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Improving Urban Air Quality Measurements by a Diffusion Charger Based Electrical Particle Sensors – A Field Study in Beijing, China

机译:基于扩散充电器的电子粒子传感器改善城市空气质量的测量–中国北京的实地研究

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High aerosol loadings contribute significantly to the air quality problems of Asian megacities. To address this, monitoring data for aerosol mass and number that is spatially and temoprally of high resolution is needed, while the cost of obtaining such data remains high. Here, we present a field study in a polluted megacity, Beijing, using a diffusion-chargebased electrical aerosol sensor, the Pegasor PPS-M, which is a robust and comparatively low-cost instrument for the monitoring of both aerosol mass and number simultaneously. We present data over several months in the year 2014, and for varying aerosol size distributions, and analyze the performance against particle number and mass (volume) measured using a wide range particle sizer (WPS) and beta-attenuation-based PM2.5 observations. We show that using a single trap voltage, the PPS-M correlates well with particle mass, but not so well with particle number due to the variability in particle size distributions. However, the instrument response to number was improved by running the instrument with a variable trap voltage, and using the ratio of the different signals to gain information on the particle average volume. With this method, we were able to improve the correlation of the PPS-M; with the observed particle number from R = 0.14 to R = 0.72 for the measurement time period. Altogether, the PPS-M instrument displayed robustness and low maintenance requirements, and it showed good correlation with the other instruments in this study.
机译:较高的气溶胶含量极大地导致了亚洲特大城市的空气质量问题。为了解决这个问题,需要监测在空间上和分辨率上具有高分辨率的气溶胶质量和数量的数据,而获得这种数据的成本仍然很高。在这里,我们使用污染扩散的电子气溶胶传感器Pegasor PPS-M在北京一个污染严重的大城市进行了实地研究,该传感器是同时监测气溶胶质量和数量的功能强大且价格较低的仪器。我们提供了2014年几个月中不同气溶胶尺寸分布的数据,并针对使用大范围粒度分析仪(WPS)和基于β衰减的PM2.5观测值测量的颗粒数量和质量(体积)进行了性能分析。我们显示,使用单个陷阱电压,PPS-M与颗粒质量相关性很好,但由于颗粒大小分布的可变性,与颗粒数量的相关性不是很好。但是,通过在可变陷阱电压下运行仪器,并使用不同信号的比率获得有关颗粒平均体积的信息,可以改善仪器对数量的响应。通过这种方法,我们可以改善PPS-M的相关性。在测量时间段内观察到的粒子数从R = 0.14到R = 0.72。总之,PPS-M仪器显示出坚固性和低维护要求,并且与本研究中的其他仪器显示出良好的相关性。

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