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Irrigation, Drainage and Ecological Engineering Approaches to Controlled Farmland Nonpoint Source Pollution

机译:控制农田非点源污染的灌溉,排水和生态工程方法

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Farmland nonpoint source pollution (FNPSP) was considered as the chemical to river, lake or groundwater with the surface runoff, seepage or farmland drainage. It is distributed widely and scattered, and difficult to control. A framework to prevent and control FNPSP was put forward, namely irrigation, drainage and ecological engineering approaches (IDEEA), which including in water-saving irrigation, controlled drainage, bioreactor, water and fertilizer management, ecological drainage canal and wetland. In order to identity subject of responsibility of FNPSP, the total pollutants and their density should be estimated and emission permit should be implemented base on the main drainage canal catchment of farmland. The effects of different approaches were analyzed based on recent research results. Case study in Guilin, Guangxi and Qingpu, Shanghai showed that, in same region, the area of wetland for TN is larger than for TP and the area of wetland in surface is larger than in subsurface. The percentage of wetland area to paddy field is about 9-10% in surface flow and 7-8% in subsurface.
机译:农田面源污染(FNPSP)被认为是对河流,湖泊或地下水的化学物质,其径流,渗漏或农田排水。它分布广泛且分散,难以控制。提出了防治FNPSP的框架,即灌溉,排水和生态工程方法(IDEEA),包括节水灌溉,控制排水,生物反应器,水肥管理,生态排水渠和湿地。为了确定FNPSP的责任主体,应估算污染物的总量及其密度,并应根据农田的主要排水渠集水区实施排放许可。根据最近的研究结果分析了不同方法的效果。在广西桂林和上海青浦的案例研究表明,在同一地区,TN的湿地面积大于TP的湿地面积,表层的湿地面积大于地下的湿地面积。地表湿地面积对稻田的百分比约为9-10%,地下为7-8%。

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