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Simulation of Water Environmental Capacity and Pollution Load Reduction Using QUAL2K for Water Environmental Management

机译:使用QUAL2K进行水环境管理模拟水环境容量和减少污染负荷

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摘要

In recent years, water quality degradation associated with rapid socio-economic development in the Taihu Lake Basin, China, has attracted increasing attention from both the public and the Chinese government. The primary sources of pollution in Taihu Lake are its inflow rivers and their tributaries. Effective water environmental management strategies need to be implemented in these rivers to improve the water quality of Taihu Lake, and to ensure sustainable development in the region. The aim of this study was to provide a basis for water environmental management decision-making. In this study, the QUAL2K model for river and stream water quality was applied to predict the water quality and environmental capacity of the Hongqi River, which is a polluted tributary in the Taihu Lake Basin. The model parameters were calibrated by trial and error until the simulated results agreed well with the observed data. The calibrated QUAL2K model was used to calculate the water environmental capacity of the Hongqi River, and the water environmental capacities of CODCr NH3-N, TN, and TP were 17.51 t, 1.52 t, 2.74 t and 0.37 t, respectively. The results showed that the NH3-N, TN, and TP pollution loads of the studied river need to be reduced by 50.96%, 44.11%, and 22.92%, respectively to satisfy the water quality objectives. Thus, additional water pollution control measures are needed to control and reduce the pollution loads in the Hongqi River watershed. The method applied in this study should provide a basis for water environmental management decision-making.
机译:近年来,随着中国太湖流域社会经济的快速发展,水质的下降引起了公众和中国政府越来越多的关注。太湖的主要污染源是流入的河流及其支流。这些河流必须执行有效的水环境管理策略,以改善太湖的水质,并确保该地区的可持续发展。这项研究的目的是为水环境管理决策提供依据。在这项研究中,利用河流和溪流水质的QUAL2K模型来预测红旗河的水质和环境容量,红旗河是太湖流域的污染支流。通过反复试验对模型参数进行校准,直到模拟结果与观测数据完全吻合。使用校准的QUAL2K模型计算红旗河的水环境容量,CODCr NH3-N,TN和TP的水环境容量分别为17.51 t,1.52 t,2.74 t和0.37 t。结果表明,为满足水质目标,所研究河流的NH3-N,TN和TP污染负荷分别需要减少50.96%,44.11%和22.92%。因此,需要采取额外的水污染控制措施来控制和减少红旗河流域的污染负荷。本研究方法应为水环境管理决策提供依据。

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