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首页> 外文期刊>Journal of Hydrology >Hydrological and water quality impact assessment of a Mediterranean limno-reservoir under climate change and land use management scenarios
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Hydrological and water quality impact assessment of a Mediterranean limno-reservoir under climate change and land use management scenarios

机译:气候变化和土地利用管理情景下地中海limno水库的水文和水质影响评估

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Water scarcity and water pollution constitute a big challenge for water managers in the Mediterranean region today and will exacerbate in a projected future warmer world, making a holistic approach for water resources management at the catchment scale essential. We expanded the Soil and Water Assessment Tool (SWAT) model developed for a small Mediterranean catchment to quantify the potential effects of various climate and land use change scenarios on catchment hydrology as well as the trophic state of a new kind of waterbody, a limno-reservoir (Pareja Limno-reservoir), created for environmental and recreational purposes. We also checked for the possible synergistic effects of changes in climate and land use on water flow and nutrient exports from the catchment. Simulations showed a noticeable impact of climate change in the river flow regime and consequently the water level of the limno-reservoir, especially during summer, complicating the fulfillment of its purposes. Most of the scenarios also predicted a deterioration of trophic conditions in the limno-reservoir. Fertilization and soil erosion were the main factors affecting nitrate and total phosphorus concentrations. Combined climate and land use change scenarios showed noticeable synergistic effects on nutrients exports, relative to running the scenarios individually. While the impact of fertilization on nitrate export is projected to be reduced with warming in most cases, an additional 13% increase in the total phosphorus export is expected in the worst-case combined scenario compared to the sum of individual scenarios. Our model framework may help water managers to assess and manage how these multiple environmental stressors interact and ultimately affect aquatic ecosystems.
机译:缺水和水污染对当今的地中海地区的水管理者来说是一个巨大的挑战,并且在预计未来的温暖世界中将加剧,这使得在流域规模上进行水资源综合管理的方法至关重要。我们扩展了为小型地中海流域开发的土壤和水评估工具(SWAT)模型,以量化各种气候和土地利用变化情景对流域水文学以及一种新型水体-石灰岩的营养状态的潜在影响。为环境和娱乐目的而创建的水库(Pareja Limno水库)。我们还检查了气候和土地利用变化对流域水流和养分输出的可能的协同效应。模拟结果表明,气候变化对河流流量状况产生了显着影响,因此,对limno水库的水位,特别是在夏季,使实现其目标复杂化。大多数情况还预测了利姆诺水库的营养状况将恶化。施肥和水土流失是影响硝酸盐和总磷浓度的主要因素。与单独运行情景相比,气候和土地利用变化综合情景显示了对养分出口的显着协同作用。尽管在大多数情况下,预计施肥对硝酸盐出口的影响会随着变暖而减少,但在最坏情况下,与个别情况的总和相比,在最坏情况下磷的总出口量预计还会增加13%。我们的模型框架可以帮助水管理者评估和管理这些多种环境压力因素如何相互作用并最终影响水生生态系统。

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