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Phosphorus Transport in Agricultural Subsurface Drainage: A Review

Journal of Environmental Quality · 2014 · Vol. 44(2) · pp. 467–485
Kevin W. KingMark R. WilliamsMerrin L. MacraeNorman R. FauseyJane FrankenbergerDouglas R. SmithPeter J. A. KleinmanLarry C. Brown

Abstract

Phosphorus (P) loss from agricultural fields and watersheds has been an important water quality issue for decades because of the critical role P plays in eutrophication. Historically, most research has focused on P losses by surface runoff and erosion because subsurface P losses were often deemed to be negligible. Perceptions of subsurface P transport, however, have evolved, and considerable work has been conducted to better understand the magnitude and importance of subsurface P transport and to identify practices and treatments that decrease subsurface P loads to surface waters. The objectives of this paper were (i) to critically review research on P transport in subsurface drainage, (ii) to determine factors that control P losses, and (iii) to identify gaps in the current scientific understanding of the role of subsurface drainage in P transport. Factors that affect subsurface P transport are discussed within the framework of intensively drained agricultural settings. These factors include soil characteristics (e.g., preferential flow, P sorption capacity, and redox conditions), drainage design (e.g., tile spacing, tile depth, and the installation of surface inlets), prevailing conditions and management (e.g., soil-test P levels, tillage, cropping system, and the source, rate, placement, and timing of P application), and hydrologic and climatic variables (e.g., baseflow, event flow, and seasonal differences). Structural, treatment, and management approaches to mitigate subsurface P transport-such as practices that disconnect flow pathways between surface soils and tile drains, drainage water management, in-stream or end-of-tile treatments, and ditch design and management-are also discussed. The review concludes by identifying gaps in the current understanding of P transport in subsurface drains and suggesting areas where future research is needed.

Soil and Water Nutrient DynamicsConstructed Wetlands for Wastewater TreatmentWastewater Treatment and Nitrogen RemovalTile drainageSubsurface flowEnvironmental scienceBaseflowDrainageSurface runoffHydrology (agriculture)DitchTillageWater quality
Citations
491
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28.40
field-weighted impact
References
233
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100%
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