Journal of Environmental Quality · 2017 · 122 citations · 39 references
BiogeochemistryEutrophicationEngineeringSediment QualityEnvironmental EngineeringSediment-water InteractionDissolved Phosphorus RunoffNutrient CycleDrp Runoff RiskWater QualityP StratificationVertical StratificationLake Erie BasinDrp RunoffSediment TransportNutrient Management
During the re-eutrophication of Lake Erie, dissolved reactive phosphorus (DRP) loading and concentrations to the lake have nearly doubled, while particulate phosphorus (PP) has remained relatively constant. One potential cause of increased DRP concentrations is P stratification, or the buildup of soil-test P (STP) in the upper soil layer (<5 cm). Stratification often accompanies no-till and mulch-till practices that reduce erosion and PP loading, practices that have been widely implemented throughout the Lake Erie Basin. To evaluate the extent of P stratification in the Sandusky Watershed, certified crop advisors were enlisted to collect stratified soil samples (0-5 or 0-2.5 cm) alongside their normal agronomic samples (0-20 cm) ( = 1758 fields). The mean STP level in the upper 2.5 cm was 55% higher than the mean of agronomic samples used for fertilizer recommendations. The amounts of stratification were highly variable and did not correlate with agronomic STPs (Spearman's = 0.039, = 0.178). Agronomic STP in 70% of the fields was within the buildup or maintenance ranges for corn ( L.) and soybeans [ (L.) Merr.] (0-46 mg kg Mehlich-3 P). The cumulative risks for DRP runoff from the large number of fields in the buildup and maintenance ranges exceeded the risks from fields above those ranges. Reducing stratification by a one-time soil inversion has the potential for larger and quicker reductions in DRP runoff risk than practices related to drawing down agronomic STP levels. Periodic soil inversion and mixing, targeted by stratified STP data, should be considered a viable practice to reduce DRP loading to Lake Erie.
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A. M. Michalak, Eric J. Anderson, Dmitry Beletsky et al. · Proceedings of the National Academy of Sciences · 2013 · 1.4K citations · Full text
Relating Extractable Soil Phosphorus to Phosphorus Losses in Runoff
D. H. Pote, T. C. Daniel, P. A. Moore et al. · Soil Science Society of America Journal · 1996 · 727 citations
David B. Baker, R. Peter Richards, Timothy Loftus et al. · JAWRA Journal of the American Water Resources Association · 2004 · 606 citations · Full text
River Basin Management, Environmental Monitoring, Earth Science +13