首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Migration of infiltrated NH4 and NO3 in a soil and groundwater system simulated by a soil tank
【24h】

Migration of infiltrated NH4 and NO3 in a soil and groundwater system simulated by a soil tank

机译:土壤罐模拟的土壤和地下水系统中NH 4和NO 3的渗透迁移

获取原文
获取原文并翻译 | 示例
           

摘要

The infiltration of water contaminants into soil and groundwater systems can greatly affect the quality of groundwater. A laboratory-designed large soil tank with periodic and continuous infiltration models, respectively, was used to simulate the migration of the contaminants NH4 and NO3 in a soil and groundwater system, including unsaturated and saturated zones. The unsaturated soil zone had a significant. effect on removing NH4 and NO3 infiltrated from the surface water. The patterns of breakthrough curves of NH4 and NO3 in the unsaturated zone were related to the infiltration time. A short infiltration time resulted in a single sharp peak in the breakthrough curve, while a long infiltration time led to a plateau curve. When NH4 and NO3 migrated from the unsaturated zone to the saturated zone, an interfacial retardation was formed, resulting in an increased contaminant concentration on the interface. Under the influence of horizontal groundwater movement, the infiltrated contaminants formed a contamination-prone area downstream. As the contaminants migrated downstream, their concentrations were significantly reduced. Under the same infiltration concentration, the concentration of NO3 was greater than that of NH4 at every corresponding cross-section in the soil and groundwater tank, suggesting that the removal efficiency of NH4 was greater than that of NO3 in the soil and groundwater System.
机译:水污染物渗透到土壤和地下水系统中会极大地影响地下水的质量。实验室设计的大型土壤池分别具有周期性和连续渗透模型,用于模拟污染物NH4和NO3在土壤和地下水系统(包括非饱和区和饱和区)中的迁移。非饱和土壤带具有显着性。对去除地表水中渗入的NH4和NO3的影响。 NH4和NO3在非饱和区的穿透曲线形式与入渗时间有关。较短的渗透时间会导致穿透曲线出现一个尖锐的峰,而较长的渗透时间则会导致平稳曲线。当NH4和NO3从不饱和区迁移到饱和区时,形​​成界面滞后,导致界面上的污染物浓度增加。在地下水水平运动的影响下,渗入的污染物在下游形成了易于污染的区域。随着污染物向下游迁移,其浓度显着降低。在相同的入渗浓度下,土壤和地下水池中每个相应横截面的NO3浓度均高于NH4,这表明NH4在土壤和地下水系统中的去除效率高于NO3。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号