Literature DB >> 15074829

A simple method to predict dissolved phosphorus in runoff from surface-applied manures.

P A Vadas1, P J A Kleinman, A N Sharpley.   

Abstract

Computer models are a rapid, inexpensive way to identify agricultural areas with a high potential for P loss, but most models poorly simulate dissolved P release from surface-applied manures to runoff. We developed a simple approach to predict dissolved P release from manures based on observed trends in laboratory extraction of P in dairy, poultry, and swine manures with water over different water to manure ratios. The approach predicted well dissolved inorganic (R2 = 0.70) and organic (R2 = 0.73) P release from manures and composts for data from leaching experiments with simulated rainfall. However, it predicted poorly (R2 = 0.18) dissolved inorganic P concentrations in runoff from soil boxes where dairy, poultry, and swine manures had been surface-applied and subjected to simulated rainfall. Multiplying predicted runoff P concentrations by the ratio of runoff to rainfall improved the relationship between measured and predicted runoff P concentrations, but runoff P was still overpredicted for dairy and swine manures. We attributed this overprediction to immediate infiltration of dissolved P in the freely draining water of dairy and swine manure slurries upon their application to soils. Further multiplying predicted runoff dissolved inorganic P concentrations by 0.35 for dairy and 0.60 for swine manures resulted in an accurate prediction of dissolved P in runoff (R2 = 0.71). The ability of our relatively simple approach to predict dissolved inorganic P concentrations in runoff from surface-applied manures indicates its potential to improve water quality models, but field testing of the approach is necessary first.

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Year:  2004        PMID: 15074829

Source DB:  PubMed          Journal:  J Environ Qual        ISSN: 0047-2425            Impact factor:   2.751


  4 in total

1.  Functional Evaluation of Three Manure-Borne Indicator Bacteria Release Models with Multiyear Field Experiment Data.

Authors:  M Stocker; A Yakirevich; A Guber; G Martinez; R Blaustein; G Whelan; D Goodrich; D Shelton; Y Pachepsky
Journal:  Water Air Soil Pollut       Date:  2018-06       Impact factor: 2.520

2.  Rainfall-induced release of fecal coliforms and other manure constituents: comparison and modeling.

Authors:  A K Guber; D R Shelton; Y A Pachepsky; A M Sadeghi; L J Sikora
Journal:  Appl Environ Microbiol       Date:  2006-10-06       Impact factor: 4.792

3.  The current state of knowledge on the interaction of Escherichia coli within vegetative filter strips as a sustainable best management practice to reduce fecal pathogen loading into surface waters.

Authors:  Casianes Owino Olilo; Anastasia Wairimu Muia; Wilkister Nyaora Moturi; Japhet Ogalo Onyando; Ford Roegner Amber
Journal:  Energy Ecol Environ       Date:  2016-06-07

4.  Particle fractionation controls Escherichia coli release from solid manure.

Authors:  Nasrollah Sepehrnia; Sayyed-Hassan Tabatabaei; Hamdollah Norouzi; Mohsen Gorakifard; Hossein Shirani; Fereidoun Rezanezhad
Journal:  Heliyon       Date:  2021-05-25
  4 in total

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