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Reducing phosphorus and sediment loss in runoff from agricultural land.

机译:减少农业土地径流中的磷和沉积物流失。

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Phosphorus (P) and sediment losses in runoff from agricultural land are a serious environmental issue because of the impact on surface water quality and eutrophication. The main factors affecting the transport of P to surface waters are erosion and runoff. Non-application setbacks, perennial vegetative filters, reservoirs, terraces, reduced tillage, and other management practices are intended to reduce P and sediment loss from the watersheds. Four major hypotheses were tested in this study: (1) P and sediment loss are reduced when manure is not applied within setbacks around conduits to surface water; (2) Grass filters will result in reduced sediment and P loading with increased effectiveness as the area ratio of filter to drainage basin increases; 3) 15-20% of the watershed area is the source of more than 50% of P and sediment loading; and 4) Contaminant loading of Duck Creek can be reduced by 30-50% by increasing the use of conservation BMPs on 50% of the watershed land area. Research was conducted under rainfed agricultural systems in eastern Nebraska to address the following objectives: (1) to determine the effectiveness of non-application setbacks for manure from conduits to surface waters in reducing P and sediment in runoff; (2) to evaluate the effectiveness of grass filters in reducing runoff volume and loss of P and sediment; (3) to assess the impact of management practices on sediment and nutrient losses from the watershed using a watershed model; and (4) to evaluate different management scenarios required to achieve further targeted reductions in sediment and P loss to surface waters using a watershed model.;The seven treatments of the setback study included no manure applied and nonapplication setbacks of 0, 5, 10, 20, 30, and 40 m around the riser with the setback distances limited on the terrace side by the top of terraces. Runoff sampling methods were compared and the effects of drainage basin characteristics determined.;The effect of grass filters on sediment and P concentration was determined from four runoff events in 2006-2008 when nearly all plots had runoff. The grass filters also were evaluated for effect on runoff volume and contaminants load using total annual runoff and composite samples collected from 12 runoff events.;In the watershed modeling study, the SWAT model was used to evaluate the effects of tillage, grass filter strips, and terraces on nutrient and sediment loss. Critical areas for these contaminants were identified in the watershed and implementation of management scenarios was simulated on targeted vulnerable areas to identify means of reducing nutrient and sediment loss to targeted levels. Three BMPs scenarios were simulated using SWAT model on the small sub-basin to present the impact of different scenarios on sediment reduction and illustrate the importance of BMPs placing and distribution at hydrologic response units.
机译:由于对地表水质量和富营养化的影响,农田中径流中的磷和沉积物流失是一个严重的环境问题。影响磷向地表水运输的主要因素是侵蚀和径流。非应用程序的挫折,多年生的植物滤料,水库,梯田,减少的耕作和其他管理措施旨在减少流域的磷和沉积物流失。在这项研究中,对四个主要假设进行了检验:(1)当在地表水管道周围的缩进中不施肥时,磷和沉积物的损失减少了; (2)随着滤池与流域面积比的增加,草滤池将减少泥沙和磷的含量,并增加有效性。 3)流域面积的15-20%是磷和沉积物负荷的50%以上的来源; (4)通过在流域土地面积的50%上增加保护性BMP的使用,可以将Duck Creek的污染物负荷减少30-50%。在内布拉斯加州东部的雨养农业系统下进行了研究,以实现以下目标:(1)确定不施用肥料对从导管到地表水的粪便的减少对减少径流中磷和沉积物的有效性; (2)评估草过滤器在减少径流量和减少磷和泥沙流失方面的有效性; (3)使用分水岭模型评估管理措施对分水岭沉积物和养分流失的影响; (4)使用分水岭模型评估实现进一步有针对性的减少地表水沉积物和磷损失所需的不同管理方案。挫折研究的七种处理方法包括不施肥以及不施肥0、5、10,立管周围20、30和40 m,后退距离在梯田一侧受梯田顶部限制。比较了径流采样方法,确定了流域特性的影响。从2006-2008年几乎所有样地都有径流的四个径流事件中,确定了草地滤池对沉积物和P浓度的影响。还使用年度总径流和从12个径流事件中收集的复合样本评估了草滤池对径流量和污染物负荷的影响。在分水岭建模研究中,SWAT模型用于评估耕作,草滤带,和梯田上的养分和沉积物流失。在流域中确定了这些污染物的关键区域,并在有针对性的脆弱地区模拟了管理方案的实施情况,以确定将养分和沉积物损失减少到目标水平的手段。在小子盆地上使用SWAT模型模拟了三种BMP情景,以介绍不同情景对减少沉积物的影响,并说明BMP在水文响应单元中的放置和分布的重要性。

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