环境科学
非点源污染
水土评价工具
分水岭
地表径流
SWAT模型
水文学(农业)
污染物
水流
水质
气候变化
污染
蒸散量
水资源管理
流域
地理
生态学
机器学习
工程类
生物
计算机科学
岩土工程
地图学
作者
Sayed Shah Jan Sadiqi,Won‐Ho Nam,Kyoung Jae Lim,Eunmi Hong
出处
期刊:Water
[Multidisciplinary Digital Publishing Institute]
日期:2024-01-03
卷期号:16 (1): 179-179
被引量:6
摘要
This study investigated the effects of nonpoint source (NPS) pollution reduction and pollutant dynamics in a highland agricultural watershed in Korea. We employed the SWAT model to simulate hydrological processes and pollution transport within the watershed. The model incorporates future climatic scenarios derived from downscaled climate projections to assess their impacts on NPS pollution and pollutant reduction methods. These changes lead to heightened surface runoff and erosion rates, resulting in elevated sediment and nutrient concentrations. The projection indicates an anticipated increase in the annual average temperature by 1.3 to 2.1 °C by the mid-century, under scenarios SSP126 and SSP585. Additionally, precipitation levels are projected to increase by 31 to 61 mm from the baseline to the end of the century. Variations in hydrological components such as evapotranspiration, streamflow, and soil moisture are expected to range from +3.2 to +17.2%, −9.1 to +8.1%, and 0.1 to 0.7%, respectively, during the years 2040 and 2080. Fluctuations in TN, SS, and TP loading are estimated to range from −4.5 to +2.3%, −5.8 to +29.0%, and +3.7 to +17.4%, respectively. This study emphasizes the importance of adaptive management options for stakeholders and the need for adaptive management options to reduce nonpoint source pollution and protect water quality to maintain sustainable water supplies and conserve the environment in this watershed.
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