农药
杀虫剂
农业
特大城市
环境科学
污染
危害
环境化学
环境毒理学
硫丹
污染
危害分析
环境保护
污染物
风险评估
地表水
水污染
环境监测
生物信息学
采样(信号处理)
毒理
环境污染
生态毒理学
生物测定
农药残留
生物
环境工程
环境规划
农业污染
生物累积
生物技术
作者
Lingzhi Cao,Jingsheng Wang,Yanbin Zhao,Shuping Zheng,Rui Pan,Ruiqi An,Xuhui Yue,Yue Wang,Li J,Liu Y,Yi-Xiang Wang,Peng Wang,Yangmei Mo,Ning Pan,Haochun Shi,Jiayin Dai,Kun Zhang
标识
DOI:10.1021/acs.est.6c02355
摘要
Peri-urban agriculture is expanding rapidly in megacities, yet its contribution to aquatic chemical pollution remains poorly characterized. Here, we present an integrated assessment of agrochemical contamination in peri-urban agricultural surface waters of Shanghai, combining nontargeted screening, in silico hazard prioritization, and in vivo toxicity testing. Across 193 sampling sites, exceptionally high chemical diversity and mixture complexity were observed, with 91 pesticides and 263 formulation adjuvants widely detected. Adjuvants occurred with detection frequencies (DFs) and response intensities comparable to those of pesticides, indicating they constitute a major yet underappreciated component of agrochemical pollution. Besides, correlation network analysis demonstrated extensive co-occurrence between pesticides and adjuvants, suggesting shared transport pathways and exposure dynamics. Hazard screening based on persistence, bioaccumulation, mobility, and toxicity (PBMT) further demonstrated that adjuvants constituted a substantial fraction of prioritized high-risk substances. Moreover, in vivo zebrafish embryo assays showed that representative pesticides and adjuvants, such as bentazone, imidacloprid, and triethyl phosphate, induced adverse developmental effects at environmentally relevant concentrations measured in surface waters, typically in the hundreds of ng/L range. Collectively, these findings identify peri-urban agriculture as a critical source of complex agrochemicals and highlight the need to explicitly incorporate the formulation adjuvants into environmental monitoring and risk assessment.
科研通智能强力驱动
Strongly Powered by AbleSci AI