Ecological Risk Assessment and Spatial Distribution of Heavy Metal in an Abandoned Mining Area, a Case Study of Liaoyang Pyrite Mining Area in China: Implications for the Environmental Remediation of Mine Sites

环境修复 环境科学 采矿工程 中国 黄铁矿 重金属 空间分布 环境保护 生态学 环境工程 地质学 地理 污染 环境化学 地球化学 考古 化学 生物 遥感
作者
Daiwen Zhu,Quan Li,Binzhou Yan,Zhenshi Zhang,Yujin Li
出处
期刊:Polish Journal of Environmental Studies [HARD Publishing Company]
标识
DOI:10.15244/pjoes/173110
摘要

An important hidden source of soil heavy metal pollution was the discharge of wastewater and waste rock during mining production activities.Numerous processes could result in the buildup of heavy metals in soil, and exposure to these metals could irreversibly harm a person's health.The source, distribution and quantity of historical waste residue in a pyrite mining area were described, and the nature of the waste residue was determined based on the results of toxic leaching identification in this study.The study showed that the pH value of the leaching solution of the waste residues was less than 6.Therefore, these waste residues was the second category of general industrial solid waste.The soil around the waste residues was basically acidic.Also, the content of arsenic, cadmium and copper in farmland soil around the waste residues exceeded the screening value in the Soil Environmental Quality Standard Risk Control of Soil Pollution in Farmland (GB15618-2018).Therefore, the arsenic, cadmium and copper in the waste residue could migrate with rainwater and cause some pollution to the neighboring farmland soil.The surface water was acidic and the arsenic concentration in the surface water exceeded the standard limit.Therefore, surface water was affected by acidic wastewater.However, the impact of project wastewater on groundwater was not significant.Through the analysis of the pollution status, comprehensive treatment countermeasures and secondary pollution prevention measures for the waste residue were proposed, as well as the issues
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