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Cover crops affect the partial nitrogen balance in a maize-forage cropping system

机译:覆盖作物影响玉米饲料种植系统中的部分氮气平衡

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Part of the nitrogen (N) fertilizer applied to crops is lost to the environment, contributing to global warming, eutrophication, and groundwater contamination. However, low N supply stimulates soil organic N turnover and carbon (C) loss, since the soil N/C ratio in soil is quasi-constant, ultimately resulting in land degradation. Grasses such as ruzigrass (Urochloa ruziziensis) grown as winter pasture or a cover crop in rotation with maize (Zea mays) can reduce N leaching, however, this may induce N deficiency and depress yields in the subsequent maize crop. Despite the potential to decrease N loss, this rotation may negatively affect the overall N balance of the cropping system. However, this remains poorly quantified. To test this hypothesis, maize, fertilized with zero to 210 kg N ha(-1), was grown after ruzigrass, palisade grass (Urochloa brizanta) and Guinea grass (Pannicum maximum), and the N inputs, outputs and partial N balance determined. Despite the intrinsically poor soil quality associated with the tropical Ultisol, maize grown after the grasses was efficient in acquiring N, resulting in a negative N balance even when 210 kg ha(-1) of N was applied after Guinea grass. Losses by leaching, N2O emission and NH3 volatilization did not exceed 13.8 kg ha(-1) irrespective of the grass type. Despite a similar N loss among grasses, Guinea grass resulted in a higher N export in the maize grain due to a higher yield, resulting in a more negative N balance. Soil N depletion can lead to C loss, which can result in land degradation.
机译:适用于作物的氮(N)肥料的一部分损失了环境,有助于全球变暖,富营养化和地下水污染。然而,低N供应刺激土壤有机碳酸碳和碳(C)损失,因为土壤中的土壤N / C比率是准恒定的,最终导致土地退化。如Ruzigrass(Urochloa Ruziziensis)这样的草,如冬季牧场或旋转玉米(Zea mays)的覆盖作物可以减少N浸出,但这可能会诱导N缺乏症,并在随后的玉米作物中抑制产量。尽管有可能降低N损失,但这种旋转可能会对裁剪系统的整体N平衡产生负面影响。然而,这仍然仍然很差。为了测试这种假设,用零至210kg的玉米(-1)施肥,ruzigrass,扶手草(Urochloa Brizanta)和几内亚草(最大)和n个输入,输出和部分n平衡而生长。尽管与热带Ultisol相关的土壤质量差,但是在收集N的草地上有效的玉米生长,即使在几内亚草后施加210kg ha(-1)时,也产生负n平衡。无论草型如何,通过浸出,N2O发射和NH3挥发的损失不超过13.8千克(-1)。尽管草丛中存在类似的N损失,但由于产量较高,豚草导致玉米籽粒的较高导出,导致更负的N平衡。土壤耗尽可以导致C损失,这可能导致土地退化。

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