尾矿
渗滤液
地下水补给
环境科学
地下水
污染
地下水污染
环境工程
地质学
采矿工程
含水层
废物管理
岩土工程
生态学
工程类
冶金
材料科学
生物
作者
Bowen Shi,Xixi Li,Weiwu Hu,Beidou Xi,Shengrong Liu,Di Liu,Congchao Xu,Zihao Jia,Rui Li
标识
DOI:10.1016/j.jenvman.2023.117341
摘要
Identifying the leakage channel and the influencing range is essential for controlling the environmental risks of leachate from the tailings pond. The investigation of leachate pollution in tailings pond has the defect of focusing only on the scope of tailings pond in recent studies. This study innovatively built a comprehensive investigation and accurate verification system for leachate leakage of tailings pond integrated with the aeromagnetic survey, ground penetrating radar, hydrochemistry and isotope coupling methods. Geophysical exploration found that among the four fault zones, and the F1 was the channel for leachate to recharge the groundwater 2.53 km away from the tailings pond. The fissures inside the tailings pond were connected with the natural fissures outside, forming a leachate migration channel. The hydrochemistry and isotope characteristics showed that the groundwater far away from the tailings pond were polluted by arsenic containing leachate, which verified the geophysical exploration results. The significant correlation between arsenic and SO2-4 concentration indicated that arsenic in leachate originated from the oxidation release of sulfide minerals (i.e., arsenopyrite). This study sheds light on the comprehensive investigation of leachate leakage in the tailings pond. This development method also provides guidance for environmental risk identification of other contaminated sites.
科研通智能强力驱动
Strongly Powered by AbleSci AI