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氮肥对地下水中氮迁转机理研究 被引量:4
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作者 陈建平 丁际豫 吴子杰 《长江科学院院报》 CSCD 北大核心 2015年第2期24-29,共6页
为研究地下水中"三氮"迁移转化的主要影响因子,以江西省泰和县境内的千烟洲试验站为研究对象,根据研究需要进行了实验区域的划定,对研究区域的地下水位、"三氮"、铁、锰和p H值进行了长期的监测,通过数据整理、作... 为研究地下水中"三氮"迁移转化的主要影响因子,以江西省泰和县境内的千烟洲试验站为研究对象,根据研究需要进行了实验区域的划定,对研究区域的地下水位、"三氮"、铁、锰和p H值进行了长期的监测,通过数据整理、作图分析后,利用SPSS软件对"三氮"、总铁、可滤态锰和p H值的相关性进行分析。结果表明:研究区地下水已经受到了农业氮面源污染的影响;地下水中铁、锰具有显著的伴生性;铵态氮和亚硝酸盐态氮与铁、锰存在显著的正相关。总铁、可滤态锰、p H值、温度和降雨是地下水中"三氮"迁移转化的主要影响因子。通过"三氮"迁移转化影响因子的分析,可为农业氮面源污染的防治提供一定的理论基础。 展开更多
关键词 地下水 污染 “三氮”迁移 影响因子 监测
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Migration of Infiltrated NH_4 and NO_3 in a Soil and Groundwater System Simulated by a Soil Tank 被引量:1
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作者 WANG Chao WANG Pei-Fang 《Pedosphere》 SCIE CAS CSCD 2008年第5期628-637,共10页
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, respectiv... 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 interracial 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. 展开更多
关键词 breakthrough curve MIGRATION NH4 NO3 soil tank experiment
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