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Phosphorus Legacy: Overcoming the Effects of Past Management Practices to Mitigate Future Water Quality Impairment

Journal of Environmental Quality · 2013 · Vol. 42(5) · pp. 1308–1326
Andrew N. SharpleyHelen P. JarvieAnthony R. BudaLinda MayBryan M. SpearsPeter J. A. Kleinman

Abstract

The water quality response to implementation of conservation measures across watersheds has been slower and smaller than expected. This has led many to question the efficacy of these measures and to call for stricter land and nutrient management strategies. In many cases, this limited response has been due to the legacies of past management activities, where sinks and stores of P along the land-freshwater continuum mask the effects of reductions in edge-of-field losses of P. Accounting for legacy P along this continuum is important to correctly apportion sources and to develop successful watershed remediation. In this study, we examined the drivers of legacy P at the watershed scale, specifically in relation to the physical cascades and biogeochemical spirals of P along the continuum from soils to rivers and lakes and via surface and subsurface flow pathways. Terrestrial P legacies encompass prior nutrient and land management activities that have built up soil P to levels that exceed crop requirements and modified the connectivity between terrestrial P sources and fluvial transport. River and lake P legacies encompass a range of processes that control retention and remobilization of P, and these are linked to water and sediment residence times. We provide case studies that highlight the major processes and varying timescales across which legacy P continues to contribute P to receiving waters and undermine restoration efforts, and we discuss how these P legacies could be managed in future conservation programs.

Soil and Water Nutrient DynamicsAquatic Ecosystems and Phytoplankton DynamicsSoil erosion and sediment transportEnvironmental scienceSurface runoffWater qualityBiogeochemical cycleWatershedLand managementLand useNutrient managementHydrology (agriculture)Environmental remediation

MeSH terms

PhosphorusSoilRiversLakesWater Quality
Citations
996
FWCI
45.07
field-weighted impact
References
218
Percentile
100%
vs. same field & year
Citations per year
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References
Lag Time in Water Quality Response to Best Management Practices: A Review
Journal of Environmental Quality · 2010 · 705 citations
Phosphorus Loss in Agricultural Drainage: Historical Perspective and Current Research
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Journal of Environmental Quality · 2000 · 609 citations
Dependence of Runoff Phosphorus on Extractable Soil Phosphorus
Journal of Environmental Quality · 1995 · 530 citations
The River Continuum Concept
Canadian Journal of Fisheries and Aquatic Sciences · 1980 · 9,871 citations
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