Efficient Nitrogen Management Technologies for Sustainable Rice Production

V. S, L. D, Hare Ch, M. R, Sundaram Rm
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引用次数: 1

Abstract

The use of nitrogen (N) fertilizers in rice fields as a source of nutrition is the major source of emission of nitrous oxide (N2O). Two key factors which control the flux of N2O at the field level are the amount of N supplied and the efficiency at which it is absorbed by plants. To reduce the N2O emissions, optimum N fertilizer application (in terms of input rate and time of application) and ideal fertilizer selection are crucial. Optimizing N use efficiency (NUE) is crucial to sustain productivity and profitability. Depending on edaphic and climatic conditions, improved N management can dramatically cut greenhouse gases (GHGs) emissions. Producers must ensure that the kind, rate, and time of N application do not result in substantial losses owing to volatilization, leaching, or denitrification. Adoption of best nitrogen management practices like deep placement of urea, use of nitrification inhibitors, urease inhibitors, and slow-release nitrogen fertilizers will reduce the N loss and increase NUE. The goal of this review is to discuss in detail the various technologies that have been developed and refined to improve NUE and protect the environment.
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高效氮管理技术促进水稻可持续生产
稻田氮肥作为营养来源的使用是氮氧化物(N2O)排放的主要来源。控制农田氮素通量的两个关键因素是氮素供给量和植物吸收氮素的效率。为了减少N2O的排放,最佳的氮肥施用量(在投入率和施用时间方面)和理想的肥料选择是至关重要的。优化氮素利用效率(NUE)对维持生产力和盈利能力至关重要。根据土壤和气候条件的不同,改善氮素管理可以显著减少温室气体的排放。生产者必须确保施氮的种类、速率和时间不会因挥发、淋失或反硝化而造成大量损失。采用最佳氮素管理措施,如深埋尿素、使用硝化抑制剂、脲酶抑制剂和缓释氮肥,将减少氮素损失,提高氮肥利用效率。本综述的目的是详细讨论为改善氮肥利用和保护环境而开发和改进的各种技术。
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