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Integration of urea deep placement and organic addition for improving yield and soil properties and decreasing N loss in paddy field

机译:尿素深度放置和有机物的整合,提高产量和土壤性质,稻田损失降低

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摘要

Few studies have examined nitrogen (N) loss and crop yield under urea.deep placement combined with organic addition in highly fertilized paddy field. Therefore, a three-year paddy field trial was conducted in Taihu Lake region of China to gain insight into yields, NH3 volatilization and N leaching. Six treatments were used: control (CK, zero N application), conventional (CT, broadcasting of 300 kg ha(-1) N), recommended N (RT, broadcasting of 225 kg ha(-1) N), organic addition (RTM, broadcasting of 225 kg ha(-1) N and organic N), N deep placement (RTD, deep placement of 225 kg ha(-1) N) and organic addition combined with N deep placement (RTDM, organic N combined with deep placement of 225 kg ha(-1) N). Compared to the CK treatment, the RTM and RTDM treatments increased soil organic matter by 8%-11% and TN by 9%-14%. NH3 loss was dominated by floodwater NH4+-N concentration and increased with the increase of chemical N use. The RTM treatment had obviously higher floodwater NH4+-N concentration and NH3 loss than the RT treatment. By contrast, NH3 loss in the RTD and RTDM treatment was 84%-89% less than in the RT treatment, only accounting for 0.2%-1% of the total N application. Compared to NH3 volatilization, N leaching was low; and NO3--N in the percolation water prevailed over NH4+-N and was linearly correlated with floodwater NO3--N concentration. NO3--N and TN leaching between the CT and RTDM treatments differed little (p > 0.05). N loss (NH3 loss and N leaching) induced by fertilizer was linearly correlated with N surplus. By comparison with the CT treatment, the RTDM treatment decreased N surplus by 73.1%, and increased grain yield by 18.3% and N recovery efficiency by 63.8%. The RTD treatment also had higher rice yield than the CT treatment, whereas unfavorable delayed senescence occurred in it in 2016 and led to a marked decrease of grain yield. The RTD treatment significantly increased plant N uptake (PNU) by rice straw compared to chemical N treatment and had the lowest N harvest index (NHI) and N physiological efficiency (NPE) among the fertilizer treatments. In short, urea deep placement combined with organic addition was superior to N deep placement or organic addition combined with N broadcasting to decrease N loss and increase grain yield, representing an effective and promising practice to achieve food and environmental security.
机译:少量研究检测了尿素下的氮气(n)损失和作物产量。在极其受精的稻田中加入有机加法。因此,在中国太湖地区进行了三年的稻田试验,以获得洞察力,NH3挥发和N浸出。使用六种治疗方法:对照(CK,零氮施用),常规(CT,300kg HA(-1)N),推荐N(RT,广播225千克HA(-1)n),有机加法( RTM,225 kg ha(-1)n和有机n),n深放置(rtd,深度放置225 kg ha(-1)n)和有机加法与n深放置(Rtdm,有机n结合225 kg ha(-1)n的深度放置。与CK处理相比,RTM和RTDM治疗将土壤有机物质增加了8%-11%,TN增加了9%-14%。 NH3损失由洪水NH4 + -N浓度主导,随着化学品N的增加而增加。 RTM治疗明显较高的洪水NH4 + -N浓度和NH 3损失高于RT处理。相比之下,RTD和RTDM处理中的NH 3损失比RT治疗少84%-89%,仅占总N申请的0.2%-1%。与NH3挥发相比,N浸出量低;在渗透水中的NO3 - N占存在NH4 + -N上,并与洪水NO3 - N浓度线性相关。 CT和RTDM处理之间的NO3 - N和TN浸出不同(P> 0.05)。肥料诱导的N损失(NH 3损失和N浸出)与N剩余线性相关。通过与CT治疗进行比较,RTDM处理将n剩余降低73.1%,并将籽粒产量增加18.3%,n次恢复效率升高63.8%。 RTD治疗还具有比CT治疗更高的水稻产量,而2016年将在其中发生不利的延迟衰老,并导致谷物产量的显着降低。与化学性N处理相比,RTD治疗显着增加了稻草的植物N吸收(PNU),并在肥料治疗中具有最低的N收获指数(NHI)和N个生理效率(NPE)。简而言之,尿素深入与有机添加剂相结合,优于N深度放置或有机加法与N广播结合,以降低N损失,增加粮食产量,代表实现食品和环境安全的有效和有希望的做法。

著录项

  • 来源
    《Odonatologica》 |2017年第1期|共10页
  • 作者单位

    Chinese Acad Sci State Key Lab Soil &

    Sustainable Agr Inst Soil Sci Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci State Key Lab Soil &

    Sustainable Agr Inst Soil Sci Nanjing 210008 Jiangsu Peoples R China;

    Chengdu Univ Informat Technol Coll Resources &

    Environm Chengdu 610225 Sichuan Peoples R China;

    Chinese Acad Sci State Key Lab Soil &

    Sustainable Agr Inst Soil Sci Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci State Key Lab Soil &

    Sustainable Agr Inst Soil Sci Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci State Key Lab Soil &

    Sustainable Agr Inst Soil Sci Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci State Key Lab Soil &

    Sustainable Agr Inst Soil Sci Nanjing 210008 Jiangsu Peoples R China;

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

    Organic addition; Deep placement; Ammonia volatilization; Leaching; Yield;

    机译:有机加法;深度放置;氨挥发;浸出;产量;

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