Department of Environmental Science, Aarhus University, DK-4000 Roskilde, Denmark.
Danish Big Data Centre for Environment and Health (BERTHA), Aarhus University, DK-4000 Roskilde, Denmark.
Sensors (Basel). 2022 Sep 24;22(19):7238. doi: 10.3390/s22197238.
Accurate calibration of low-cost gas sensors is, at present, a time consuming and difficult process. Laboratory calibration and field calibration methods are currently used, but laboratory calibration is generally discounted due to poor transferability, and field methods requiring several weeks are standard. The Enhanced Ambient Sensing Environment (EASE) method described in this article, is a hybrid of the two, combining the advantages of a laboratory calibration with the increased accuracy of a field calibration. It involves calibrating sensors inside a duct, drawing in ambient air with similar properties to the site where the sensors will operate, but with the added feature of being able to artificially increases or decrease pollutant levels, thus condensing the calibration period required. Calibration of both metal-oxide (MOx) and electrochemical (EC) gas sensors for the measurement of NO and O (0-120 ppb) were conducted in EASE, laboratory and field environments, and validated in field environments. The EC sensors performed marginally better than MOx sensors for NO measurement and sensor performance was similar for O measurement, but the EC sensor nodes had less node inter-node variability and were more robust. For both gasses and sensor types the EASE calibration outperformed the laboratory calibration, and performed similarly to or better than the field calibration, whilst requiring a fraction of the time.
目前,对低成本气体传感器进行精确校准是一个既耗时又困难的过程。目前使用的是实验室校准和现场校准方法,但由于较差的可转移性,实验室校准通常不被采用,而需要数周时间的现场方法则是标准方法。本文中描述的增强型环境感应环境(EASE)方法是两者的混合体,结合了实验室校准的优势和现场校准的更高精度。它涉及在管道内校准传感器,吸入与传感器将要运行的地点具有相似特性的环境空气,但具有能够人为增加或减少污染物水平的额外功能,从而缩短所需的校准时间。在 EASE、实验室和现场环境中对用于测量 NO 和 O(0-120 ppb)的金属氧化物(MOx)和电化学(EC)气体传感器进行了校准,并在现场环境中进行了验证。EC 传感器在 NO 测量方面的性能略优于 MOx 传感器,而对于 O 测量,传感器性能相似,但 EC 传感器节点的节点间变异性更小,更稳健。对于两种气体和传感器类型,EASE 校准都优于实验室校准,并且与现场校准相似或更好,而所需时间仅为其一小部分。