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Sample drying to improve HCHO measurements by PTR-MS instruments: Laboratory and field measurements

机译:样品干燥以通过PTR-MS仪器改善HCHO测量:实验室和现场测量

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A significant improvement in the PTR-MS instrument sensitivity to formaldehyde was obtained by drying the air sample to a dew point of -30 °C using a cold trap to condense and freeze water vapour. At warmer trap temperatures there was significant uptake of formaldehyde and other water soluble organics, suggesting the presence of a quasi-liquid layer on the ice surface. By removing water vapour to a low constant dew point, the PTR-MS can be operated at low E/N ratios, significantly increasing normalized sensitivities for all organics and removing their humidity dependence due to reactions with H~+(H_2O)_2. At an E/N ratio of 80 Td, the formaldehyde normalized sensitivity was 25 Hz/ppbv per MHz H_3O ~+ with an estimated detection limit of 78 pptv. Field testing demonstrated good agreement between HCHO measurements made at ambient humidity and corrected for water vapour effects compared to dehumidified sampling at -30 °C. Field testing also revealed that at an E/N ratio of 100 Td or lower there was a significant ion signal at m/49, likely CH_3OOH. Sampling drying and operation at low E/N ratios enables sensitive measurements of HCHO and potentially CH_3OOH, both important tropospheric photoproducts.
机译:PTR-MS仪器对甲醛的敏感性有了显着改善,方法是使用冷阱将空气样品干燥至-30°C的露点,以冷凝和冷冻水蒸气。在较热的捕集阱温度下,甲醛和其他水溶性有机物被大量吸收,这表明在冰表面上存在准液体层。通过将水蒸气去除至低的恒定露点,PTR-MS可以在低的E / N比下运行,从而显着提高了对所有有机物的归一化灵敏度,并消除了与H〜+(H_2O)_2反应引起的对湿度的依赖性。在80 Td的E / N比下,甲醛归一化灵敏度为25 Hz / ppbv / MHz H_3O〜+,估计检测限为78 pptv。现场测试表明,与在-30°C下进行除湿后的采样相比,在环境湿度下进行的HCHO测量与针对水蒸气影响的校正之间具有良好的一致性。现场测试还表明,在E / N比为100 Td或更低时,在m / 49处会出现明显的离子信号,可能是CH_3OOH。在低E / N比下进行采样干燥和操作,可以对HCHO和潜在的CH_3OOH(这两种重要的对流层光产品)进行灵敏的测量。

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