Abstract
Regulation of black carbon (BC) emissions is necessary due to their negative impact to climate and human health. We present a low-cost optoacoustic sensor for Black Carbon (BC) emissions, which can provide continuous measurements that are suitable for long-term BC monitoring in highly contaminative environments with low need for frequent maintenance. Insensitivity to contamination is based on a sensor design that integrates protective flows of clean air around the sample measured, which minimizes BC deposition on the detector and optical windows of the sensor. A quantitative analysis shows that the negative effect of BC contamination on sensor performance is reduced by a factor of greater than 300 000 in comparison to an unprotected control sensor. We discuss how the reduced maintenance requirements make the design presented a promising candidate for continuous and long-term BC monitoring of high emitters, enabling disseminated monitoring necessary for regulatory and mitigation measures of BC emissions in the future.
Cite
CITATION STYLE
Haedrich, L., Kousias, N., Raptis, I., Stahl, U., Ntziachristos, L., & Ntziachristos, V. (2026). A low-maintenance optoacoustic sensor for black carbon monitoring. Atmospheric Measurement Techniques, 19(9), 3111–3122. https://doi.org/10.5194/amt-19-3111-2026
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.