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Feasibility of using Pleurozium schreberi as a biomonitor to study antiozonant dispersion: A case study in Southern
Shaghayegh Ramezany1, Guillaume Martinez1, Adrien Mugnai1
1Département de Chimie, Faculté des Sciences, Université de Sherbrooke, Sherbrooke, Québec, Canada.
Abstract:
p-Phenylenediamine antioxidants (PPDs), widely used as additives in tires and rubber, are released into the environment through tire and road wear particles. These compounds undergo oxidative processes, forming quinone derivatives that pose significant environmental and health risks, particularly to aquatic organisms (EPA, 2024). While runoff has been identified as the primary transport mechanism, the atmospheric dispersion of PPDs has received less attention. Bryophytes have been widely used as biomonitors of airborne contaminants and atmospheric deposition. Using a biomonitoring approach, this study investigated the atmospheric deposition of PPD antiozonants, including 6PPD, 6PPDQ, and DPPD, across Southern Quebec (Canada), a region characterized by the highest population density and pollution levels in the province. Samples of Pleurozium schreberi, a common species used for biomonitoring of atmospheric deposition, were collected on three site types with varying degrees of traffic exposure: roadsides, parks/playgrounds, and non-urban areas. Our findings demonstrated atmospheric dispersion of PPDs throughout Southern Quebec with a decreasing trend in total concentrations of PPDs with increasing distance from traffic. 6PPDQ was the most frequently detected compound, ranging from

