专栏名称: 大气化学
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ES&T | 高时空分辨率测量空气挥发性有机化合物的新方法: 从采样到数据解卷积

大气化学  · 公众号  ·  · 2024-07-03 22:38

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A New Methodology for High Spatiotemporal Resolution Measurements of Air Volatile Organic Compounds: From Sampling to Data Deconvolution



由于标题字数限制,中文标题为自翻,以原标题为准)



Abstract

Monitoring of volatile organic compounds (VOCs) in air is crucial for understanding their atmospheric impacts and advancing their emission reduction plans. This study presents an innovative integrated methodology suitable for achieving semireal-time high spatiotemporal resolution three-dimensional measurements of VOCs from ground to hundreds of meters above ground. The methodology integrates an active AirCore sampler, custom-designed for deployment from unmanned aerial vehicles (UAV), a proton-transfer-reaction mass spectrometry (PTR-MS) for sample analysis, and a data deconvolution algorithm for improved time resolution for measurements of multiple VOCs in air. The application of the deconvolution technique significantly improves the signal strength of data from PTR-MS analysis of AirCore samples and enhances their temporal resolution by 4 to 8 times to 4–11 s. A case study demonstrates that the methodology can achieve sample collection and analysis of VOCs within 45 min, resulting in >120–360 spatially resolved data points for each VOC measured and achieving a horizontal resolution of 20–55 m at a UAV flight speed of 5 m/s and a vertical resolution of 5 m. This methodology presents new possibilities for acquiring 3-dimensional spatial distributions of VOC concentrations, effectively tackling the longstanding challenge of characterizing three-dimensional VOC distributions in the lowest portion of the atmospheric boundary layer.





Reference

Yang, Y., Zhou, J., Xie, C., Tian, W., Xue, M., Han, T., Chen, K., Zhang, Y., Liu, Y., Huang, Y., Sun, H., Liu, C., and Li, S.-M.: A New Methodology for High Spatiotemporal Resolution Measurements of Air Volatile Organic Compounds: From Sampling to Data Deconvolution, Environmental Science & Technology, 10.1021/acs.est.4c05669, 2024.

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