首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Regional simulation of nitrate leaching potential from winter wheat-summer maize rotation croplands on the North China Plain using the NLEAP-GIS model
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Regional simulation of nitrate leaching potential from winter wheat-summer maize rotation croplands on the North China Plain using the NLEAP-GIS model

机译:NLEAP-GIS模型,冬小麦夏季玉米玉米玉米旋转耕地的硝酸盐浸出潜力的区域模拟

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Identifying the regional characteristics of nitrate leaching from croplands is of great importance when attempting to assess the groundwater contamination risk due to nitrate leaching from croplands. The regional scale model in the Nitrogen Loss and Environmental Assessment Package with GIS Capabilities (NLEAP-GIS), which takes spatial variations in soil profile properties, meteorological data, and farm practices into account, was adopted in this study to simulate the occurrence dynamics and spatial pattern of nitrate leaching downwards through the crop root zone (0-100 cm) in winter wheat (Triticum aestivum L.)-summer maize (Zea mays L.) rotation croplands during 2011 and 2012 across the Jing-Jin-Ji region on the North China Plain (NCP). The results showed that the monthly nitrate leaching occurrences were driven by rainfall, irrigation, and fertilizer application. The simulated large spatial variation in cumulative nitrate leaching was positively correlated with both rainfall and fertilizer N application rates, whereas it was negatively correlated with N use efficiency. The cumulative nitrate leaching was mostly lower than 10 kg N ha(-1) during the winter wheat growing season, whereas nitrate leaching during the summer maize growing season was much higher and mostly ranged from 20 to 100 kg N ha(-1). The average cumulative nitrate leaching in the winter wheat-summer maize rotation system was 55.7 +/- 33.5 kg N ha(-1), accounting for 17.2 +/- 10.2 % of the fertilizer N applied (average 176.3 +/- 86.2 kg N ha(-1 )during each crop season). Fertilizer N application rates of 100-200 kg N ha(-1) are recommended during each winter wheat and summer maize season to simultaneously achieve higher grain yields, greater N use efficiency, and a lower groundwater nitrate pollution risk on the NCP. The simulated spatial variation in nitrate leaching implied that there was a potential nitrate groundwater contaminant source and the results contributed to the spatial distribution assessment of groundwater nitrate contamination risk caused by fertilizer N inputs.
机译:在尝试评估因硝酸盐浸出的土壤浸出时,鉴定农田从农田浸出的硝酸盐浸出的区域特征是非常重要的。本研究采用了具有GIS功能(NLEAP-GIS)的氮损失和环境评估包的区域规模模型,其中包括土壤剖面性质,气象数据和农业实践的空间变化,以模拟发生动态和硝酸盐通过冬小麦(Triticum aestivum L.) - 夏玉米(Zea Mays L.)转换裁剪2011年和2012年在京津冀地区旋转耕地的空间图案华北平原(NCP)。结果表明,每月硝酸盐浸出发生次数由降雨,灌溉和肥料应用驱动。累积硝酸盐浸出中的模拟大的空间变化与降雨量和肥料N施用率呈正相关,而它与N使用效率负相关。在冬小麦生长季节期间,累积硝酸盐浸出大多低于10kg n(-1),而夏季玉米生长季节的硝酸盐浸出程度大得多,大多为20至100kg n ha(-1)。冬季小麦夏季玉米旋转系统的平均累积硝酸盐浸出量为55.7 +/- 33.5公斤(-1),占施肥N的17.2 +/- 10.2%(平均176.3 +/- 86.2千克N. HA(-1)在每个作物季节期间)。在每个冬季小麦和夏季玉米季节建议使用100-200千克NA(-1)的施肥率,同时达到更高的谷物产量,更高的使用效率,并在NCP上进行较低的地下水硝酸盐污染风险。硝酸盐浸出的模拟空间变化暗示存在潜在的硝酸盐地下水污染源,结果有助于对肥料N投入引起的地下水硝酸盐污染风险的空间分布评估。

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