Effects of Corsi-Rosenthal boxes on indoor air contaminants: non-targeted analysis using high resolution mass spectrometry

Background In response to COVID-19, attention was drawn to indoor air quality and interventions to mitigate airborne COVID-19 transmission. Of developed interventions, Corsi-Rosenthal (CR) boxes, a do-it-yourself indoor air filter, may have potential co-benefits of reducing indoor air contaminant le...

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Veröffentlicht in:Journal of exposure science & environmental epidemiology 2023-07, Vol.33 (4), p.537-547
Hauptverfasser: Manz, Katherine E., Dodson, Robin E., Liu, Yun, Scheidl, Lukas, Burks, Shaunessey, Dunn, Fiona, Gairola, Richa, Lee, Nina Franzen, Walker, Erica D., Pennell, Kurt D., Braun, Joseph M.
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Sprache:eng
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Zusammenfassung:Background In response to COVID-19, attention was drawn to indoor air quality and interventions to mitigate airborne COVID-19 transmission. Of developed interventions, Corsi-Rosenthal (CR) boxes, a do-it-yourself indoor air filter, may have potential co-benefits of reducing indoor air contaminant levels. Objective We employed non-targeted and suspect screening analysis (NTA and SSA) to detect and identify volatile and semi-volatile organic contaminants (VOCs and SVOCs) that decreased in indoor air following installation of CR boxes. Methods Using a natural experiment, we sampled indoor air before and during installation of CR boxes in 17 rooms inside an occupied office building. We measured VOCs and SVOCs using gas chromatography (GC) high resolution mass spectrometry (HRMS) with electron ionization (EI) and liquid chromatography (LC) HRMS in negative and positive electrospray ionization (ESI). We examined area count changes during vs. before operation of the CR boxes using linear mixed models. Results Transformed (log2) area counts of 71 features significantly decreased by 50-100% after CR boxes were installed (False Discovery Rate (FDR) p-value 
ISSN:1559-0631
1559-064X
1559-064X
DOI:10.1038/s41370-023-00577-3