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An evaluation of mass absorption cross-section for optical carbon analysis on Teflon filter media

Paige Presler-Jur, Prakash Doraiswamy, Okisha Hammond, Joann Rice

Year
2017
Citations
30
Access
Open access

Abstract

mass, while the presence of light-scattering species such as crustal elements impacted the correlation affecting the MAC estimate. Overall, the method is demonstrated to be a quick, cost-effective approach to estimate BC from archived and newly sampled Teflon® filters by combining both gravimetric and BC measurements. IMPLICATIONS: Robotic optical analysis is a valid, cost-effective means to obtain a vast amount of BC data from archived and current routine filters. A tailored mass absorption cross-section by region and season is necessary for a more representative estimate of BC. Initial light transmission measurements play an important role due to the variability in blank filter transmission. Combining gravimetric mass and BC analysis on a single Teflon® filter reduces costs for monitoring agencies and maximizes data collection.

Keywords

AttenuationFilter (signal processing)Gravimetric analysisAbsorption (acoustics)Materials scienceAnalytical Chemistry (journal)AerosolEnvironmental scienceMineralogyChemistry

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