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Study on nitrogen load reduction efficiency of agricultural conservation management in a small agricultural watershed

机译:农业小流域农业养护管理氮素削减效率研究。

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Different crops can generate different non-point source (NPS) loads because of their spatial topography heterogeneity and variable fertilization application rates. The objective of this study was to assess nitrogen NPS load reduction efficiency by spatially adjusting crop plantings as an agricultural conservation management (ACM) measure in a typical small agricultural watershed in the black soil region in northeast China. The assessment was undertaken using the Soil and Water Assessment Tool (SWAT). Results showed that lowland crops produce higher nitrogen NPS loads than those in highlands. It was also found that corn gave a comparatively larger NPS load than soybeans due to its larger fertilization demand. The ACM assessed was the conversion of lowland corn crops into soybean crops and highland soybean crops into corn crops. The verified SWAT model was used to evaluate the impact of the ACM action on nitrogen loads. The results revealed that the ACM could reduce NO_3-N and total nitrogen loads by 9.5 and 10.7%, respectively, without changing the area of crops. Spatially optimized regulation of crop planting according to fertilizer demand and geological landscapes can effectively decrease NPS nitrogen exports from agricultural watersheds.
机译:由于不同作物的空间地形异质性和可变的施肥施用率,它们可以产生不同的非点源负荷。这项研究的目的是通过在中国东北黑土地区典型的小型农业流域上,通过空间调整作物种植面积作为一种农业保护管理(ACM)措施,来评估氮素减少NPS的效率。评估是使用土壤和水评估工具(SWAT)进行的。结果表明,低地作物比高地作物产生更高的氮NPS负荷。还发现由于施肥需求大,玉米提供的NPS负载量比大豆要大。评估的ACM是将低地玉米作物转化为大豆作物,将高地大豆作物转化为玉米作物。经过验证的SWAT模型用于评估ACM作用对氮负荷的影响。结果表明,ACM可以在不改变农作物面积的情况下,分别降低NO_3-N和总氮负荷9.5和10.7%。根据化肥需求和地质景观在空间上优化作物种植管理,可以有效减少农业流域的NPS氮输出。

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