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Crop yield and N_2O emission affected by long-term organic manure substitution fertilizer under winter wheat-summer maize cropping system

机译:冬小麦夏季玉米种植系统中长期有机肥料替代肥料影响作物产量和N_2O发射

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摘要

Application of organic manure combined with synthetic fertilizer can maintain crop yield and improve soil fertility, but the long-term effects of substituting different proportions of synthetic fertilizers with organic manure on N_2O emission remain unclear. In this study, field experiments and DNDC model simulations were used to study the long-term effects of substituting synthetic fertilizers with organic manure on crop yield and N_2O emission. The field experiment was conducted at Guanzhong Plain, northern China, under a wheat-maize cropping system. Six treatments were included: no fertilization (CK); synthetic nitrogen (N), phosphorus (P) and potassium (l<) fertilizers (NPK); and 25%, 50%. 75% and 100% of the synthetic N substituted by dairy manure (25%M. 50% M, 75%M, and 100%M). respectively. The DNDC model was calibrated using the field data from the NPK treatment from 2014 to 2017 and was validated for the other treatments. The results showed that the DNDC model can successfully simulate the crop yield (e.g. nRMSE < 5%) and annual N_2O emission (nRMSE < 20%). In addition, a 30-year simulation found that organic manure substitution treatments could maintain wheat yield well, and the yield variation between different years was small. However, relative to the NPK treatment, the maize yields for the first 6 and 7 years were lower under 50%M and 75%M. and under 100%M maize yields were reduced for the first 15 years. The long-term simulation showed that N_2O emission of fertilized treatment had an increasing trend over time, especially the 75%M treatment where the N_2O emission was higher than that of NPK treatment after 25 years of fertilization. The annual mean N_2O emission under different treatments was, in decreasing order, NPK > 25%M > 50%M > 75%M > 100%M > CK. The yield-scale N_2O emission and emission factor were highest for the NPK treatment. Considering crop yield, yield stability and N_2O emission, substitution of 25% synthetic fertilizer by organic manure can simultaneously ensure crop productivity and environmental protection under the tested environment.
机译:有机肥料结合合成肥料可维持作物产量并改善土壤肥力,但在N_2O排放中取代不同比例的合成肥料的长期影响尚不清楚。在该研究中,使用现场实验和DNDC模型模拟来研究替代合成肥料与有机肥料造成作物产量和N_2O排放的长期影响。田野实验是在中国北部北方北部的麦哲玉米种植制度下进行的。包括六种治疗方法:无施肥(CK);合成氮(N),磷(P)和钾(L <)肥料(NPK);和25%,50%。由乳制品造成的75%和100%的合成N(25%m。50%m,75%m和100%m)取代。分别。使用来自2014年至2017年的NPK治疗的现场数据进行校准DNDC模型,并为其他治疗验证。结果表明,DNDC模型可以成功模拟作物产量(例如NRMSE <5%)和年度N_2O发射(NRMSE <20%)。此外,为30年的仿真发现有机肥料替代治疗可以保持小麦产量良好,不同年份之间的产量变异很小。然而,相对于NPK治疗,前6个和7岁的玉米产率低于50%M和75%M。在前15年减少了100%米玉米产率下降。长期仿真表明,随着时间的推移,受精治疗的N_2O排放趋势越来越大,尤其是施肥后N_2O排放量高于NPK治疗的75%。在不同处理下的年度平均值的N_2O发射是在下降的顺序下,NPK> 25%M> 50%M> 75%M> 100%M> CK。对于NPK治疗,产量级别N_2O发射和排放因子最高。考虑到作物产量,产量稳定性和N_2O排放,通过有机粪肥取代25%的合成肥料可同时确保经测试环境下的作物生产力和环境保护。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第25期|139321.1-139321.11|共11页
  • 作者单位

    Key Laboratory of Plant Nutrition and the Agri-environment in Northwest China Ministry of Agriculture College of Resources and Environment Northwest A & F University Yangling 712100 Shaanxi China;

    Key Laboratory of Plant Nutrition and the Agri-environment in Northwest China Ministry of Agriculture College of Resources and Environment Northwest A & F University Yangling 712100 Shaanxi China;

    Landcare Research Private Bag 11052 Manawatu Mail Centre Palmerston North New Zealand;

    Baoji Extension and Service Centre of Agricultural Technology Baoji 721001 Shaanxi China;

    Key Laboratory of Plant Nutrition and the Agri-environment in Northwest China Ministry of Agriculture College of Resources and Environment Northwest A & F University Yangling 712100 Shaanxi China;

    Key Laboratory of Plant Nutrition and the Agri-environment in Northwest China Ministry of Agriculture College of Resources and Environment Northwest A & F University Yangling 712100 Shaanxi China;

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

    DNDC model; Emission factor; Yield-scale N_2O emission; Yield stability;

    机译:DNDC模型;排放因子;产量级别N_2O发射;产量稳定性;
  • 入库时间 2022-08-18 22:36:27

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