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Effect of Relative Humidity and Air Temperature on the Results Obtained from Low-Cost Gas Sensors for Ambient Air Quality Measurements

机译:相对湿度和空气温度对环境空气质量测量的低成本气体传感器的影响

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摘要

Using low-cost gas sensors for air quality monitoring promises cost effective and convenient measurement systems. Nevertheless, the results obtained have a questionable quality due to different factors that can affect sensor performance. The most discussed ones are relative humidity and air temperature. This investigation aimed to assess the behavior of B4-series low-cost gas sensors from Alphasense for measuring CO, NO, NO2, and O3 for different levels of relative humidity and temperature. These low-cost gas sensors were tested for six relative humidity levels from 10% to 85% with increasing steps of 15% and four temperature levels of 10 °C, 25 °C, 35 °C, and 45 °C against reference instruments in the laboratory. The effect of these parameters on low-cost gas sensors was quantified in laboratory from which a correction algorithm was calculated, which was then applied to the field data. The applied algorithm improved the data quality of the low-cost gas sensors in most of the cases. Additionally, a low-cost dryer was assessed to reduce the influence of these factors on the low-cost gas sensors, which also proved to be suitable to enhance the data quality.
机译:利用低成本气体传感器进行空气质量监测承诺具有成本效益和方便的测量系统。然而,由于不同的因素,所获得的结果具有可疑的质量,这些因素可能会影响传感器性能。最讨论的是相对湿度和空气温度。这项调查旨在评估B4系列低成本气体传感器的行为,用于测量CO,NO,NO2和O3的αense,以进行不同湿度和温度的不同水平。这些低成本的气体传感器从10%至85%测试了六个相对湿度水平,同时增加了15%和四个温度水平10°C,25℃,35℃和45°C的步长,参考仪器实验室。在实验室中量化了这些参数对低成本气体传感器的影响,从该实验室计算了计算校正算法,然后将其应用于现场数据。应用算法在大多数情况下提高了低成本气体传感器的数据质量。另外,评估了低成本的干燥器以减少这些因素对低成本气体传感器的影响,这也被证明适合提高数据质量。

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