Journal of Water Resource and Protection

Journal of Water Resource and Protection

ISSN Print: 1945-3094
ISSN Online: 1945-3108
www.scirp.org/Journal/jwarp
E-mail: jwarp@scirp.org
"Predicting Phosphorus Sorption onto Steel Slag Using a Flow-through approach with Application to a Pilot Scale System"
written by Chad J. Penn, Joshua M. McGrath,
published by Journal of Water Resource and Protection, Vol.3 No.4, 2011
has been cited by the following article(s):
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[1] Removal of Phosphorous, Copper and Zinc from Stormwater Using Powdered Activated Carbon (Pac) Based Water Treatment Residuals
2024
[2] Phosphorus fate and management on the Somerset Levels and Moors Ramsar ditch systems
2023
[3] Techno-Economic Analysis of Phosphorus Removal Structures
Environmental Science & …, 2023
[4] Performance of simple low-cost edge-of-field filters for mitigating P losses in surface runoff from agricultural fields
Agricultural Water …, 2023
[5] Long-term phosphorus removal by Ca and Fe-rich drainage filter materials under variable flow and inlet concentrations
Water Research, 2023
[6] Determination of Phosphorus Removal Mechanism in Aerated and Unaerated Steel Slag Filter System as Secondary Treatment System for Textile Industrial …
International Journal of …, 2022
[7] The Role of Dissolved Organic Matter on Phosphorous Sorption onto Iron-Enhanced Activated Alumina Media using In-Field and Flow-Through Column …
2022
[8] Phosphorus removal by steel slag from tile drainage water: Lab and field evaluations
Chemosphere, 2022
[9] Phosphate and Nitrate Removal from Impacted Waters by Combined Physical-Chemical and Microbiological Transformations
2022
[10] Thou shall not flow: assessing magnitudes and processes of dissolved reactive phosphorus (P) removal by P-sorbing materials
2021
[11] Applying a Statistical Approach to Develop a Sustainable Technology for Capturing Phosphorous from an Agricultural Tile Drainage System Using By-Product …
2021
[12] Introduction to P‐TRAP software for designing phosphorus removal structures
2021
[13] Balancing Hydraulic Control and Phosphorus Removal in Bioretention Media Amended with Drinking Water Treatment Residuals
2021
[14] Estimating the variability of steel slag properties and their influence in phosphorus removal ability
2021
[15] Coagulation techniques for phosphorus removal from agricultural wastewater
2021
[16] Nitrate and Phosphate Removal from Denitrification Bioreactors Using Woodchips, Steel Chips and Agricultural Residue Media
2021
[17] Utilization of Steel Slag in Blind Inlets for Dissolved Phosphorus Removal
2020
[18] Performance of field-scale phosphorus removal structures utilizing steel slag for treatment of subsurface drainage
2020
[19] THE USE AND BEHAVIOR OF SORPTION MEDIA IN MITIGATING EXCESSIVE DISSOLVED PHOSPHORUS IN SURFACE WATERS
2020
[20] Performance of Field-Scale Phosphorus Removal Structures Utilizing Steel Slag for Treatment of Surface and Subsurface Drainage
2020
[21] Using Steel Slag for Dissolved Phosphorus Removal: Insights from a Designed Flow-Through Laboratory Experimental Structure
2020
[22] Performance of a Ditch-Style Phosphorus Removal Structure for Treating Agricultural Drainage Water with Aluminum-Treated Steel Slag
2020
[23] Aerated and unaerated steel slag filter systems as polishing unit for phosphorus removal from textile industrial effluent
2020
[24] Pilot Scale Evaluation of E. Coli Filtration Removal From Stormwater Using Recycled Steel
2019
[25] The past, present, and future of blind inlets as a surface water best management practice
2019
[26] A Novel Coating Method for Create Filter MediaCapable to Remove Phosphate fromWastewater Effectively: A Novel Coating Method for Create Filter MediaCapable to …
2019
[27] A novel method to rapidly assess the suitability of water treatment residual and crushed concrete for the mitigation of point and nonpoint source nutrient …
2019
[28] Soil phosphorus dynamics following land application of unsaturated and partially saturated red mud and water treatment residuals
2019
[29] Optimal regulation of N/P in horizontal sub-surface flow constructed wetland through quantitative phosphorus removal by steel slag fed
2019
[30] Mechanisms of Phosphorus Removal by Phosphorus Sorbing Materials
Journal of Environmental Quality, 2018
[31] The Challenges of Managing Legacy Phosphorus Losses from Manure-Impacted Agricultural Soils
Current Pollution Reports, 2018
[32] CHEMICAL INTERACTIONS OF CITRATE, CALCIUM AND PHOSPHATE IN A CALCAREOUS SASKATCHEWAN SUBSOIL
2018
[33] Phosphorus Removal Structures as a Short-Term Solution for the Problem of Dissolved Phosphorus Transport to Surface Waters
Design and Construction of Phosphorus Removal Structures for Improving Water Quality, 2018
[34] REVERSIBLE SORPTION OF PHOSPHORUS ON ZIRCONIA AND DESIGN OF ADSORPTION UNIT FOR PHOSPHORUS POLLUTION ABATEMENT
2018
[35] Denitrifying woodchip bioreactor and phosphorus filter pairing to minimize pollution swapping
Water Research, 2017
[36] A feasibility study in the use of domestic water treatment residuals to remove phosphorus from wastewater
2017
[37] A Review of Phosphorus Removal Structures: How to Assess and Compare Their Performance
