• ISSN 1008-505X
  • CN 11-3996/S
隽英华, 汪仁, 孙文涛, 邢月华. 基于土壤硝态氮测试的春玉米氮肥实时监控技术[J]. 植物营养与肥料学报, 2013, 19(5): 1248-1256. DOI: 10.11674/zwyf.2013.0526
引用本文: 隽英华, 汪仁, 孙文涛, 邢月华. 基于土壤硝态氮测试的春玉米氮肥实时监控技术[J]. 植物营养与肥料学报, 2013, 19(5): 1248-1256. DOI: 10.11674/zwyf.2013.0526
JUAN Ying-hua, WANG Ren, SUN Wen-tao, XING Yue-hua. Real-time nitrogen management for spring maize using the soil nitrate-N test[J]. Journal of Plant Nutrition and Fertilizers, 2013, 19(5): 1248-1256. DOI: 10.11674/zwyf.2013.0526
Citation: JUAN Ying-hua, WANG Ren, SUN Wen-tao, XING Yue-hua. Real-time nitrogen management for spring maize using the soil nitrate-N test[J]. Journal of Plant Nutrition and Fertilizers, 2013, 19(5): 1248-1256. DOI: 10.11674/zwyf.2013.0526

基于土壤硝态氮测试的春玉米氮肥实时监控技术

Real-time nitrogen management for spring maize using the soil nitrate-N test

  • 摘要: 为了实现作物产量和氮肥效率的协同提高,通过三年田间试验,建立了基于土壤硝态氮测试的春玉米氮肥实时监控技术。结果表明,与传统的习惯施肥相比,应用氮肥实时监控技术推荐的氮肥用量大幅减少,每年节约氮肥约60 kg/hm2。 由于氮肥供应与春玉米氮肥需求在时间和空间上的匹配,籽粒产量较习惯施肥增加了6.43%,氮肥利用率、氮肥农学效率、氮肥生理利用率和氮肥偏生产力均显著提高。可见,本研究建立的氮肥实时监控技术是合理的,且在春玉米上应用该技术可以实现氮肥用量降低、产量增加、氮肥效率提高及生态环境保护的协调一致。

     

    Abstract: With a three-year field experiment, the real-time nitrogen (N) management for spring maize was constructed to synergistically increase crop yield and fertilizer N efficiency based on the soil nitrate-N test. The results show that the optimal recommended N application rate is significantly lower than that of the traditional practice, and the amount of saving N fertilizer is about 60 kg/ha per year. Compared with the traditional practice, the grain yield under the optimal N rate is increased by 6.43% due to synchronizing N supply from soil and fertilizer, and N demand of spring maize. In addition, N use efficiency, N agronomic efficiency, N physiological use efficiency and N partial productivity are significantly improved. Therefore, it is preliminarily concluded that the real-time N management constructed in this study is reasonable, and the application of real-time N management to spring maize can realize synchronization of N application rate decrease, grain yield increase, N efficiency improvement and environment protection.

     

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