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生态学杂志 ›› 2025, Vol. 44 ›› Issue (8): 2531-2540.doi: 10.13292/j.1000-4890.202508.035

• 研究报告 • 上一篇    下一篇

硝化抑制剂对喀斯特农业土壤氮素迁移的影响

时治宇1,王晓丹1*,陆萌1,毛菊1,高云龙1,马僖1,岳甫均2
  

  1. 1贵州民族大学生态环境工程学院, 贵阳 550025; 2天津大学地球系统科学学院, 天津 300072)
  • 出版日期:2025-08-10 发布日期:2025-08-12

Effect of nitrification inhibitors on nitrogen migration in karst agricultural soils.

SHI Zhiyu1, WANG Xiaodan1*, LU Meng1, MAO Ju1, GAO Yunlong1, MA Xi1, YUE Fujun2   

  1. (1School of Ecological and Environmental Engineering, Guizhou University for Nationalities, Guiyang 550025, China; 2School of Earth System Science, Tianjin University, Tianjin 300072, China).

  • Online:2025-08-10 Published:2025-08-12

摘要: 硝化抑制剂对农业土壤氮素迁移转化有重要意义。本研究以喀斯特地区典型黄壤土为对象,采用土柱模拟5种施肥类别条件(常量施氮肥,常量氮肥+硝化抑制剂DMPP,120%氮肥+硝化抑制剂DMPP,80%氮肥+硝化抑制剂DMPP,常量氮肥+硝化抑制剂DMPP+磷肥),研究硝化抑制剂3,4-二甲基吡唑磷酸盐(DMPP)对喀斯特土壤氮素转化及淋溶流失潜能的影响。结果表明:配施DMPP的喀斯特黄壤土中硝化反应受到有效抑制,与常量施肥条件相比,硝态氮浓度平均降低了34.8%±4.2%;氮肥减量措施(常规施肥量的80%)与DMPP配施相较于常规施肥可以使土壤中硝态氮的淋溶损失降低56.4%±6.1%;与单施尿素和DMPP相比,添加磷肥后,土壤淋溶液中硝态氮浓度提高了56.2%±5.4%,磷添加对DMPP的作用效果有抑制作用。综上,在喀斯特地区施用DMPP可以抑制农田土壤硝化过程,并有效减少硝态氮的淋溶,降低地下水氮素的污染风险,这对该地区的水资源管理和生态环境保护具有重要的意义。


关键词: 岩溶, DMPP, 减施氮肥, 氮流失

Abstract: Nitrification inhibitors play a critical role in the migration and transformation of nitrogen in agricultural soils. Using soil column simulations, we investigated the effects of different fertilization treatments on nitrogen transformation and leaching potential in typical yellow soil in a karst region. There were five treatments, including conventional nitrogen fertilizer, conventional nitrogen fertilizer with nitrification inhibitor DMPP, 120% nitrogen fertilizer with nitrification inhibitor DMPP, 80% nitrogen fertilizer with nitrification inhibitor DMPP, and conventional nitrogen fertilizer with nitrification inhibitor DMPP and phosphate fertilizer. The results showed that soil nitrification was inhibited by DMPP. Compared to the conventional fertilization condition, nitrate concentration was reduced by 34.8%±4.2%. The nitrogen reduction strategy (80% of the conventional fertilization amount) combined with DMPP application resulted in a 56.4%±6.1% decrease in nitrate leaching compared to conventional fertilization. The addition of phosphate fertilizer increased nitrate concentration in the soil leachate by 56.2%±5.4% compared to the application of urea and DMPP alone, indicating that phosphorus addition has an inhibitory effect on the function of DMPP. In summary, DMPP application in karst regions can inhibit soil nitrification, effectively reduce nitrate leaching and the risk of groundwater nitrogen pollution, which is of great significance for water resource management and ecological environment protection in karst agricultural soils.


Key words: karst, DMPP, reduced nitrogen fertilizer application, nitrogen loss