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Increasing Nitrogen Use Efficiency of Corn in Midwestern Cropping Systems

机译:在中西部地区种植系统中提高玉米的氮利用效率

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摘要

Nitrogen (N) loss from agricultural systems raises concerns about the potential impact of farming practices on environmental quality. N is a critical input to agricultural production. However, there is little understanding of the interactions among crop water use, N application rates, and soil types. This study was designed to quantify these interactions in corn (Zea mays L.) grown in production-size fields in central Iowa on the Clarion-Nicollet-Webster soil association. Seasonal water use varied by soil type and N application rate. Yield varied with N application rate, with the highest average yield obtained at 100 kg ha. N use efficiency (NUE) decreased with increasing N application rates, having values around 50%. Water use efficiency (WUE) decreased as N fertilizer rates increased. Analysis of plant growth patterns showed that in the low organic matter soils (lower water-holding capacities), potential yield was not achieved because of water deficits during the grain-filling period. Using precipitation data coupled with daily water use throughout the season, lower organic matter soils showed these soils began to drain earlier in the spring and continued to drain more water throughout the season. The low NUE in these soils together with increased drainage lead to greater N loss from these soils. Improved management decisions have shown that it is possible to couple water use patterns with N application to increase both WUE and NUE.
机译:农业系统中的氮损失引起人们对耕作方式对环境质量的潜在影响的关注。氮是农业生产的关键投入。但是,对作物水分利用,氮肥施用量和土壤类型之间相互作用的了解很少。这项研究的目的是量化在爱荷华州中部Clarion-Nicollet-Webster土壤协会的生产规模田间种植的玉米(Zea mays L.)中的这些相互作用。季节性用水量因土壤类型和氮肥施用量而异。产量随氮肥施用量的变化而变化,在100 kg公顷时可获得最高的平均产量。氮的利用率(NUE)随氮的施用量增加而降低,其值约为50%。随着氮肥用量的增加,水分利用效率(WUE)降低。对植物生长模式的分析表明,在低有机质土壤(保水能力较低)中,由于灌浆期缺水,未能实现潜在的单产。利用降水数据以及整个季节的每日用水量,有机质较低的土壤表明这些土壤在春季较早开始流失,并在​​整个季节继续流失更多的水。这些土壤中的NUE低,加上排水增加,导致这些土壤中氮的损失更大。改进的管理决策表明,可以将水的使用方式与N的施用方式结合使用,以增加WUE和NUE。

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