Issue 1, 2011

Phosphorus run-off assessment in a watershed

Abstract

The Watershed Assessment Model was used to simulate the runoff volume, peak flows, and non-point source phosphorus loadings from the 5870 km2 Lake Okeechobee watershed as a case study. The results were compared to on-site monitoring to verify the accuracy of the method and to estimate the observed/simulated error. In 2008, the total simulated phosphorus contribution was 9634, 6524 and 3908 kg (P) y−1 from sod farms, citrus farms and row crop farmlands, respectively. Although the dairies represent less than 1% of the total area of Kissimmee basin, the simulated P load from the dairies (9283 kg (P) y−1 in 2008) made up 5.4% of the total P load during 2008. On average, the modeled P yield rates from dairies, sod farms and row crop farmlands are 3.85, 2.01 and 0.86 kg (P) ha−1 y−1, respectively. The maximum sediment simulated phosphorus yield rate is about 2 kg (P) ha−1 and the particulate simulated phosphorus contribution from urban, improved pastures and dairies to the total phosphorus load was estimated at 9%, 3.5%, and 1%, respectively. Land parcels with P oversaturated soil as well as the land parcels with high phosphorus assimilation and high total phosphorus contribution were located. The most critical sub-basin was identified for eventual targeting by enforced agricultural best management practices. Phosphorus load, including stream assimilation, incoming to Lake Okeechobee from two selected dairies was also determined.

Graphical abstract: Phosphorus run-off assessment in a watershed

Supplementary files

Article information

Article type
Paper
Submitted
29 Jun 2010
Accepted
28 Sep 2010
First published
10 Nov 2010

J. Environ. Monit., 2011,13, 66-73

Phosphorus run-off assessment in a watershed

Y. Chebud, G. M. Naja and R. Rivero, J. Environ. Monit., 2011, 13, 66 DOI: 10.1039/C0EM00321B

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