Central Institute for Labour Protection-National Research Institute (CIOP-PIB), Czerniakowska 16, 00-701 Warsaw, Poland.
Sensors (Basel). 2022 May 10;22(10):3639. doi: 10.3390/s22103639.
In 2019, the European Committee for Standardization (CEN) initiated work on the preparation of a strategy for air quality monitoring at workplaces. The aim was to determine the concentrations of nano-objects and their aggregates and agglomerates (NOAA) by means of direct measurements using low-cost sensors. There is a growing need for low-cost devices that can continuously monitor the concentrations of nanoparticles, and that can be installed where nanoparticles are used or created spontaneously. In search of such a device, in this study, a smoke detector with an ionization sensor was tested. The aim of the research was to investigate the response of the analog output signal with respect to changes in environmental parameters such as the relative humidity of air. The research was conducted in controlled laboratory conditions, and the results confirmed that an ionization detector could be used to measure the concentrations of nanoaerosols. The modified smoke detector detected soot particles smaller than 100 nm. The linear regression line was calculated for the relative humidity dataset and had a slope coefficient of -1.214 × 10; thus, the value of the output signal was constant during the experiment. The dependence on air temperature was approximated by a second-degree curve, with a slope coefficient of -8.113 × 10. Air humidity affected aerosol concentrations, which may be related to surface modification of nanoparticles.
2019 年,欧洲标准化委员会(CEN)启动了制定工作场所空气质量监测战略的工作。目的是通过使用低成本传感器进行直接测量来确定纳米物体及其团聚体(NOAA)的浓度。越来越需要能够连续监测纳米颗粒浓度的低成本设备,并且可以在纳米颗粒使用或自发产生的地方安装。在寻找这样的设备时,本研究测试了带有电离传感器的烟雾探测器。研究的目的是研究模拟输出信号对环境参数(例如空气的相对湿度)变化的响应。该研究在受控的实验室条件下进行,结果证实电离探测器可用于测量纳米气溶胶的浓度。改进后的烟雾探测器检测到了小于 100nm 的烟尘颗粒。针对相对湿度数据集计算了线性回归线,斜率系数为-1.214×10;因此,在实验过程中输出信号的值保持不变。对空气温度的依赖关系用二次曲线近似,斜率系数为-8.113×10。空气湿度会影响气溶胶浓度,这可能与纳米颗粒的表面改性有关。