首页> 外文期刊>Global change biology >Nonlinear nitrous oxide (N2O) response to nitrogen fertilizer in on-farm corn crops of the US Midwest.
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Nonlinear nitrous oxide (N2O) response to nitrogen fertilizer in on-farm corn crops of the US Midwest.

机译:美国中西部农田玉米作物对氮肥的非线性氧化亚氮(N 2 O)响应。

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摘要

Row-crop agriculture is a major source of nitrous oxide (N2O) globally, and results from recent field experiments suggest that significant decreases in N2O emissions may be possible by decreasing nitrogen (N) fertilizer inputs without affecting economic return from grain yield. We tested this hypothesis on five commercially farmed fields in Michigan, USA planted with corn in 2007 and 2008. Six rates of N fertilizer (0-225 kg N ha-1) were broadcast and incorporated before planting, as per local practice. Across all sites and years, increases in N2O flux were best described by a nonlinear, exponentially increasing response to increasing N rate. N2O emission factors per unit of N applied ranged from 0.6% to 1.5% and increased with increasing N application across all sites and years, especially at N rates above those required for maximum crop yield. At the two N fertilizer rates above those recommended for maximum economic return (135 kg N ha-1), average N2O fluxes were 43% (18 g N2O-N ha-1 day-1) and 115% (26 g N2O-N ha-1 day-1) higher than were fluxes at the recommended rate, respectively. The maximum return to nitrogen rate of 154 kg N ha-1 yielded an average 8.3 Mg grain ha-1. Our study shows the potential to lower agricultural N2O fluxes within a range of N fertilization that does not affect economic return from grain yield
机译:行作农业是全球范围内一氧化二氮(N 2 O)的主要来源,最近的田间试验结果表明,N 2 O排放量的显着减少是可能的通过减少氮(N)肥料输入而不会影响谷物产量的经济回报。我们在2007年和2008年在美国密歇根州的五个商业化种植玉米的田间进行了这一假设的检验。播种前已播种并掺入了六种氮肥(0-225 kg N ha -1 ),按照当地惯例。在所有地点和年份中,N 2 O通量的增加最好通过非线性的,对增加的N速率呈指数增加的响应来描述。在所有地点和年份,每施氮量的N 2 O排放因子在0.6%至1.5%之间,并且随着施氮量的增加而增加,尤其是在高于最大农作物产量所需的施氮量下。在高于最高经济回报建议值的两个氮肥施用量(135千克N ha -1 )下,平均N 2 O通量为43%(18 g N 2 ON ha -1 天 -1 )和115%(26 g N 2 ON ha -1 day -1 )分别高于建议速率下的通量。最大返氮率154 kg N ha -1 产生平均8.3 Mg颗粒ha -1 。我们的研究表明,在不影响谷物产量的经济回报的前提下,在一定范围的施氮范围内降低农业N 2 O通量的潜力

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