Effect of Organic Fertilizer Replacing Nitrogen Fertilizer on Major Grain Yield in China

被引:1
作者
有 机 肥代 替 氮肥 对 中 国主 要 粮 食产 量 的 影响
机构
[1] School of Civil and Hydraulic Engineering, Ningxia University, Yinchuan
[2] Engineering Research Center for Efficient Utilization of Modern Agricultural Water Resources in Arid Regions, Ministry of Education, Yinchuan
[3] Engineering Technology Research Center of Water-Saving and Water Resource Regulation in Ningxia, Yinchuan
来源
Yin, Juan (yj7115@126.com) | 2025年 / 46卷 / 01期
关键词
China; Meta-analysis; nitrogen fertilizer; organic fertilizer; yield;
D O I
10.13227/j.hjkx.202401232
中图分类号
学科分类号
摘要
To comprehensively assess the changing pattern of organic fertilizer substitution with nitrogen fertilizer on the yield of major grains in China,with 102 literature as the research object,through Meta-analysis we quantitatively explored the impacts of soil physicochemical properties,climatic conditions,and different nitrogen fertilizer replacement rates and supplemental application amounts. The results showed that the replacement of nitrogen fertilizer by organic fertilizer could increase crop yields compared with those from the application of nitrogen fertilizer alone,and soil quick-acting potassium content,pH,and annual average temperature had the most significant effects on the yields of the three major grains. When the nitrogen fertilizer replacement rate and the amount of supplemental nitrogen fertilizer applied were 31.06% and 241.78 kg·hm-2,26.52% and 173.31 kg·hm-2,and 39.23% and 149.17 kg·hm-2,the optimum yield increase ratios of 3.31%,3.32%,and 1.08% were achieved for maize,wheat,and rice,respectively. Thus,the results of this study can provide a reference basis for rational fertilizer application in future crop production and help promote green agriculture. © 2025 Science Press. All rights reserved.
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收藏
页码:478 / 488
页数:10
相关论文
共 75 条
  • [21] Borenstein M,, Hedges L V,, Higgins J P T,, Et al., A basic introduction to fixed - effect and random - effects models for meta - analysis[J], Research Synthesis Methods, 1, 2, pp. 97-111, (2010)
  • [22] Wang X J, Zhang R Z,, Qi P,, Et al., Meta-analysis on farmland soil CO<sub>2</sub> emission in Northern China affected by organic fertilizer[J], Transactions of the Chinese Society of Agricultural Engineering, 35, 10, pp. 99-107, (2019)
  • [23] Higgins J P T,, Thompson S G,, Deeks J J,, Et al., Measuring inconsistency in meta-analyses[J], BMJ, 327, 7414, pp. 557-560, (2003)
  • [24] Nakagawa S, Et al., The orchard plot:cultivating a forest plot for use in ecology,evolution,and beyond [J], Research Synthesis Methods, 12, 1, pp. 4-12, (2021)
  • [25] Mi W H, Sun Y,, Xia S Q,, Et al., Effect of inorganic fertilizers with organic amendments on soil chemical properties and rice yield in a low-productivity paddy soil [J], Geoderma, 320, pp. 23-29, (2018)
  • [26] Wang J B, Zhang X M,, Yuan M M,, Et al., Effects of partial replacement of nitrogen fertilizer with organic fertilizer on rice growth,nitrogen utilization efficiency and soil properties in the Yangtze River Basin[J], Life, 13, 3, (2023)
  • [27] Zhang L, Zhang Q,, Et al., Partial substitution of chemical fertilizers with maize straw:Seeking long-term improvement of rice yield by raising quality indicators of a red paddy soil[J], Land Degradation & Development, 33, 18, pp. 3748-3760, (2022)
  • [28] Flavel T C,, Murphy D V., Carbon and nitrogen mineralization rates after application of organic amendments to soil[J], Journal of Environmental Quality, 35, 1, pp. 183-193, (2006)
  • [29] Li C J,, Hoffland E,, Kuyper T W,, Et al., Syndromes of production in intercropping impact yield gains[J], Nature Plants, 6, 6, pp. 653-660, (2020)
  • [30] Adu M O,, Yawson D O,, Armah F A,, Et al., Meta-analysis of crop yields of full,deficit,and partial root-zone drying irrigation[J], Agricultural Water Management, 197, pp. 79-90, (2018)