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Nutrient loads in the river mouth of the Río Verde basin in Jalisco, Mexico: how to prevent eutrophication in the future reservoir?

机译:墨西哥墨西哥哈利斯科河口河口河口的营养负荷:如何防止未来水库富营养化?

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摘要

Since nutrients are emitted and mobilized in river basins, causing eutrophication of water bodies, it is important to reduce such emissions and subsequent nutrient loads. Due to processes of attenuation, nutrient loads are reduced during their mobilization in river basins. At the mouth of the Río Verde basin in western Mexico, the El Purgatorio dam is being constructed to supply water to the metropolitan area of the second most populated city in the country, Guadalajara. To analyze situations that allow protecting this future dam from eutrophication, nutrient loads in the mouth of the river basin were determined and their reduction scenarios evaluated by using the NEWS2 (Nutrient Export from Watersheds) model. For this, a nutrient emissions inventory was established and used to model nutrient loads, and modeling results were compared to an analysis of water quality data from two different monitoring sites located on the river. The results suggest that 96% of nitrogen and 99% of phosphorus emissions are attenuated in the watershed. Nutrient loads reaching the mouth of the river basin come mainly from wastewater discharges, followed by livestock activities and different land uses, and loads are higher as emissions are located closer to the mouth of the river basin. To achieve and maintain mesotrophic state of water in the future dam, different nutrient emission reduction scenarios were evaluated. According to these results, the reduction of 90% of the phosphorus loads in wastewater emissions or 75% of the phosphorus loads in wastewater emissions and at least 50% in emissions from livestock activities in the river basin are required.
机译:由于养分在河流盆地发射和动员,因此导致水体的富营养化,因此减少这种排放和随后的营养负荷是重要的。由于衰减过程,在河流流域动员期间减少了营养负荷。在墨西哥西部的RíoVerde盆地口中,El Purgatorio大坝正在建造中,供水到该国第二个最具人口稠密的城市的大都市区,瓜达拉哈拉。为了分析允许保护这种未来大坝免受富营养化的情况,确定了河流盆口中的营养载荷,并通过使用新闻2(来自流域营养出口)进行评估的减少方案。为此,建立了营养排放库存并用于模拟营养载荷,并将建模结果与位于河流上的两个不同监测网站的水质数据进行比较。结果表明,96%的氮和99%的磷排放在流域中衰减。到达河流盆地的营养负荷主要来自废水排放,随后是畜牧业和不同的土地用途,随着排放靠近河流盆地的口腔而较高。为了在未来的大坝中实现和维持介癖的水状态,评估了不同的营养减排情景。根据这些结果,需要减少水脂排放中的90%的磷载量或河流盆地畜禽活动中的磷排放量的75%的磷荷载和至少50%。

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