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Intra-urban spatial variability of surface ozone in Riverside, CA: viability and validation of low-cost sensors

机译:河滨内表面臭氧的城市内部空间变异,CA:低成本传感器的可行性和验证

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摘要

Sensor networks are being more widely used to characterize and understand compounds in the atmosphere like ozone (O-3). This study employs a measurement tool, called the U-Pod, constructed at the University of Colorado Boulder, to investigate spatial and temporal variability of O3 in a 200 km(2) area of Riverside County near Los Angeles, California. This tool contains low-cost sensors to collect ambient data at non-permanent locations. The U-Pods were calibrated using a pre-deployment field calibration technique; all the U-Pods were collocated with regulatory monitors. After collocation, the U-Pods were deployed in the area mentioned. A subset of pods was deployed at two local regulatory air quality monitoring stations providing validation for the collocation calibration method. Field validation of sensor O3 measurements to minute-resolution reference observations resulted in R-2 and root mean squared errors (RMSEs) of 0.95-0.97 and 4.4-5.9 ppbv, respectively. Using the deployment data, ozone concentrations were observed to vary on this small spatial scale. In the analysis based on hourly binned data, the median R-2 values between all possible U-Pod pairs varied from 0.52 to 0.86 for ozone during the deployment. The medians of absolute differences were calculated between all possible pod pairs, 21 pairs total. The median values of those median absolute differences for each hour of the day varied between 2.2 and 9.3 ppbv for the ozone deployment. Since median differences between U-Pod concentrations during deployment are larger than the respective root mean square error values, we can conclude that there is spatial variability in this criteria pollutant across the study area. This is important because it means that citizens may be exposed to more, or less, ozone than they would assume based on current regulatory monitoring.
机译:传感器网络更广泛地用于表征和理解臭氧(O-3)等大气中的化合物。本研究采用了在科罗拉多州大学建造的U-Pod的测量工具,在加利福尼亚州洛杉矶附近的河畔县(2)区,调查O3的空间和时间变异。该工具包含低成本传感器,以在非永久位置收集环境数据。使用预部署现场校准技术进行校准U-POD;所有U-Pods都与监管显示器搭配。搭配后,U-POD部署在所述区域中。在两个本地监管空气质量监测站部署豆荚子集,为搭配校准方法提供验证。传感器O3测量的现场验证分钟分辨率的参考观察结果,导致R-2和均方根平方误差(RMSE)分别为0.95-0.97和4.4-5.9 ppbv。使用部署数据,观察臭氧浓度在这种小空间尺度上变化。在基于每小时Binned数据的分析中,所有可能的U-POD对之间的中值R-2值在部署期间为臭氧之间的0.52至0.86变化。在所有可能的POD对之间计算绝对差异的中位数,总计21对。每小时的中位绝对差异的中位数为2.2和9.3 PPBV之间的臭氧部署。由于部署期间U-POD浓度之间的中值差异大于相应的根均方误差值,因此我们可以得出结论,在研究区域的该标准污染物中存在空间可变性。这是重要的,因为这意味着公民可能会暴露于更多,或更少,臭氧,而不是根据当前的监管监测。

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  • 来源
    《Atmospheric Measurement Techniques》 |2018年第3期|共16页
  • 作者单位

    Univ Colorado Dept Mech Engn 427 UCB 1111 Engn Dr Boulder CO 80309 USA;

    Univ Colorado Dept Mech Engn 427 UCB 1111 Engn Dr Boulder CO 80309 USA;

    Air Qual Sensor Performance Evaluat Ctr South Coast Air Qual Management Dist 21865 Copley Dr Diamond Bar CA 91765 USA;

    Air Qual Sensor Performance Evaluat Ctr South Coast Air Qual Management Dist 21865 Copley Dr Diamond Bar CA 91765 USA;

    Univ Colorado Dept Comp Sci 430 UCB 1111 Engn Dr Boulder CO 80309 USA;

    Univ Colorado Dept Mech Engn 427 UCB 1111 Engn Dr Boulder CO 80309 USA;

    Univ Colorado Dept Mech Engn 427 UCB 1111 Engn Dr Boulder CO 80309 USA;

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  • 正文语种 eng
  • 中图分类 计量学;
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