中国农业机械化科学研究院集团有限公司 主管

北京卓众出版有限公司 主办

农业循环水处理系统水质净化效能研究

Water purification efficiency of agricultural circulating water treatment system

  • 摘要: 针对农业面源污染治理及传统灌排系统效率低的问题,构建水质净化−智能灌排一体化模式农业循环水处理系统(以下简称农业循环水处理系统),通过多周期水质监测分析,探讨稻麦轮作区不同作物季的水质变化规律与系统调控效果。结果表明,农业循环水处理系统对氨态氮(NH4+-N)、硝态氮(NO3-N)、总氮去除率分别为 24.00%~59.62%、7.41%~55.12%和18.18%~54.73%。通过曝气增氧技术,将溶解氧浓度提升52.45%~163.85%,显著改善水体生态环境。农业循环水处理系统在氮素削减、水资源循环利用及面源污染防控方面具有显著效益,为农业绿色发展提供可推广的技术范式。

     

    Abstract: To address agricultural non-point source pollution control and low efficiency of conventional irrigation and drainage systems, an integrated water purification-intelligent irrigation and drainage system(hereinafter referred to as the agricultural circulating water treatment system)was developed.Multi-period water quality monitoring was conducted to systematically analyze temporal variations in water quality and regulatory effects of system across different crop seasons in rice-wheat rotation area.Results showed that agricultural circulating water treatment system achieved removal rates of 24.00%~59.62% for ammonium nitrogen(NH4+-N)、 7.41%~55.12% for nitrate nitrogen(NO3-N), and 18.18%~54.73% for total nitrogen.Aeration technology increased dissolved oxygen concentrations by 52.45%~163.85%, significantly improving aquatic ecological environment.Agricultural circulating water treatment system demonstrated significant benefits in nitrogen reduction, water resource recycling, and non-point source pollution control, providing a scalable technical model for green agricultural development.

     

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