Department of Flue Gas Cleaning and Air Quality Control, Institute of Combustion and Power Plant Technology (IFK), University of Stuttgart, Pfaffenwaldring 23, 70569 Stuttgart, Germany.
Sensors (Basel). 2021 Jan 26;21(3):804. doi: 10.3390/s21030804.
Air pollution in urban areas is a huge concern that demands an efficient air quality control to ensure health quality standards. The hotspots can be located by increasing spatial distribution of ambient air quality monitoring for which the low-cost sensors can be used. However, it is well-known that many factors influence their results. For low-cost Particulate Matter (PM) sensors, high relative humidity can have a significant impact on data quality. In order to eliminate or reduce the impact of high relative humidity on the results obtained from low-cost PM sensors, a low-cost dryer was developed and its effectiveness was investigated. For this purpose, a test chamber was designed, and low-cost PM sensors as well as professional reference devices were installed. A vaporizer regulated the humid conditions in the test chamber. The low-cost dryer heated the sample air with a manually adjustable intensity depending on the voltage. Different voltages were tested to find the optimum one with least energy consumption and maximum drying efficiency. The low-cost PM sensors with and without the low-cost dryer were compared. The experimental results verified that using the low-cost dryer reduced the influence of relative humidity on the low-cost PM sensor results.
城市地区的空气污染是一个巨大的问题,需要有效的空气质量控制来确保健康质量标准。可以通过增加环境空气质量监测的空间分布来定位热点,为此可以使用低成本传感器。然而,众所周知,许多因素会影响它们的结果。对于低成本的颗粒物 (PM) 传感器,高相对湿度会对数据质量产生重大影响。为了消除或减少高相对湿度对低成本 PM 传感器获得的结果的影响,开发了一种低成本干燥器并研究了其效果。为此,设计了一个测试室,并安装了低成本 PM 传感器和专业参考设备。蒸发器调节测试室中的湿度条件。低成本干燥器通过手动调节电压来加热样品空气。测试了不同的电压,以找到能耗最低、干燥效率最高的最佳电压。比较了带有和不带有低成本干燥器的低成本 PM 传感器。实验结果验证了使用低成本干燥器可以降低相对湿度对低成本 PM 传感器结果的影响。