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Climate, Landscape, and Management Effects on Nitrate and Soluble Phosphorus Concentrations in Subsurface Drainage Discharge in the Western Lake Erie Basin

机译:西湖埃里盆地地下排水中硝酸盐和溶于磷浓度的气候,景观和管理效应

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Subsurface drainage, while an important and necessary agricultural production practice in the Midwest, contributes nitrate (NO_3) and soluble phosphorus (P) to surface waters. The magnitude of NO_3 and soluble P losses in subsurface drainage varies greatly by landscape, climate, and field management factors. This study evaluates the combined impact of these factors on observed P and NO_3 concentrations in subsurface drainage water in Northwest Ohio. Factors significantly impacting N03 concentrationsincluded rainfall, N and P fertilizer application rate & timing, Soil Test P, soil texture, season, drain spacing, site relief, tillage, temperature, and crop. These findings provide evidence of NO_3 loss via leaching following fertilizer application, and indicate that BMPs specifically targeted at reducing NO_3 concentrations and soil matrix flow of NO_3 following spring fertilizer application will have the greatest impact on NO_3 losses from subsurface discharge. Factors significantly impacting soluble P losses included P fertilizer application rate and timing, rainfall, season, crop, soil texture, site relief Soil Test P, tillage, and temperature. BMPs specifically targeted at P fertilizer management and prevention of soluble P movement via preferential flow pathways during rainfall events will have the greatest impact on soluble P losses from subsurface drainage systems.
机译:地下排水,而中西部的重要和必要的农业生产实践,促进硝酸盐(NO_3)和可溶性磷(P)到表面水域。地下排水中NO_3和可溶性P损耗的大小因景观,气候和现场管理因素而异。本研究评估了这些因素对观察到的P和NO_3浓度在俄亥俄州地下排水中的综合影响。因素显着影响N03浓度降雨,N和P肥料应用率和时序,土壤试验P,土壤质地,季节,排水间距,位点浮雕,耕作,温度和作物。这些发现提供了通过施用后浸出的NO_3损失的证据,并表明春季肥料应用后NO_3的NO_3浓度和土壤基质流量特别靶向的BMP将对地下放电的NO_3损失产生最大的影响。因素显着影响可溶性P损失包括P肥料应用率和时序,降雨,季节,作物,土壤质地,点浮雕土壤试验P,耕作和温度。 BMP专门​​针对P化肥管理和通过降雨事件期间通过优先流动途径预防可溶性P运动将对来自地下排水系统的可溶性P损耗产生最大的影响。

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