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Sustained Performance of Low-Cost Air Quality Sensors in Long-Term Deployments
Anna R Winter1, Yishu Zhu2, Naomi G Asimow2
1Department of Chemistry, University of California Berkeley, Berkeley, California 94720, United States.
Abstract:
Over the past decade, technological advancements and the growing demand for higher spatial resolution in air quality measurements have driven the widespread deployment of low-cost electrochemical gas sensors. These sensors are inexpensive, compact, easy to deploy, and have potential to detect variability in ambient air. While short-term sensor performance and calibration assessments have been well-documented, research on sensor reliability in long-term deployments remains limited. The Berkeley Environmental Air Quality and CO2 Network (BEACO2N) is a dense, long-term sensor network measuring O3, NO, NO2, and CO using electrochemical gas sensors, in addition to CO2 and PM2.5 with other sensors. Here, we evaluate the performance of the Alphasense NO2-B43F, Ox-B431, NO-B4, and CO-B4 sensors over the course of 3 years in the San Francisco Bay Area. We find consistent performance in the calibrated data over the 3 years. These findings highlight the reliability of long-term sensor use with appropriate calibration techniques and suggest the sensors remain suitable for extended deployments without requiring replacement.

