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Current Nitrogen Management Status and Measures to Improve the Intensive Wheat–Maize System in China

机译:中国小麦—玉米集约化制度的氮素管理现状与措施

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摘要

During the first 35 years of the Green Revolution, Chinese grain production doubled, greatly reducing food shortage, but at a high environmental cost. In 2005, China alone accounted for around 38% of the global N fertilizer consumption, but the average on-farm N recovery efficiency for the intensive wheat–maize system was only 16–18%. Current on-farm N use efficiency (NUE) is much lower than in research trials or on-farm in other parts of the world, which is attributed to the overuse of chemical N fertilizer, ignorance of the contribution of N from the environment and the soil, poor synchrony between crop N demand and N supply, failure to bring crop yield potential into full play, and an inability to effectively inhibit N losses. Based on such analyses, some measures to drastically improve NUE in China are suggested, such as managing various N sources to limit the total applied N, spatially and temporally matching rhizospheric N supply with N demand in high-yielding crops, reducing N losses, and simultaneously achieving high-yield and high NUE. Maximizing crop yields using a minimum of N inputs requires an integrated, interdisciplinary cooperation and major scientific and practical breakthroughs involving plant nutrition, soil science, agronomy, and breeding.
机译:在绿色革命的前35年中,中国的谷物产量翻了一番,大大减少了粮食短缺,但环境成本很高。 2005年,仅中国一个国家就占了全球氮肥消费量的38%左右,但集约化小麦-玉米系统的平均农场氮素回收效率仅为16-18%。当前农场上的氮素使用效率(NUE)远低于研究试验或世界其他地区的农场上的氮素利用率,这归因于化学氮肥的过度使用,对环境和环境中氮素贡献的无知。土壤,作​​物的氮需求与氮供应之间的同步性差,无法充分发挥作物的潜力以及无法有效抑制氮的流失。基于这样的分析,提出了一些可以大大改善中国NUE的措施,例如管理各种N源以限制总氮的使用,在高产作物上时空匹配氮的根际供应和氮需求,减少氮的损失,以及同时实现高产量和高NUE。使用最少的N投入来最大程度地提高作物产量,需要综合的跨学科合作以及涉及植物营养,土壤科学,农学和育种的重大科学和实践突破。

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