• ISSN 1008-505X
  • CN 11-3996/S
梁国庆, 周卫, 夏文建, 王秀斌, 孙静文, 李双来, 胡诚, 陈云峰. 优化施氮下稻-麦轮作体系土壤N2O排放研究[J]. 植物营养与肥料学报, 2010, 16(2): 304-311. DOI: 10.11674/zwyf.2010.0207
引用本文: 梁国庆, 周卫, 夏文建, 王秀斌, 孙静文, 李双来, 胡诚, 陈云峰. 优化施氮下稻-麦轮作体系土壤N2O排放研究[J]. 植物营养与肥料学报, 2010, 16(2): 304-311. DOI: 10.11674/zwyf.2010.0207
LIANG Guo-qing, ZHOU Wei, XIA Wen-jian, WANG Xiu-bin, SUN Jing-wen, LI Shuang-lai, HU Cheng, CHEN Yun-feng. Effect of optimized nitrogen application on N2O emission from paddy field under wheat-rice rotation system[J]. Journal of Plant Nutrition and Fertilizers, 2010, 16(2): 304-311. DOI: 10.11674/zwyf.2010.0207
Citation: LIANG Guo-qing, ZHOU Wei, XIA Wen-jian, WANG Xiu-bin, SUN Jing-wen, LI Shuang-lai, HU Cheng, CHEN Yun-feng. Effect of optimized nitrogen application on N2O emission from paddy field under wheat-rice rotation system[J]. Journal of Plant Nutrition and Fertilizers, 2010, 16(2): 304-311. DOI: 10.11674/zwyf.2010.0207

优化施氮下稻-麦轮作体系土壤N2O排放研究

Effect of optimized nitrogen application on N2O emission from paddy field under wheat-rice rotation system

  • 摘要: 采用了静态箱法研究优化施氮下湖北稻-麦轮作体系农田N2O排放特征。结果表明,农田N2O排放量随施氮量增加而增加。N2O排放通量峰值大约发生在施氮后的第3~7 d。小麦季土壤N2O排放量范围为N2O 2.43~4.84 kg/hm2,肥料氮通过N2O排放的损失率为0.54%~0.74%。水稻季土壤N2O排放量为N2O 0.89~2.45 kg/hm2,肥料氮通过N2O排放的损失率为0.39%~0.47%。小麦季和水稻季施氮后0~15 d N2O排放量占当季总排放量的百分比分别为62.79%~66.72%和87.97%~93.14%。与习惯施氮相比,基于作物阶段氮素吸收增加追肥比例和施氮次数的优化施氮能有效减少土壤N2O排放。

     

    Abstract: The static chamber-gas chromatograph method was used to measure the N2O emission from paddy field under the wheat-rice rotation system in Hubei Province. The results indicated that total N2O emission generally increased with the N application rate. The peak of N2O flux occurred within 3-7 days after fertilizer was applied. In wheat growing season, N2O emission varied from 2.43 to 4.84 kg/ha N2O which accounted for 0.54% to 0.74% of applied N; While in rice growing season, N2O emission varied from 0.89 to 2.45 kg/ha N2O which ranged from 0.39% to 0.47% of applied N. Majority of total N2O emission occurred over the first 15 days after N application, ranged from 62.79% to 66.72% and 87.97% to 93.14% in the wheat season and rice season respectively. Compared to farmer practice, optimizing N application associated with increasing ratios of dress N to base N fertilizer and times of split application based on plant N requirement at different growth stage could obviously reduce the N2O emission under the rice-wheat rotation system.

     

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