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2016 - 2019年,潘多拉头部传感器内聚甲醛(POM-H 德尔林)脱气对直射阳光和多轴甲醛柱测量的影响。

Effect of Polyoxymethylene (POM-H Delrin) offgassing within Pandora head sensor on direct sun and multi-axis formaldehyde column measurements in 2016 - 2019.

作者信息

Spinei Elena, Tiefengraber Martin, Müller Moritz, Gebetsberger Manuel, Cede Alexander, Valin Luke, Szykman James, Whitehill Andrew, Kostakis Alexander, Santos Fernando, Abbuhasan Nader, Zhao Xiaoyi, Fioletov Vitali, Lee Sum Chi, Swap Robert

机构信息

Center for Space Science And Engineering Research, Virginia Polytechnic Institute and State University, Blacksburg, VA, USA.

LuftBlick, Innsbruck, Austria.

出版信息

Atmos Meas Tech. 2021;14(1):647-663. doi: 10.5194/amt-14-647-2021.

Abstract

Analysis of formaldehyde measurements by the Pandora spectrometer systems between 2016 and 2019 suggested that there was a temperature dependent process inside Pandora head sensor that emitted formaldehyde. Some parts in the head sensor were manufactured from thermal plastic polyoxymethylene homopolimer (E.I. Du Pont de Nemour & Co., USA: POM-H Delrin®) and were responsible for formaldehyde production. Laboratory analysis of the four Pandora head sensors showed that internal formaldehyde production had exponential temperature dependence with a damping coefficient of 0.0911±0.0024 °C and the exponential function amplitude ranging from 0.0041 DU to 0.049 DU. No apparent dependency on the head sensor age and heating/cooling rates was detected. The total amount of formaldehyde internally generated by the POM-H Delrin components and contributing to the direct sun measurements were estimated based on the head sensor temperature and solar zenith angle of the measurements. Measurements in winter, during colder (<10°C) days in general and at high solar zenith angles (> 75 °) were minimally impacted. Measurements during hot days (>28°C) and small solar zenith angles had up to 1 DU (2.69×10 molecules/cm) contribution from POM-H Delrin parts. Multi-axis differential slant column densities were minimally impacted (< 0.01 DU) due to the reference spectrum collected within a short time period with a small difference in head sensor temperature. Three new POM-H Delrin free Pandora head sensors (manufactured in summer 2019) were evaluated for temperature dependent attenuation across the entire spectral range (300 to 530 nm). No formaldehyde or any other absorption above the instrumental noise was observed across the entire spectral range.

摘要

对2016年至2019年期间潘多拉光谱仪系统所做甲醛测量结果的分析表明,潘多拉头部传感器内部存在一个与温度相关的甲醛释放过程。头部传感器的某些部件由热塑性聚甲醛均聚物(美国杜邦公司:POM-H 德尔林®)制成,这些部件是甲醛产生的原因。对四个潘多拉头部传感器的实验室分析表明,内部甲醛产生具有指数温度依赖性,阻尼系数为0.0911±0.0024 °C,指数函数幅度在0.0041 DU至0.049 DU之间。未检测到对头部传感器使用年限以及加热/冷却速率的明显依赖性。根据测量时头部传感器的温度和太阳天顶角,估算了由POM-H 德尔林部件内部产生并影响直射阳光测量的甲醛总量。冬季测量、一般较冷(<10°C)的日子以及太阳天顶角较大(> 75°)时的测量受到的影响最小。炎热天气(>28°C)和太阳天顶角较小时的测量中,POM-H 德尔林部件产生的甲醛贡献高达1 DU(2.69×10分子/cm)。由于在短时间内采集参考光谱且头部传感器温度差异较小,多轴差分斜柱密度受到的影响最小(< 0.01 DU)。对三个新的不含POM-H 德尔林的潘多拉头部传感器(2019年夏季制造)在整个光谱范围(300至530 nm)内的温度依赖性衰减进行了评估。在整个光谱范围内未观察到高于仪器噪声的甲醛或任何其他吸收。

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