Development of a Simple Phosphorus Model for a Large Urban Watershed: A Case Study

Author:

Litwack Howard S.1234,DiLorenzo Joseph L.1234,Huang Poshu1234,Najarian Tavit O.1234

Affiliation:

1. Senior Scientist, Najarian Associates, One Industrial Way West, Eatontown, NJ 07724 (corresponding author).

2. Senior Scientist, Najarian Associates, One Industrial Way West, Eatontown, NJ 07724.

3. Senior Mathematical Modeler, Najarian Associates, One Industrial Way West, Eatontown, NJ 07724.

4. President, Najarian Associates, One Industrial Way West, Eatontown, NJ 07724.

Publisher

American Society of Civil Engineers (ASCE)

Subject

General Environmental Science,Civil and Structural Engineering,Environmental Chemistry,Environmental Engineering

Reference26 articles.

1. Estimates of diffuse phosphorus sources in surface waters of the United States using a spatially referenced watershed model;Alexander R. B.;Water Sci. Technol.,2004

2. Anderson P. W. and Faust S. D. (1973). “Characteristics of water quality and stream flow Passaic River Basin above Little Falls New Jersey.” United States Geological Survey Water Supply Publication 2026 U.S. Geological Survey Washington D.C.

3. Buxton D. E. Hunchak-Kariouk K. and Hickman R. E. (1998). “Relations of surface-water quality to streamflow in New Jersey Water Years 1976–1993—Hackensack Passaic Elizabeth and Rahway River Basins.” U.S. Geological Survey Water Resource Investigation Rep. No. 98-04049 U.S. Geological Survey Washington D.C.

4. Models Quantify the Total Maximum Daily Load Process

5. Hoffman J. A. (2001). “Relational data files for GIS display of New Jersey water withdrawals from 1990 to 1999.” N.J. Geological Survey Digital Geodata Series DGS01-2 Trenton N.J.

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