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Published online 9 August 2005
Published in J Environ Qual 34:1632-1639 (2005)
DOI: 10.2134/jeq2004.0467
© 2005 American Society of Agronomy, Crop Science Society of America, and Soil Science Society of America
677 S. Segoe Rd., Madison, WI 53711 USA
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Runoff Phosphorus Losses from Surface-Applied Biosolids

H. A. Elliotta,*, R. C. Brandta and G. A. O'Connorb

a Agricultural and Biological Engineering Department, Pennsylvania State University, University Park, PA 16802
b Soil and Water Science Department, University of Florida, Gainesville, FL 32611



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Fig. 1. Effect of P source on total dissolved phosphorus (TDP) and total phosphorus (TP) concentrations in runoff of (a) Rainfall Event 1 and (b) Rainfall Event 2. LP, Largo pellets; LC, Largo cake; DM, dairy manure; PB, Patapsco Baltimore pellets; BC, Bellefonte cake; DMA, aluminum-treated dairy manure; DMF, iron-treated dairy manure; BR, Back River Baltimore pellets; DC, Danville cake; DL, Danville limed cake; PC, Philadelphia cake; UC, University cake; C, control; SN, Syracuse N-Viro cake.

 


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Fig. 2. Relationship between runoff total dissolved phosphorus (TDP) and the P-source molar total Al + Fe content for Rainfall Event 1.

 


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Fig. 3. Relationship between runoff (a) total dissolved phosphorus (TDP) and (b) total phosphorus (TP) concentrations and P-source application rate for Rainfall Event 1.

 


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Fig. 4. Relationship between runoff (a) total dissolved phosphorus (TDP) and (b) total phosphorus (TP) concentrations and P-source water-extractable phosphorus (WEP) concentration for Rainfall Event 1.

 


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Fig. 5. Relationship between runoff (a) total dissolved phosphorus (TDP) and (b) total phosphorus (TP) concentrations and phosphorus source coefficient (PSC)-adjusted P-source application rate for Rainfall Event 1.

 





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