有机磷
河口
中国
污染
加重因素
环境科学
污染物
环境保护
环境化学
化学
地理
杀虫剂
地质学
海洋学
生态学
生物
有机化学
医学
考古
皮肤病科
作者
Jia-Yong Lao,Guangling Huang,Rongben Wu,Wenzhao Liang,Shaopeng Xu,Qiong Luo,Kai Zhang,Le Jing,Linjie Jin,Yuefei Ruan,Kmy Leung,Paul K.S. Lam
标识
DOI:10.1021/acs.est.4c01646
摘要
Emerging aryl organophosphate esters (aryl-OPEs) have been employed as substitutes for organohalogen flame retardants in recent years; however, their environmental occurrence and associated impacts in urban estuarine sediments have not been adequately investigated, impeding regulatory decision-making. Herein, field-based investigations and modeling based on surface sediment and sediment core analysis were employed to uncover the historical pollution and current environmental impacts of aryl-OPEs in the Pearl River Estuary, South China. Our results revealed a substantial increase in aryl-OPE emission, particularly emerging aryl-OPEs, through sediment transport to the estuary since the 2000s. The emerging aryl-OPEs comprised 83% of the total annual input in the past decade, with an average annual input of 155,000 g. Additionally, the emerging-to-traditional aryl-OPE concentration ratios increased with decreasing distance from the shore, peaking in the highly urbanized riverine outlets. These findings indicate that inventories of emerging aryl-OPEs are likely increasing in estuarine sediments and their emissions are surpassing those of traditional aryl-OPEs. Our risk-based priority screening approach indicates that some emerging aryl-OPEs, particularly bisphenol A bis(diphenyl phosphate), can pose a higher environmental risk than traditional aryl-OPEs in estuarine sediments. Overall, our study highlights the importance of recognizing the environmental impacts of emerging aryl-OPEs.
科研通智能强力驱动
Strongly Powered by AbleSci AI