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Yield stability analysis reveals sources of large-scale nitrogen loss from the US Midwest

机译:产量稳定性分析揭示了来自美国中西部的大规模氮损失的来源

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摘要

Loss of reactive nitrogen (N) from agricultural fields in the U.S. Midwest is a principal cause of the persistent hypoxic zone in the Gulf of Mexico. We used eight years of high resolution satellite imagery, field boundaries, crop data layers, and yield stability classes to estimate the proportion of N fertilizer removed in harvest (NUE) versus left as surplus N in 8 million corn (Zea mays) fields at subfield resolutions of 30 × 30 m (0.09 ha) across 30 million ha of 10 Midwest states. On average, 26% of subfields in the region could be classified as stable low yield, 28% as unstable (low yield some years, high others), and 46% as stable high yield. NUE varied from 48% in stable low yield areas to 88% in stable high yield areas. We estimate regional average N losses of 1.12 (0.64–1.67) Tg N y−1 from stable and unstable low yield areas, corresponding to USD 485 (267–702) million dollars of fertilizer value, 79 (45–113) TJ of energy, and greenhouse gas emissions of 6.8 (3.4–10.1) MMT CO2 equivalents. Matching N fertilizer rates to crop yield stability classes could reduce regional reactive N losses substantially with no impact on crop yields, thereby enhancing the sustainability of corn-based cropping systems.
机译:美国中西部农田的反应性氮(N)损失是墨西哥湾持续缺氧区的主要原因。我们使用了八年的高分辨率卫星图像,田间边界,作物数据层和产量稳定性类来估算子田中800万个玉米田中氮素在收获时(NUE)去除的氮与剩余氮的比例。在中西部10个州的3000万公顷土地中,分辨率为30××30μm(0.09公顷)。平均而言,该区域中26%的子田可归为稳定的低产,28%的为不稳定(某些年为低产,另一些年为高),46%的稳定为高产。 NUE从稳定的低产区的48%到稳定的高产区的88%不等。我们估计稳定和不稳定的低产区的区域平均氮素损失为1.12(0.64-1.67)Tg N y -1 ,相当于485(267-702)百万美元的肥料价值,79( 45–113)能源的TJ,温室气体排放量为6.8(3.4–10.1)MMT CO2当量。将氮肥施用量与作物产量稳定性等级相匹配,可以在不影响作物产量的情况下大幅减少区域性氮素的动态损失,从而提高玉米种植系统的可持续性。

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