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The Potential of Commercial Sensors for Spatially Dense Short-term Air Quality Monitoring Based on Multiple Short-term Evaluations of 30 Sensor Nodes in Urban Areas in Korea

机译:基于韩国城市地区30个传感器节点的多次短期评估,用于空间密集型短期空气质量监测的商用传感器的潜力

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Recently, highly spatially dense air quality monitoring networks using low-cost sensors have been attempted worldwide. However, the quality of data from these sensor networks remains to be validated. This study assessed the potential of low-cost sensors for spatially dense air quality monitoring. Thirty sets of air quality sensor nodes for CO, NO_(2), O_(3), PM_(2.5), and PM_(10) were custom-built to evaluate their consistency in measurement, both among the sensor nodes and between the sensor node and instruments that use Federal Reference/Equivalent Methods (FRMs/FEMs) in the real atmosphere under two distinctly differing meteorological conditions (summer and winter) in Seoul and Busan, Korea. We found that commercially available low-cost sensors possess great potential as monitors for short-term air quality studies in urban areas, at least for one-month periods, given that (1) the self-consistency among the 30 sensors was high (R~(2) > 0.93), (2) the consistency between the sensors and the FRM/FEM instruments was reasonably high (R~(2) > 0.87 overall for the periods of comparison ), and (3) the consistency both among the sensors and between the sensors and the FRM/FEM instruments remained stable throughout the summer and the winter. However, vigorous data post-processing is needed to obtain reliable air quality data. For longer-term or temporally discontinuous monitoring, several issues must be addressed, including the limited lifetime of sensors, the degradation in sensor performance over time, and the long warm-up times for gaseous pollutant sensors. The O_(3) sensors required minimal post-processing correction, and the particulate matter and CO sensors agreed well with the FEM instruments after appropriate scale correction, but the NO_(2) sensors required additional efforts to correct for the effects of meteorological conditions and interfering materials. Overall, our results suggest that when investigating spatiotemporally heterogeneous distributions of air pollutants in various urban environments, a three-dimensional sensor network can be a useful tool for short-term monitoring, as long as data are corrected properly.
机译:最近,在全球范围内尝试了使用低成本传感器的高度空间密集的空气质量监测网络。但是,来自这些传感器网络的数据质量仍有待验证。这项研究评估了低成本传感器在空间密集的空气质量监测中的潜力。定制了30套用于CO,NO_(2),O_(3),PM_(2.5)和PM_(10)的空气质量传感器节点,以评估它们在传感器节点之间以及传感器之间的测量一致性。在韩国首尔和釜山的两种明显不同的气象条件(夏季和冬季)下,在实际大气中使用联邦参考/等效方法(FRM / FEM)的节点和仪器。我们发现,市售的低成本传感器作为监测城市地区短期空气质量的监测器具有巨大潜力,至少需要持续一个月的时间,因为(1)30个传感器之间的自洽性很高(R 〜(2)> 0.93),(2)传感器与FRM / FEM仪器之间的一致性相当高(在比较期间R〜(2)> 0.87整体),以及(3)两者之间的一致性整个夏季和冬季,传感器以及传感器与FRM / FEM仪器之间的传感器保持稳定。但是,需要进行大量数据后处理才能获得可靠的空气质量数据。对于长期或时间上不连续的监视,必须解决几个问题,包括传感器的使用寿命有限,传感器性能随时间下降以及气体污染物传感器的预热时间长。 O_(3)传感器需要最少的后处理校正,而颗粒物和CO传感器经过适当的比例校正后与FEM仪器吻合得很好,但是NO_(2)传感器需要额外的努力来校正气象条件和温度的影响。干扰材料。总体而言,我们的结果表明,在调查各种城市环境中空气污染物的时空分布时,只要数据得到正确校正,三维传感器网络就可以用作短期监测的有用工具。

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