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Enhanced-efficiency fertilizers are not a panacea for resolving the nitrogen problem

机译:增强效率的肥料不是用于解决氮问题的灵丹妙药

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摘要

Improving nitrogen (N) management for greater agricultural output while minimizing unintended environmental consequences is critical in the endeavor of feeding the growing population sustainably amid climate change. Enhanced-efficiency fertilizers (EEFs) have been developed to better synchronize fertilizer N release with crop uptake, offering the potential for enhanced N use efficiency (NUE) and reduced losses. Can EEFs play a significant role in helping address the N management challenge? Here we present a comprehensive analysis of worldwide studies published in 1980-2016 evaluating four major types of EEFs (polymer-coated fertilizers PCF, nitrification inhibitors NI, urease inhibitors UI, and double inhibitors DI, i.e. urease and nitrification inhibitors combined) regarding their effectiveness in increasing yield and NUE and reducing N losses. Overall productivity and environmental efficacy depended on the combination of EEF type and cropping systems, further affected by biophysical conditions. Best scenarios include: (i) DI used in grassland (n=133), averaging 11% yield increase, 33% NUE improvement, and 47% decrease in aggregated N loss (sum of NO3-, NH3, and N2O, totaling 84 kg N/ha); (ii) UI in rice-paddy systems (n=100), with 9% yield increase, 29% NUE improvement, and 41% N-loss reduction (16 kg N/ha). EEF efficacies in wheat and maize systems were more complicated and generally less effective. In-depth analysis indicated that the potential benefits of EEFs might be best achieved when a need is created, for example, by downward adjusting N application from conventional rate. We conclude that EEFs can play a significant role in sustainable agricultural production but their prudent use requires firstly eliminating any fertilizer mismanagement plus the implementation of knowledge-based N management practices.
机译:提高氮气(N)管理对大农业产出,同时最大限度地减少意外的环境后果在促进饲养越来越多的人口的努力,在气候变化中喂养不断增长的人口。已经开发出增强效率的肥料(EEFS)以利用作物摄取更好地同步肥料N释放,提供增强的N使用效率(NUE)和降低损失的可能性。 EEF可以在帮助解决N管理挑战方面发挥重要作用吗?在这里,我们对1980 - 2016年出版的全球研究进行了全面分析,评估了四种主要类型的EEF(聚合物涂层肥料PCF,硝化抑制剂Ni,脲酶抑​​制剂UI,以及双重抑制剂DI,即脲酶和硝化抑制剂组合的是它们的有效性越来越屈服,润NUE和减少亏损。整体生产率和环境疗效依赖于EEF类型和种植系统的组合,进一步受到生物物理条件的影响。最佳情景包括:(i)在草地(n = 133)中使用的DI,平均屈服增加11%,纽约33%的提高,汇总的N丧失减少47%(NO3-,NH3和N2O的总和,总计84公斤n / ha); (ii)水稻水稻系统(n = 100)中的UI,产量增加9%,NUE改善29%,41%的N-损失减少(16千克/公顷)。小麦和玉米系统中的EEF效率更加复杂,并且通常效果较差。深入分析表明,当通过从传统速率下向调整N应用时,可以最好地实现EEF的潜在益处。我们得出结论,EEFS可以在可持续农业生产中发挥重要作用,但他们的审慎使用需要首先消除任何肥料管理方法以及基于知识的N管理实践的实施。

著录项

  • 来源
    《Global change biology》 |2018年第2期|共11页
  • 作者单位

    Agr Univ Ctr Resources Environm &

    Food Secur Minist Educ Key Lab Plant Soil Interact Beijing Peoples R China;

    Agr Univ Ctr Resources Environm &

    Food Secur Minist Educ Key Lab Plant Soil Interact Beijing Peoples R China;

    Agr Univ Ctr Resources Environm &

    Food Secur Minist Educ Key Lab Plant Soil Interact Beijing Peoples R China;

    Bangor Univ Sch Environm Nat Resources &

    Geog Bangor Gwynedd Wales;

    UCL Inst Sustainable Resources London England;

    Univ East Anglia Sch Int Dev Norwich Norfolk England;

    Agr Univ Ctr Resources Environm &

    Food Secur Minist Educ Key Lab Plant Soil Interact Beijing Peoples R China;

    Agr Univ Ctr Resources Environm &

    Food Secur Minist Educ Key Lab Plant Soil Interact Beijing Peoples R China;

    Agr Univ Ctr Resources Environm &

    Food Secur Minist Educ Key Lab Plant Soil Interact Beijing Peoples R China;

    Rothamsted Res Dept Sustainable Agr Sci Harpenden Herts England;

    Univ Penn Sch Vet Med Ctr Anim Hlth &

    Prod Kennett Sq PA 19348 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物候学;
  • 关键词

    ammonia loss; biophysical conditions; enhanced efficiency fertilizers; nitrate leaching; nitrogen management; nitrous oxide emission;

    机译:氨损失;生物物理条件;增强效率肥料;硝酸盐浸出;氮气管理;氧化二氮排放;

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