Yin Linning, Wu Nannan, Qu Ruijuan, Zhu Feng, Ajarem Jamaan S, Allam Ahmed A, Wang Zunyao, Huo Zongli
State Key Laboratory of Pollution Control and Resources Reuse, School of the Environment, Nanjing University, Nanjing 210023, Jiangsu, PR China.
Jiangsu Provincial Center for Disease Control and Prevention, No. 172 Jiangsu Road, Nanjing 210009, PR China.
J Hazard Mater. 2023 Mar 5;445:130475. doi: 10.1016/j.jhazmat.2022.130475. Epub 2022 Nov 24.
The transformation process of contaminants on microplastics (MPs) exposed to sunlight has attracted increasing attention. However, the interactions between them are typically disregarded; therefore, this work investigated the photodegradation of 2,2',4,4'-tetrabromodiphenyl ether (BDE-47) on three MPs (polystyrene (PS), polypropylene (PP) and polyethylene (PE)) and the interactions between these two. The inhibition of aged PS on the elimination of BDE-47 was due to light shielding, while aged PP and PE increased the degradation rate. More hydroxyl radicals (HO•) was detected in the PS system, which resulted in the higher degradation rate of BDE-47 on PS. A total of 33 different products were identified and four reaction pathways were presented, and the reaction mechanisms mainly included debromination, hydroxylation, carbon-oxygen-bond breaking and interactive reactions. The Ecological Structure Activity Relationship (ECOSAR) and Toxicity Estimation Software Tool (TEST) programs were used to evaluate the toxicity of reaction products, and the results indicated that even though BDE-47 was the most toxic, the interaction products were still toxic or harmful to aquatic organisms. This study provides significant information on the photodegradation of contaminants on common microplastics and their interaction, which cannot be ignored.
暴露于阳光下的微塑料(MPs)上污染物的转化过程已引起越来越多的关注。然而,它们之间的相互作用通常被忽视;因此,本研究调查了2,2',4,4'-四溴二苯醚(BDE-47)在三种微塑料(聚苯乙烯(PS)、聚丙烯(PP)和聚乙烯(PE))上的光降解以及二者之间的相互作用。老化的PS对BDE-47去除的抑制作用是由于光屏蔽,而老化的PP和PE则提高了降解速率。在PS体系中检测到更多的羟基自由基(HO•),这导致BDE-47在PS上的降解速率更高。共鉴定出33种不同产物并提出了四条反应途径,反应机制主要包括脱溴、羟基化、碳氧键断裂和相互作用反应。利用生态结构活性关系(ECOSAR)和毒性估计软件工具(TEST)程序评估反应产物的毒性,结果表明,尽管BDE-47毒性最大,但相互作用产物对水生生物仍具有毒性或有害性。本研究提供了关于常见微塑料上污染物光降解及其相互作用的重要信息,不容忽视。