Water, 2017
[38] Elements of precision manure management
Precision Conservation: Geospatial Techniques for Agricultural and Natural Resources Conservation, 2017
[39] Phosphorus Retention and Regeneration of EAF Steel Slag and a Synthetic Iron Oxyhydroxide
Dissertation, Ohio State University, 2017
[40] Removal of Water-Extractable Phosphorus from Dairy Manure
Dissertation, Ohio State University, 2017
[41] An Experimental Investigation Into the Efficiency of Filter Materials for Phosphate Removal from Wastewater
2017
[42] Reuse of Steel Stag for Resourc
2017
[43] Phosphorus and Metal Sorption in Aged Bioretention Cells with Fly-ash Amended Filter Media
ProQuest Dissertations Publishing, 2016
[44] Filtration curtains for phosphorus harvesting from small water bodies
Ecological Engineering, 2016
[45] Evaluation of a universal flow-through model for predicting and designing phosphorus removal structures
Chemosphere, 2016
[46] Production and applications of electric-arc-furnace slag as solid waste in environmental technologies: a review
Environmental Technology Reviews, 2016
[47] Agricultural Drainage Filters. II. Phosphorus Retention and Release at Different Flow Rates
Water, Air, & Soil Pollution, 2016
[48] Evaluating Steel Byproducts and Natural Minerals for Phosphate Adsorption from Agricultural Subsurface Drainage
2016
[49] Appropriate technology for domestic wastewater management in under-resourced regions of the world
Applied Water Science, 2016
[50] Design, quantification, and demonstration of large scale phosphorus removal structures in Oklahoma
ProQuest Dissertations Publishing, 2015
[51] Evaluation of sorption behavior of two reactive filter materials using dual column laboratory investigation.
Thesis, 2015
[52] Modelling of phosphate retention by Ca-and Fe-rich filter materials under flow-through conditions
Ecological Engineering, 2015
[53] Use of Industrial Wastes as Media in Constructed Wetlands and Filter Beds–Prospects for Removal of Phosphate and Metals from Wastewater Streams
Critical Reviews in Environmental Science and Technology, 2014
[54] Chemistry and Application of Industrial By-products to Animal Manure for Reducing Phosphorus Losses to Surface Waters
Applied Manure and Nutrient Chemistry for Sustainable Agriculture and Environment. Springer Netherlands, 2014
[55] A simplified transfer function for estimating saturated hydraulic conductivity of porous drainage filters
Water, Air, & Soil Pollution, 2014
[56] Phosphorus removal structures: A management option for legacy phosphorus
Journal of Soil and Water Conservation, 2014
[57] Application of Isothermal Calorimetry to Phosphorus Sorption onto Soils in a Flow-through System
Soil Science Society of America Journal, 2014
[58] A three-step test of phosphate sorption efficiency of potential agricultural drainage filter materials
Water research, 2014
[59] Removing phosphorus with Ca-Fe oxide granules–a possible wetlands filter material
Hydrology Research, 2014
[60] Application of isothermal calorimetry to phosphorus sorption onto soils in a flow‐through system
2014
[61] Effectiveness of filtering materials for reducing phosphorus losses from drained agricultural fields in Flanders, Belgium
Thesis, 2014
[62] A modelling approach to the design of in situ agricultural drainage filters
Soil Use and Management, 2013
[63] Phosphorus Removal From Stormwater Using Electric Arc Furnace Steel Slag
2013
[64] Application of isothermal calorimetry to the study of phosphorus sorption onto soils in a flow-through system
2013 Kansas City, Missouri, July 21-July 24, 2013, 2013
[65] Phosphorus Reduction in Runoff Using a Steel Slag Trench Filter System
2012
[66] Removing phosphorus from surface and drainage waters through use of industrial by-products
US Patent App. 13/447,956, 2012
[67] Effect of land application of phosphorus-saturated gypsum on soil phosphorus in a laboratory incubation
Applied and Environmental Soil Science, 2012
[68] Trapping phosphorus in runoff with a phosphorus removal structure
Journal of environmental quality, 2012
[69] Emerging technologies for removing nonpoint phosphorus from surface water and groundwater: Introduction
Journal of environmental quality, 2012
[70] Phosphorus removal with by-products in a flow-through setting
Journal of environmental quality, 2012
[71] Potential and limitations of phosphate retention media in water protection: A process-based review of laboratory and field-scale tests
Agricultural and Food Science, 2012
[72] Phosphorus removal with by‐products in a flow‐through setting
2012
[73] Phosphate removal in water by mesostructure based on titanium and silica
2011
[74] Chemical Amendment of Dairy Slurry For The Control of
2011
[75] Chemical Amendment of Dairy Slurry For The Control of Phosphorus in Runoff From Grassland
2011
[76] Correll, DL 1998. The role of phosphorus in the eutrophication of receiving waters: a review. J. Environ. Qual. 27: 261-266.
INDUSTRIAL BY-PRODUCT CHARACTERIZATION FOR PHOSPHORUS REMOVAL IN ENVIRONMENTAL CONTAMINANT FILTERS, 2011
[77] SCALE-DEPENDENT PHOSPHORUS LEACHING IN ALLUVIAL FLOODPLAINS
G Fox, T Halihan, C Penn, D Storm
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