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Management of water quality targets based on river-lake water quality response relationships for lake basins - A case study of Dianchi Lake

机译:基于河水湖水质响应关系的水质目标管理 - 以滇池为例

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摘要

In a lake basin, there is a mismatch between river and lake water quality targets and a method for setting specific water quality targets for these rivers is urgently needed. Using Dianchi Lake as an example, we proposed a lake basin water quality management system based on the river-lake water quality response relationship, coupled with a Soil and Water Assessment Tool (SWAT) basin hydrological model and Environmental Fluid Dynamics Code (EFDC) lake water quality hydrodynamic model. River water quality control requirements based on the river-lake water quality response were proposed, under the premise that the Dianchi Lake water quality reaches the required standard. Then, water quality control targets for rivers were determined, and corrected for influencing factors, such as current river water quality and composition of flow. Our systematic approach efficiently identified key lake basin pollution sources, and accurately located key points for water quality improvement and pollution control. Combined with a correction for clean water source and current water quality of each river, the proposed water quality targets were practical and operable. Meanwhile, the EFDC model was used to verify the entire process to ensure that river water quality targets could be set to achieve lake water quality targets. To ensure that Dianchi Lake water quality can reach Class Ⅳ standard, the Chemical oxygen demand (COD) concentration would need to be maintained under 30 mg/L,Waihai total nitrogen (TN) below 7 mg/L, total phosphorus (TP) below 0.2 mg/L, and ammonia nitrogen (NH_3-N) below 2 mg/L.
机译:在湖泊盆地中,河流和湖泊水质目标之间存在错配,迫切需要一种为这些河流设定特定的水质目标的方法。使用滇池作为一个例子,我们提出了一种基于河湖水质响应关系的湖泊水质管理体系,再加上土壤和水评估工具(SWAT)流域水文模型和环境流体动力学代码(EFDC)湖泊水质流体动力学模型。基于河水水质响应的河水质量控制要求提出,在滇池水质达到所需标准的前提下。然后,确定河流的水质控制目标,并纠正了影响因素,如当前河水水质和流量的组成。我们的系统方法有效地识别了关键的湖泊池污染源,准确地定位了水质改善和污染控制的关键点。结合对每条河流的清洁水源和当前水质的校正,所提出的水质目标是实用可操作的。同时,EFDC模型用于验证整个过程,以确保可以将河水质量目标设定为实现湖水质量目标。为确保滇池水质可以达到类标准,所以需要维持在30mg / L,Waihai总氮(TN)低于7mg / L,总磷(TP)下保持的化学需氧量(COD)浓度。 0.2mg / L,和氨氮(NH_3-N)低于2 mg / L.

著录项

  • 来源
    《Environmental research》 |2020年第7期|109479.1-109479.16|共16页
  • 作者单位

    Kunming Institute of Eco-Environmental Sciences Yunnan Kunming China Beijing Normal University Beijing China;

    Kunming Institute of Eco-Environmental Sciences Yunnan Kunming China;

    Kunming Institute of Eco-Environmental Sciences Yunnan Kunming China;

    Beijing Normal University Beijing China Chinese Research Academy of Environmental Science Beijing China;

    Kunming Institute of Eco-Environmental Sciences Yunnan Kunming China;

    Kunming Institute of Eco-Environmental Sciences Yunnan Kunming China;

    Kunming Institute of Eco-Environmental Sciences Yunnan Kunming China;

    Kunming Institute of Eco-Environmental Sciences Yunnan Kunming China;

    Kunming Institute of Eco-Environmental Sciences Yunnan Kunming China;

    Kunming Institute of Eco-Environmental Sciences Yunnan Kunming China;

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

    SWAT; EFDC; Management of water quality target; Precision pollution treatment; Dianchi Lake;

    机译:扑打;EFDC;水质目标管理;精密污染治疗;黛安湖;
  • 入库时间 2022-08-18 21:51:06

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