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Impacts of climate and planting structure changes on watershed runoff and nitrogen and phosphorus loss

机译:气候和种植结构变化对流域径流和氮磷流失的影响

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It is important to explore the influence of climate and planting structure change on runoff and nitrogen and phosphorus loss in watersheds, as well as to clarify the quantitative relationship between each influencing factor with runoff, nitrogen and phosphorus to formulate reasonable soil and water conservation measures and reduce non-point source pollution in the watershed. In this study, the Lizixi watershed of the Jialing River was analyzed using a Global Climate Model to generate precipitation and temperature change sequences and the distributed hydrological model SWAT was used to simulate changes in runoff and nitrogen and phosphorus loss processes in the watershed under different climate change scenarios and planting structure changes. The results indicate that the increase in runoff caused by climate change in the next decade will be accompanied by an increase in the loss of total nitrogen and total phosphorus. Planting sweet potato under historical meteorological conditions had the best effect on controlling nitrogen and phosphorus loss in the Lizixi watershed, while large losses of nitrogen and phosphorus were produced when planting wheat and corn. At the same time, there is a positive correlation between the loss of nitrogen and phosphorus and the amount of fertilizer applied. For every 10% increase in fertilizer application, the loss of nitrogen and phosphorus increased by 1% and 4%, respectively. The results presented herein will serve as a reference for regional land use management planning.
机译:重要的是要探索气候和种植结构变化对流域径流和氮磷流失的影响,并弄清各个影响因素与径流,氮磷的定量关系,以制定合理的水土保持措施和措施。减少流域内的面源污染。本研究利用全球气候模型分析了嘉陵江李子溪流域产生的降水和温度变化序列,并利用分布式水文模型SWAT模拟了不同气候条件下流域的径流变化以及氮磷流失过程变化的场景和种植结构的变化。结果表明,在未来十年中,由气候变化引起的径流增加将伴随着总氮和总磷损失的增加。在历史气象条件下种植红薯对控制栗子溪流域的氮磷流失具有最好的效果,而在种植小麦和玉米时,氮磷流失量很大。同时,氮磷的流失与施肥量之间存在正相关关系。肥料用量每增加10%,氮和磷的损失分别增加1%和4%。本文介绍的结果将为区域土地使用管理规划提供参考。

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