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Soil testing and plant analysis to optimize nitrogen management in manured cornfields.

机译:土壤测试和植物分析可优化玉米田中的氮素管理。

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摘要

Land application of animal manure is widely accepted as a method of recycling plant available nitrogen (N) within agricultural systems, but there is great need to improve the efficiency of this recycling. Soil testing and plant analysis are widely accepted as important tools for managing plant nutrients, but guidelines for manure management seldom employ these tools. The objective of this study was to develop guidelines for use of soil testing and plant analysis to optimize N management on manured cornfields. Data were collected in 205 on-farm trials where commercially prepared fertilizer N was applied at various rates to replicated and randomized plots within fields receiving animal manure as normally applied by the farmer. Grain yield responses were used to evaluate the ability of the tests to assess the sufficiency of N for plant growth and to estimate N fertilizer needs.; Concentrations of nitrate in the surface 60-cm layer of soil when corn plants were 15 to 30 cm tall explained 37% of the observed variability in yield response. Concentrations of nitrate in cornstalks at the end of the season explained 41% of this variability. Amounts of manure-N applied, corn yield potential and other factors usually considered in manure management guidelines explained less than 10% of this variability.; The soil and cornstalk tests were calibrated by defining probabilities of profitable response and mean net returns to fertilization for various prices for grain and fertilizer. Observed probabilities of profitable response for various categories considered ranged from 0 to 95%, and mean net returns to fertilization ranged from --1.17 to 1.61 Mg grain/ha. Good agreement between the tests was observed, so either of the calibrated tests can provide site-specific feedback that can be used to evaluate and improve N management on farms. The soil test offers the advantage of being able to guide in-season fertilization to correct for unexpected losses of manure-N that occur soon after application. The greatest benefit of using the tests, however, probably will result from identifying manure management practices that minimize losses of manure-N from soils and thereby make manure a more reliable source of N for crop production.
机译:动物粪肥的土地应用被认为是在农业系统中回收植物有效氮的一种方法,但是非常需要提高这种回收效率。土壤测试和植物分析已被广泛认为是管理植物养分的重要工具,但粪便管理指南很少采用这些工具。这项研究的目的是制定使用土壤测试和植物分析的准则,以优化施肥玉米田的氮素管理。在205个农场试验中收集了数据,在该试验中,以商业化的方式将肥料N以各种速率施用于农民通常施用的接受动物粪便的田地中的重复和随机田地。谷物产量响应用于评估测试评估氮对植物生长的充足性和评估氮肥需求的能力。当玉米植株高15至30厘米时,土壤60厘米表层硝酸盐的浓度解释了所观察到的单产响应变化的37%。季末玉米秸秆中硝酸盐的浓度解释了这种变化的41%。粪肥管理中通常考虑的氮肥施用量,玉米单产潜力和其他因素通常不足10%。通过定义获利响应的概率和各种谷物和肥料价格的平均施肥净收益,对土壤和玉米秸秆测试进行了校准。观察到的各种考虑的获利响应的概率在0至95%之间,平均施肥净收益在--1.17至1.61 Mg谷物/公顷之间。观察到测试之间的一致性好,因此,任何校准的测试都可以提供针对特定地点的反馈,这些反馈可用于评估和改善农场的氮素管理。土壤测试的优势在于能够引导季节施肥,以纠正施用后不久出现的肥料氮意外损失。但是,使用这些试验的最大好处可能是确定粪肥管理方法,从而将土壤中肥料氮的损失降至最低,从而使肥料成为作物生产中更可靠的氮源。

著录项

  • 作者

    Hansen, David Jay.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Agriculture Agronomy.; Agriculture Plant Culture.; Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 90 p.
  • 总页数 90
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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