Determining priority control toxic metal for different protection targets based on source-oriented ecological and human health risk assessment around gold smelting area

冶炼 环境科学 污染物 健康风险评估 污染 风险评估 人类健康 环境卫生 人口 环境工程 环境保护 风险分析(工程) 生态学 业务 医学 化学 生物 计算机安全 有机化学 计算机科学
作者
Yan Zhou,Da Ding,Yuting Zhao,Qun Li,Dengdeng Jiang,Zhengyong Lv,Jing Wei,Shengtian Zhang,Shaopo Deng
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:468: 133782-133782
标识
DOI:10.1016/j.jhazmat.2024.133782
摘要

Determining the priority control source and pollutant is the key for the eco-health protection and risk management around gold smelting area. To this end, a case study was conducted to explore the pollution characteristics, source apportionment, ecological risk and human health risk of toxic metals (TMs) in agricultural soils surrounding a gold smelting enterprise. Three effective receptor models, including positive matrix factorization model (PMF), ecological risk assessment (ERA), and probabilistic risk assessment (PRA) have been combined to apportion eco-human risks for different targets. More than 95.0% of samples had a Nemerow pollution index (NPI) > 2 (NPImean=4.27), indicating moderately or highly soil TMs contamination. Four pollution sources including gold smelting activity, mining source, agricultural activity and atmosphere deposition were identified as the major sources, with the contribution rate of 17.52%, 44.16%, 13.91%, and 24.41%, respectively. For ecological risk, atmosphere deposition accounting for 30.8% was the greatest contributor, which was mainly loaded on Hg of 51.35%. The probabilistic health risk assessment revealed that Carcinogenic risks and Non-carcinogenic risks of all population were unacceptable, and children suffered from a greater health risk than adults. Gold smelting activity (69.2%) and mining source (42.0%) were the largest contributors to Carcinogenic risks and Non-carcinogenic risks, respectively, corresponding to As and Cr as the target pollutants. The priority pollution sources and target pollutants were different for the eco-health protection. This work put forward a new perspective for soil risk control and management, which is very beneficial for appropriate soil remediation under limited resources and costs.
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