砷
棕地
环境科学
环境修复
地下水
环境工程
地下水砷污染
污染
污染
采矿工程
水文学(农业)
废物管理
地质学
岩土工程
化学
工程类
再开发
有机化学
土木工程
生物
生态学
作者
Tianhao He,Ye Li,Ye Huang,Erkai He,Yan Li,Liangyu Qu,F. Ding,Ruihe Jin,Mingzhe Han,Lina Yuan,Weizhen Xue,Ruijuan Qu,Wang Zheng,Yunfeng Xie,Xingmei Liu,Ling Zhao,Min Liu
标识
DOI:10.1016/j.jhazmat.2023.130892
摘要
Accurate quantification of arsenic migration and accumulation in brownfield site is critical for environmental management and soil remediation. However, the researches simulating arsenic in brownfield site in China are limited due to sparse data and complex migration behaviors. In this study, we simulated historic arsenic contamination using Hydrus-3D in an abandoned brownfield site in Hebei, China, from 1972 to 2019. Atmospheric discharge, wastewater leakage, solid waste discharge and tank leakage were calculated according to the factory processes for model simulation. Based on the results of Hydrus-3D, we assessed health risk of arsenic in this site. The results showed that total arsenic input to the soil surface from 4 pathways was 24.6 tons, the solid waste discharge was the highest contributor. The accumulation process mainly occurred in the unsaturated zone due to clay and silty clay absorbed arsenic and thus slow down the migration process. While in the saturation zone, abundant groundwater promoted migration of arsenic, resulting in widespread distribution of contaminated area. The model results represented good performance between simulated and measured values. Sensitivity analysis indicated that adsorption constant and water conductivity were the most influential parameters. Heath risk assessment showed that arsenic contamination continues to threaten resident health.
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