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首页> 外文期刊>The Science of the Total Environment >A methodology for the characterization of portable sensors for air quality measure with the goal of deployment in citizen science
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A methodology for the characterization of portable sensors for air quality measure with the goal of deployment in citizen science

机译:表征便携式传感器以进行空气质量测量的方法,其目标是在公民科学中进行部署

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摘要

The field of small air quality sensors is of growing interest within the scientific community, especially because this new technology is liable to improve air pollutant monitoring as well as be used for personal exposure quantification. Amongst the myriad existing devices, the performances are highly variable; this is why the sensors must be rigorously assessed before deployment, according to the intended use. This study is included in the Polluscope project; its purpose is to quantify personal exposure to air pollutants by using portable sensors. This paper designs and applies a methodology for the evaluation of portable air quality sensors to eight devices measuring PM, BC, NO_2 and O_3. The dedicated testing protocol includes static ambient air measurements compared with reference instruments, controlled chamber and mobility tests, as well as reproducibility evaluation. Three sensors (AE51, Cairclip and Canarin) were retained to be used for the field campaigns. The reliability of their performances were robustly quantified by using several metrics. These three devices (for a total of 36 units) were deployed to be worn by volunteers for a week. The results show the ability of sensors to discriminate between different environments (i.e., cooking, commuting or in an office). This work demonstrates, first, the ability of the three selected sensors to deliver data reliable enough to enable personal exposure estimations, and second, the robustness of this testing methodology.
机译:小型空气质量传感器领域在科学界引起了越来越多的兴趣,特别是因为这种新技术易于改善空气污染物监测以及用于个人暴露量化。在众多现有设备中,性能变化很大。因此,在部署之前,必须根据预期用途对传感器进行严格评估。该研究包含在Polluscope项目中;其目的是通过使用便携式传感器来量化个人对空气污染物的暴露。本文设计了一种便携式空气质量传感器的评估方法,并将其应用于八个测量PM,BC,NO_2和O_3的设备。专用测试协议包括与参考仪器相比的静态环境空气测量,受控腔室和流动性测试以及可重复性评估。保留了三个传感器(AE51,Cairclip和Canarin)用于野战。通过使用多个指标,可以可靠地量化其性能的可靠性。这三个装置(共36个装置)被部署为志愿者佩戴一周。结果表明,传感器能够区分不同的环境(例如,烹饪,通勤或办公室)。这项工作首先证明了三个所选传感器提供足够可靠的数据以进行个人暴露估计的能力,其次证明了这种测试方法的可靠性。

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