Predicting Phosphorus Sorption onto Steel Slag Using a Flow-through approach with Application to a Pilot Scale System
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Abstract
Reducing phosphorus (P) loads from soils to surface waters is necessary for solving the problem of eutrophication. Many industrial by-products have been shown to sorb appreciable amounts of dissolved P from solution and it has been proposed to use P sorption materials (PSMs) such as steel slag in landscape scale “filters” for trapping dissolved P in runoff. The objective of this study was to model the effect of retention time (RT) and P concentration on P sorption by steel slag and a surface modified slag in a flow-through system. Sorption of P onto steel slag and rejuvenated-modified steel slag was measured using a traditional batch isotherm and a flow-through setting at several RTs and P concentrations. Flow-through data were used to produce a model that estimated P sorption based on RT and P concentration. The model was tested on a pilot-scale pond filter consisting of the same slag materials. For both the materials, flow-through tests indicated an increase in RT increased P removal efficiency but decreased the total amount of P removed at saturation. The Langmuir model developed from batch isotherms overestimated and underestimated P sorption in normal and rejuvenated slag respectively, relative to flow-through. Normal and rejuvenated slag removed 38 and 36% of P in the pilot-scale pond filter after 2 weeks of pumping. The Langmuir equation poorly predicted P sorption in the pond filter while the flow-through model produced reasonable estimates. Results suggest that flow-through methodology is necessary for estimating P sorption in the context of landscape P filters.
- J. N. Quinton, J. A. Catt and T. M. Hess, “The Selective Removal of Phosphorus from Soil: Is Event Size Important?” Journal of Environment Quality, Vol. 30, No. 2, 2001, pp. 538-546. doi:10.2134/jeq2001.302538x
- D. R. Edwards and T. C. Daniel, “Effects of Poultry litter Application Rate and Rainfall Intensity on Quality of Runoff from Fescuegrass Plots,” Journal Environment Quality, Vol. 22, No. 2, 1993, pp. 361-365. doi:10.2134/jeq1993.00472425002200020017x
- C. J. Penn, G. L. Mullins, L. W. Zelazny, J. G. Warren, and J. M. McGrath, “Surface Runoff Losses of Phosphorus from Virginia Soils Amended with Turkey Manure Using Phytase and HAP Corn Diets,” Journal of Environment Quality, Vol. 33, No. 4, 2004, pp.1431-1439. doi:10.2134/jeq2004.1431
- J. W. Leader, E. J. Dunne, and K. R. Reddy, “Phosphorus Sorbing Materials: Sorption Dynamics and physio-chemical Characteristics,” Journal of Environment Quality, Vol. 37, No. 1, 2008, pp. 174-81. doi:10.2134/jeq2007.0148
- L. E. Gallimore, N. T. Basta, D. E. Storm, M. E. Payton, R. H. Huhnke and M. D. Smolen, “Water Treatment Residual to Reduce Nutrients in Surface Runoff from Agricultural Land,” Journal Environmrnt Quality, Vol. 28, No. 5, 1999, pp. 1474-1478. doi:10.2134/jeq1999.00472425002800050012x
- C. J. Penn, and R. B. Bryant, “Application of phosphorus sorbing materials to streamside cattle loafing areas,” Journal of Soil and Water Conservation, Vol. 61, No. 5, 2006, pp. 303-310.
- C. J. Penn, R. B. Bryant, P. A. Kleinman and A. Allen, “Sequestering Dissolved Phosphorus from Ditch Drainage Water,” Journal of Soil and Water Conservation, Vol. 62, No. 4, 2007, pp. 269-272.
- C. J. Penn, J. M. McGrath and R. B. Bryant, “Ditch Drainage Management for Water Quality Improvement,” In: M. T. Moore and R. Kroger Eds., Agricultural drainage ditches: mitigation wetlands for the 21st century, Research Signpost, Kerala, India, 2010, pp. 151-173.
- A. N. Shilton, I. Elmetri, A. Drizo, S. Pratt, R. G. Haverkamp and S. C. Bilby, “Phosphorus Removal by an “Active” Slag Filter-A Decade of Full Scale Experience,” Water Research, Vol. 40, No. 1, 2006, pp. 113-118. doi:10.1016/j.watres.2005.11.002
- L. Johansson, “Industrial By-Products and Natural Substrate as Phosphorus Sorbents,” Environmental Technology, Vol. 20, No. 3, 1999, pp. 309-316. doi:10.1080/09593332008616822
- R. W. McDowell, A. N. Sharpley and W. Bourke, “Treatment of Drainage Water with Industrial By-Products to Prevent Phosphorus Loss from Tile-Drained Land,” Journal of Environment Quality, Vol. 37, No. 4, 2008, pp. 1575-1582. doi:10.2134/jeq2007.0454