UV-induced photodegradation of emerging para-phenylenediamine quinones in aqueous environment: Kinetics, products identification and toxicity assessments

化学 环境化学 生态毒性 水溶液 光降解 流出物 污染物 羟基化 毒性 废水 光催化 有机化学 环境科学 环境工程 催化作用
作者
Wei Wang,Guodong Cao,Jing Zhang,Han Qiao,Huankai Li,Biwei Yang,Yanyan Chen,Lin Zhu,Yuecheng Sang,Lei Du,Zongwei Cai
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:465: 133427-133427 被引量:54
标识
DOI:10.1016/j.jhazmat.2024.133427
摘要

Substituted para -phenylenediamine quinones (PPD-quinones) are a class of emerging contaminants frequently detected in the aqueous environment. One of them, N -(1,3-dimethylbutyl)- N′ -phenyl- p -phenylenediamine quinone (6PPD-Q), was found to cause acute toxicities to aquatic species at extremely low environmental levels. The ubiquitousness and ecotoxicity of such pollutants underscore the importance of their transformation and elimination. In this work, we demonstrated effective removals of five PPD-quinones in aqueous environments under UV irradiation , with up to 94% of 6PPD-Q eliminated after a 40-min treatment. By applying high-resolution mass spectrometry (HRMS) non-targeted screening in combination with isotope labeling strategies, a total of 22 transformation products (TPs) were identified. Coupling with the time-based dynamic patterns, potential transformation mechanisms were identified as an •OH-induced photocatalysis reaction involving bond cleavage , hydroxylation , and oxidation. Computational toxicity assessment predicted lower aquatic toxicity of the TPs than their parent PPD-quinones. Our results in parallel evidenced an obvious reduction of PPD-quinones accompanied by the presence of their TPs in the effluent after UV disinfection in real municipal wastewater . This work builds a comprehensive understanding of the fate, transformation products, and related toxicological characteristics of emerging PPD-quinone contaminants in the aqueous environment. • UV-induced degradation kinetics of para-phenylenediamines quinones were studied. • 94.2% of 6PPD-Q were eliminated under a 40-minute UV irradiation treatment. • 22 transformation products (TPs) were firstly identified with proposed structures. • Mechanisms are •OH-induced photocatalysis involving dealkylation and hydroxylation. • New identified TPs were detectable in real wastewater treatment plant effluents.
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