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Quantifying Neighborhood-Scale Spatial Variations of Ozone at Open Space and Urban Sites in Boulder Colorado Using Low-Cost Sensor Technology

机译:使用低成本传感器技术量化科罗拉多州博尔德市露天场所和城市场所的臭氧邻域尺度空间变化

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摘要

Recent advances in air pollution sensors have led to a new wave of low-cost measurement systems that can be deployed in dense networks to capture small-scale spatio-temporal variations in ozone, a pollutant known to cause negative human health impacts. This study deployed a network of seven low-cost ozone metal oxide sensor systems (UPods) in both an open space and an urban location in Boulder, Colorado during June and July of 2015, to quantify ozone variations on spatial scales ranging from 12 m between UPods to 6.7 km between open space and urban measurement sites with a measurement uncertainty of ~5 ppb. The results showed spatial variability of ozone at both deployment sites, with the largest differences between UPod measurements occurring during the afternoons. The peak median hourly difference between UPods was 6 ppb at 1:00 p.m. at the open space site, and 11 ppb at 4:00 p.m. at the urban site. Overall, the urban ozone measurements were higher than in the open space measurements. This study evaluates the effectiveness of using low-cost sensors to capture microscale spatial and temporal variation of ozone; additionally, it highlights the importance of field calibrations and measurement uncertainty quantification when deploying low-cost sensors.
机译:空气污染传感器的最新进展催生了低成本测量系统的新潮流,可以将其部署在密集的网络中,以捕获臭氧的小规模时空变化,臭氧是一种已知的会对人类健康造成负面影响的污染物。这项研究于2015年6月至2015年7月在科罗拉多州博尔德的一个开放空间和一个城市地点中部署了由七个低成本臭氧金属氧化物传感器系统(UPods)组成的网络,以量化介于12m至12m之间的空间尺度上的臭氧变化。开放空间与城市测量站点之间的距离可达6.7 km,测量不确定度约为5 ppb。结果表明,两个部署地点的臭氧都有空间差异,UPod测量之间的最大差异发生在下午。下午1:00时UPods之间的每小时峰值中值差异为6 ppb。在露天场所,下午4:00时为11 ppb。在市区。总体而言,城市臭氧测量值高于露天场所的测量值。这项研究评估了使用低成本传感器捕获臭氧的微观时空变化的有效性;此外,它强调了在部署低成本传感器时现场校准和测量不确定性量化的重要性。

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