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Comparison of Low-Cost Particulate Matter Sensors for Indoor Air Monitoring during COVID-19 Lockdown

机译:低成本颗粒物传感器对Covid-19锁模期间室内空气监测的比较

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摘要

This study shows the results of air monitoring in high- and low-occupancy rooms using two combinations of sensors, AeroTrak8220(TSI)/OPC-N3 (AlphaSense, Great Notley, UK) and OPC-N3/PMS5003 (Plantower, Beijing, China), respectively. The tests were conducted in a flat in Warsaw during the restrictions imposed due to the COVID-19 lockdown. The results showed that OPC-N3 underestimates the PN (particle number concentration) by about 2–3 times compared to the AeroTrak8220. Subsequently, the OPC-N3 was compared with another low-cost sensor, the PMS5003. Both devices showed similar efficiency in PN estimation, whereas PM (particulate matter) concentration estimation differed significantly. Moreover, the relationship among the PM1–PM2.5–PM10 readings obtained with the PMS5003 appeared improbably linear regarding the natural indoor conditions. The correlation of PM concentrations obtained with the PMS5003 suggests an oversimplified calculation method of PM. The studies also demonstrated that PM1, PM2.5, and PM10 concentrations in the high- to low-occupancy rooms were about 3, 2, and 1.5 times, respectively. On the other hand, the use of an air purifier considerably reduced the PM concentrations to similar levels in both rooms. All the sensors showed that frying and toast-making were the major sources of particulate matter, about 10 times higher compared to average levels. Considerably lower particle levels were measured in the low-occupancy room.
机译:本研究表明,使用传感器的两个组合,Aerotrak8220(TSI)/ OPC-N3(AllowaSense,Great Notley,UK)和OPC-N3 / PMS5003(北京,北京的Plantower,中国)的高占用室中的空气监测空气监测结果), 分别。在由于Covid-19锁定由于Covid-19锁定而施加的限制期间,测试在华沙的平面中进行。结果表明,与AeroTrak8220相比,OPC-N3低估了PN(颗粒数浓度)约2-3次。随后,将OPC-N3与另一低成本传感器进行比较,PMS5003。两种器件在PN估计中显示出相似的效率,而PM(颗粒物质)浓度估计显着不同。此外,通过PMS5003获得的PM1-PM2.5-PM10读数之间的关系出现了关于天然室内条件的不可能线性。用PMS5003获得的PM浓度的相关性提出了PM的超薄计算方法。研究还证明,高于低占用室中的PM1,PM2.5和PM10浓度分别为约3,2和1.5倍。另一方面,使用空气净化器的使用显着降低了PM浓度在两个房间的相似水平。所有传感器都表明,煎炸和吐司制作是颗粒物质的主要来源,与平均水平相比较高约10倍。在低占用室中测量了相当低的颗粒水平。

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