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韩国光阳湾水质管理的生态模型

Ecological modeling for water quality management of Kwangyang Bay, Korea.

作者信息

Lee Dae In, Park Chung Kil, Cho Hyeon Seo

机构信息

Division of Environmental System Engineering, Pukyong National University, Busan 608-737, South Korea.

出版信息

J Environ Manage. 2005 Mar;74(4):327-37. doi: 10.1016/j.jenvman.2004.10.004. Epub 2004 Dec 24.

Abstract

This study estimated the appropriate pollutant load reduction from point sources in Kwangyang Bay, Korea, using an eco-hydrodynamic model. The total chemical oxygen demand (COD), nitrogen (TN), and phosphorus (TP) loads from rivers and ditches that provide input to the bay were approximately 2.8x10(4), 2.5x10(4), and 5.9x10(2) kg day-1, respectively. Wastewater discharge from industrial complexes was the greatest contributor to pollutant loads in the inner part of the bay. COD values in the inner part of the bay were greater than 3.0 mg l-1, and exceeded Korean seawater quality grade III limits. A residual current was simulated, using a hydrodynamic model, to have a slightly complicated pattern in the inner part of the bay, ranging from 0.001 to 8 cm s-1. In the outer part of the bay, the simulated current flowed out to the South Sea with a southward flow at a maximum of 15 cm s-1. The results of the ecological model simulation of COD levels showed high concentrations, exceeding 4 mg l-1, in the southwest of the Myodo, an area of wastewater discharge, and lower levels, approaching less than 1 mg l-1, closer to the outer part of the bay. Engineering countermeasures to reduce the organic and inorganic material loads from point sources by more than 45% were required to keep the COD levels below 2 mg l-1.

摘要

本研究利用生态水动力模型估算了韩国光阳湾点源污染物负荷的适当削减量。流入该海湾的河流和沟渠中的总化学需氧量(COD)、氮(TN)和磷(TP)负荷分别约为2.8×10⁴、2.5×10⁴和5.9×10²千克/天。工业园区的废水排放是海湾内部污染物负荷的最大贡献者。海湾内部的COD值大于3.0毫克/升,超过了韩国海水水质三级标准限值。利用水动力模型模拟的余流在海湾内部呈现出略显复杂的形态,流速范围为0.001至8厘米/秒。在海湾外部,模拟水流以最大15厘米/秒的南向流速流向南海。COD水平的生态模型模拟结果显示,在废水排放区域面岛西南部,COD浓度较高,超过4毫克/升;而在靠近海湾外部的区域,COD浓度较低,接近1毫克/升以下。需要采取工程对策将点源的有机和无机物质负荷降低45%以上,以使COD水平保持在2毫克/升以下。

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