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Site-specific nitrogen management and remote sensing based nitrogen application decisions in wheat.

机译:特定地点的氮管理和基于遥感的小麦氮素施用决策。

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摘要

The efficient use of nitrogen fertilizer is important to the economic sustainability of soft red winter wheat (Triticum aestivum L.) production and to meet environmental regulations to limit non-point source pollution from agriculture. The first objective of this research was to determine if remote sensing could be used to make early nitrogen application decisions and to predict optimum nitrogen application rates based on in-season nitrogen status in winter wheat. The second objective was to determine if site-specific nitrogen management would increase grain yield, reduce nitrogen inputs, and increase spring nitrogen use efficiency compared to field-specific nitrogen management based on the same logic or typical growers' practices. Research was conducted in 1998, 1999, 2000, and 2001 at five on-farm sites and five research stations representing a range of geographical regions in North Carolina.; A remote sensing technique based on near infrared digital counts and within-field tiller density references was developed and validated to predict when early nitrogen applications were required. This technique accounted for 76% of the variation between predicted and measured tiller density and mad accurate early nitrogen application decisions 85.5% of the time across 10 site-years and a wide range of environmental conditions.; Consistent with previous studies, biomass was found to influence spectral measurements of in-season crop nitrogen status. A strong exponential relationship between the normalized difference vegetation index and whole-plant nitrogen content (R2 = 0.69) and nitrogen uptake (R2 = 0.61) was found. The former could be used to estimate optimum N rate using remote sensing but only at high biomass sites.; Site-specific nitrogen management did not improve grain yield compared to field-specific management. Grain yield benefits up to 2267 kg ha −1 were realized by using either site-specific or field-specific nitrogen management compared to typical growers' practices. Large nitrogen fertilizer reductions, up to 48.6%, were also realized by using site-specific or field-specific nitrogen management compared to typical growers, practices. Spring nitrogen use efficiency was maximized at all sites by site-specific nitrogen management.
机译:氮肥的有效利用对红色软质冬小麦生产的经济可持续性和满足限制农业面源污染的环境法规至关重要。这项研究的第一个目的是确定是否可以使用遥感技术来做出早期的氮肥施用决策,并根据冬小麦的季节氮素状况预测最佳氮肥施用量。第二个目标是确定与基于特定逻辑或典型种植者实践的田间氮肥管理相比,针对特定地点的氮肥管理是否会增加谷物产量,减少氮素输入并提高春季氮素利用效率。研究于1998年,1999年,2000年和2001年在代表北卡罗来纳州多个地理区域的五个农场地点和五个研究站进行。开发了一种基于近红外数字计数和田间分till密度参考的遥感技术,并进行了验证,以预测何时需要早期施氮。这项技术占了预测和测量的分till密度之间变化的76%,并且在10个工作年中以及广泛的环境条件下,错误的准确的早期施氮决策占时间的85.5%。与以前的研究一致,发现生物量会影响季节作物氮素状况的光谱测量。发现归一化差异植被指数与全株氮含量(R 2 = 0.69)和氮吸收量(R 2 = 0.61)之间具有很强的指数关系。前者可用于通过遥感方法估算最佳氮肥利用率,但仅限于生物量较高的地点。与田间管理相比,特定地点的氮管理不能提高谷物产量。与典型种植者的做法相比,通过使用特定地点或特定地点的氮肥管理,可实现高达2267 kg ha -1 的谷物增产效益。与典型的种植者相比,通过使用特定地点或特定地点的氮肥管理,还实现了高达48.6%的氮肥大量减少。通过特定地点的氮素管理,所有地点的春季氮素利用率均达到最高。

著录项

  • 作者

    Flowers, Michael Darrell.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Agriculture Agronomy.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 145 p.
  • 总页数 145
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农学(农艺学);
  • 关键词

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