自MLS观察结果的标准偏差(1σ)内的MLS一致。微笑和MLS CH3CN型材之间的差异随高度而增加,在15.7-1.6 HPA的20-35 ppt(20%-260%)内。我们观察到不同光谱仪观察到的微笑CH3CN型材之间的5-10 ppt(10%-30%)的差异,因此,我们不建议利用来自不同光谱仪的微笑CH3CN配置文件。我们发现,上层影层中的微笑CH3CN体积混合比(VMR)在2月份的季节性最大。

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