首页> 外文会议>International Conference on Energy, Environment and Sustainable Development >Estimating nitrogen yield for a catchment of Lake Taihu based on distributed hydrological modelling
【24h】

Estimating nitrogen yield for a catchment of Lake Taihu based on distributed hydrological modelling

机译:基于分布式水文建模的湖泊太湖集水率估算氮素产量

获取原文

摘要

Nitrogen and phosphorous pollution is common in China and worldwide. The pollution deteriorates water quality and even causes significant change of the freshwater ecosystem. Management must be strengthened in order to reduce the pollution to secure water supply safety and to maintain healthy ecosystems. This paper investigated the yield of total nitrogen (TN) for different land use types, exemplified in the Xitiaoxi catchment of Lake Taihu basin, where catchment-generated nitrogen pollution is severe. Extensive water quality sampling was performed for different river levels and various land use types. A distributed hydrological model was also employed to simulate the river discharges at locations where flow observation is not available, and the simulated river discharges were used for the calculation of nitrogen yield. It is found that generally the catchment's nitrogen export is still as high as 2.6 t/km /year. The yield for forest is 0.8-1.0 t/km /year, while the yields for arable land and for the river sections immediately downstream of urban area are higher than the average ranging 2.8-3.3 t/km~2/year. It is also concluded that the hydrological modelling using a spatially distributed model is helpful and essential in obtaining flows at any locations, which can subsequently be used jointly with the water quality data to identify the critical source areas with high nitrogen yields.
机译:氮,磷污染是常见于中国和世界各地。污染恶化的水质,甚至导致淡水生态系统的显著变化。管理必须以减少污染,安全的供水安全,以及维持健康的生态系统得到加强。本文研究了不同的土地使用类型的总氮(TN)的产率,在太湖盆地,其中集水生成的氮污染严重的集水西苕例举。针对不同河流水位和各种土地利用类型进行广泛的水质采样。分布式水文模型也采用在其中流动的观察,不提供位置来模拟河流流量,并用于氮气收率的计算模拟的河流放电。研究发现,总体流域的氮出口仍高达2.6吨/平方公里/年。森林产量为0.8-1.0吨/平方公里/年,而耕地和立即市区下游河段的产量比一般为2.8-3.3吨/公里〜2次/年以上。它也得出结论,使用空间分布模型的水文模型是有益的,在任何位置,这可随后与水质量数据共同使用以识别具有高氮气收率的关键源区获得流动是必不可少的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号