DOI: 10.1021/acs.estlett.6c00796 ISSN: 2328-8930

Solid Waste Burning: An Overlooked Atmospheric Source of p -Phenylenediamine Antioxidants and Their Quinones

Ziying Chen, Di Wu, Yanting Wang, Jia Yin, Xiu Chen, Mengyang Li, Huantao Wang, Shi Gu, Shunji Li, Hongmei Xu, Jianmin Chen, Qing Li

Abstract

N,N′-Disubstituted p-phenylenediamines (PPDs) and their oxidized derivatives (PPD-Qs) are widely used as rubber antioxidants, but their atmospheric sources remain incompletely characterized. Here we systematically investigate solid waste burning as a previously overlooked source of atmospheric PPDs and PPD-Qs. Field measurements of uncontrolled open burning and controlled incineration, combined with suspect screening and targeted analysis, revealed distinct emission profiles. Suspect screening detected and annotated 47 PPD-related features (20 confirmed, five tentatively identified, and 22 provisionally annotated), with more features detected in open burning PM2.5 (n = 43) than in incineration PM2.5 (n = 27). Quantitative analysis showed that open burning predominantly emitted parent PPDs at higher concentrations (median: 11.54 μg/g PM2.5), whereas incineration was characterized by a higher relative abundance of PPD-Qs (median: 2.50 μg/g PM2.5). In a screening-level esimate for China, open burning accounted for more than 99.7% of the estimated emissions of the 10 targeted ∑(PPDs + PPD-Qs) from solid waste burning in China. These findings suggest that solid waste burning is an overlooked source of atmospheric PPDs and PPD-Qs, indicating the need to incorporate waste disposal into emission inventories and targeted emission control strategies.