湖北农业科学 ›› 2022, Vol. 61 ›› Issue (20): 17-21.doi: 10.14088/j.cnki.issn0439-8114.2022.20.004

• 资源·环境 • 上一篇    下一篇

稻田排水晒田及降雨径流的氮素流失特征

邓秋宏, 樊敏, 朱静平   

  1. 西南科技大学环境与资源学院/低成本废水处理技术四川省国际科技合作基地,四川 绵阳 621010
  • 收稿日期:2021-08-07 出版日期:2022-10-25 发布日期:2022-11-23
  • 通讯作者: 朱静平(1969-),女,安徽淮北人,教授,主要从事废水处理理论与工程技术、水处理生物技术研究,(电子信箱)zjp.gd@126.com。
  • 作者简介:邓秋宏(1996-),女,四川德阳人,硕士,主要从事农田面源污染研究,(电话)18281569330(电子信箱)553042605@qq.com。
  • 基金资助:
    四川省科技计划项目(2020YFS0343)

Characteristics of nitrogen loss from drainage and runoff in paddy field and rainfall runoff

DENG Qiu-hong, FAN Min, ZHU Jing-ping   

  1. School of Environment and Resources/Low-cost Wastewater Treatment Technology International Sci-Tech Cooperation Base of Sichuan Province, Southwest University of Science and Technology, Mianyang 621010, Sichuan, China
  • Received:2021-08-07 Online:2022-10-25 Published:2022-11-23

摘要: 为研究稻田排水晒田以及雨季径流的氮素流失特征,以期对稻田农业面源污染防治提供依据。采用单独灌排的试验田,设计施肥量依次为0、90、150、270 kg/hm2,通过监测水稻生长期间的田面水位、日降雨量以及排水前、降雨后各试验小区田面水中的三氮浓度,探明排水晒田及施肥后不同降雨时段的氮素流失规律,并估算氮素流失量。结果表明,稻田径流液中氮素浓度主要与施肥量和降雨距离施肥的时间有关,3次降雨径流中NH4+-N最高浓度为12.000 mg/L、TN最高浓度为13.520 mg/L,其中TN以NH4+-N、NO3--N为主要流失形态;4个试验小区排水晒田和降雨径流所产生的TN流失量之和为24.380 kg/hm2,其中降雨径流为主要流失途径。施肥量、降雨径流量以及降雨径流距离施肥日期的时间间隔是影响氮素径流损失的主要因素。

关键词: 稻田排水, 降雨径流, 氮, 流失量

Abstract: This study provided a basis for the prevention and control of agricultural non-point source pollution in paddy fields by studying the characteristics of nitrogen loss from drainage and drying of paddy fields and runoff in rainy seasons. For the test field with separate irrigation and drainage, the designed fertilization amount is 0, 90, 150, and 270 kg/hm2 in turn. By monitoring the field surface water level during rice growth, daily rainfall, and the three nitrogen concentrations in the field surface water of each test plot before drainage and after rainfall, the law of nitrogen loss in different rainfall periods after drainage and drying and fertilization is proved, and the amount of nitrogen loss is estimated. The results showed that the nitrogen concentration in the runoff of paddy field was mainly related to the amount of fertilizer applied and the time interval between rainfall and fertilization date. The highest concentrations of NH4+-N and TN in the three rainfall runoff were 12.000 mg/L and 13.520 mg/L respectively, of which NH4+-N and NO3-N were the main forms of TN loss; the total amount of TN loss generated by drainage and drying fields and rainfall runoff in the four test plots was 24.380 kg/hm2, of which rainfall runoff was the main loss way. The amount of fertilization, rainfall runoff and the time interval between rainfall runoff and fertilization date are the main factors affecting nitrogen runoff loss.

Key words: paddy drainage, rainfall runoff, nitrogen, loss

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