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Watershed Model Evaluation of Agricultural Ditch Drainage Control Structures for Improved Water Quality

机译:农业沟渠排水控制结构的流域模型评价,提高水质

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Open ditch drainage water management (also referred to as controlled drainage) is an old management strategy in agriculture, but recently has gained widespread use because of its potential impacts on nitrate reduction through enhanced denitrification.This is particularly a useful management strategy for the Chesapeake Bay region in Maryland, where nitrogen loads from agriculture has been cited as major components of overall nitrate loads into the Bay. Excess nutrients (especially N &P) entering surface water have shown to increase algal production, causing eutrophication of coastal water ecosystems. Controlled drainage restricts outflow during periods of the year when equipment operations are not required in the field (i.e. winter and midsummer) and to allow natural drainage to occur during the rest of the year, maintaining the water table below the crop root zone. This practice not only restricts the water flows into the Bay, but also allows more denitrification to occur, reducing the level of nitrogen in the ultimate flowing waters into the Bay. A study is undertaken on the Choptank watershed in the Eastern Shore region of Maryland to assess the quantitative role of these control structures in reducing nitrogen loads into surface waters and their overall impact on watershed water quality.
机译:开放的沟渠排水水管理(也称为受控排水)是农业的旧管理战略,但最近由于其通过增强的碳化对硝酸盐还原的潜在影响而获得了广泛的使用。这尤其是切萨皮克湾的有用管理策略马里兰州的地区,来自农业的氮负荷被引用为整体硝酸盐荷载入海湾的主要成分。进入地表水的过量营养素(特别是N&P)已显示增加藻类生产,导致沿海水系的富营养化。受控排水限制在现场(即冬季和仲夏)中不需要设备操作的年度期间的流出,并允许在本年度剩余时间内发生自然排水,维护裁剪根区域下方的水位。这种做法不仅限制水流入海湾,而且还允许发生更多的反硝化,从而降低最终流动水中的氮水平进入海湾。在马里兰州东岸地区的Chopopank流域进行了一项研究,以评估这些控制结构在将氮气荷载降至表面水域的定量作用及其对流域水质的整体影响。

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