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Evolution analysis and environmental management of intruded aquifers of the Dagu River Basin of China

机译:中国大沽河流域入侵含水层演变分析与环境管理

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摘要

The seawater intrusion in the Dagu River Basin, China, has attracted intensive attention from the government and scholars. Increasing data have become available with the development of data acquisition technology. This situation brings unprecedented opportunities and challenges to the hydrochemical evolution analysis and improvement of seawater intrusion. The hydrochemical evolution process of groundwater is studied on the basis of our collected data in the Dagu River Basin by using mathematical statistics, end-element mixing, Durov, and Gibbs. The negative influencing factors of the groundwater environment are determined. Results show that the groundwater on the north side of the cutoff wall is mainly affected by residual saltwater, sulfuric acid leakage, and NO-3 pollution. The groundwater on the south side of the cutoff wall is seriously affected by seawater invasion, followed by NO- 3 pollution. Meanwhile, the groundwater on the west bank of the Dagu River Basin is mainly affected by NO- 3 pollution. The groundwater on the north side of the cutoff wall must be discharged on a large scale for its improvement Meanwhile, unpolluted water is recharged to renew the groundwater resources. Groundwater exploitation should be reduced, and the exploitation area should be dispersed to mitigate seawater intrusion and increase the recharge of the groundwater resources. NO- 3 pollution mainly comes from the sowing of chemical fertilizers and pesticides and domestic waste. Therefore, we should reduce the use of pesticides and fertilizers to control the generation, storage, and treatment of domestic pollutants strictly.
机译:中国大沽河流域的海水入侵引起了政府和学者的高度关注。随着数据采集技术的发展,越来越多的数据变得可用。这种情况给水化学演化分析和改善海水入侵带来了前所未有的机遇和挑战。基于我们在大沽河流域收集的数据,利用数理统计,末端元素混合,Durov和Gibbs,研究了地下水的水化学演化过程。确定了地下水环境的负面影响因素。结果表明,防渗墙北侧的地下水主要受残留盐水,硫酸泄漏和NO-3污染的影响。防渗墙南侧的地下水受到海水入侵的严重影响,其次是NO-3污染。同时,大沽河流域西岸的地下水主要受到NO-3污染的影响。防渗墙北侧的地下水必须大范围排放以改善其质量。同时,对未污染的水进行补给以更新地下水资源。应减少地下水开采,并分散开采面积,以减轻海水的入侵并增加地下水资源的补给。 NO-3污染主要来自化肥,农药和生活垃圾的播种。因此,应减少农药和化肥的使用,以严格控制生活污染物的产生,储存和处理。

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  • 来源
    《The Science of the Total Environment》 |2020年第1期|137250.1-137250.14|共14页
  • 作者单位

    Key Laboratory ofSurficial Geochemistry Ministry of Education School of Earth Sciences and Engineering State Key Laboratory of Pollution Control and Resource Reuse Nanjing University Nanjing 210023 China Key Laboratory of Marine Sedimentology and Environmental Geology First Institute of Oceanography Ministry of Natural Resources Qingdao 266061 China;

    School of Business Central South University Changsha 410083 China;

    Key Laboratory of Marine Sedimentology and Environmental Geology First Institute of Oceanography Ministry of Natural Resources Qingdao 266061 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Groundwater environment; Seawater intrusion; Evolution; Anthropogenic influence;

    机译:地下水环境;海水入侵;演化;人为影响;

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