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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 40, 2005 - Issue 9
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Original Articles

Development of the Fecal Coliform Total Maximum Daily Load Using Loading Simulation Program C++ and Tidal Prism Model in Estuarine Shellfish Growing Areas: A Case Study in the Nassawadox Coastal Embayment, Virginia

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Pages 1791-1807 | Received 22 Nov 2004, Published online: 06 Feb 2007

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Jian Shen & Yuan Zhao. (2009) A Bayesian approach for estimating bacterial nonpoint source loading in an estuary with limited observations. Journal of Environmental Science and Health, Part A 44:14, pages 1574-1584.
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Articles from other publishers (9)

Xin Yu, Jian Shen & Jiabi Du. (2021) An inverse approach to estimate bacterial loading into an estuary by using field observations and residence time. Marine Environmental Research 166, pages 105263.
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F. S. Conte & A. Ahmadi. (2018) Mermaid. International Journal of Agricultural and Environmental Information Systems 9:3, pages 38-53.
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Rose S. Sobel, Hanadi S. Rifai & Christina M. Petersen. (2017) Integration of Tidal Prism Model and HSPF for simulating indicator bacteria in coastal watersheds. Estuarine, Coastal and Shelf Science 196, pages 248-257.
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Mac Sisson, Jian Shen & Anne Schlegel. (2016) Combining Inverse and Transport Modeling to Estimate Bacterial Loading and Transport in a Tidal Embayment. Journal of Marine Science and Engineering 4:4, pages 69.
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Ce Wang, Jun Bi & Robert B. AmbroseJrJr. (2015) Development and application of mathematical models to support total maximum daily load for the Taihu Lake’s influent rivers, China. Ecological Engineering 83, pages 258-267.
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Jian Shen & Yuan Zhao. (2010) Combined Bayesian statistics and load duration curve method for bacteria nonpoint source loading estimation. Water Research 44:1, pages 77-84.
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G. McAllister Sisson, Zhenghua Jin, Lee Currey, Jian Shen & Jian-Jun Jia. (2008) Developing a Cost-Effective Methodology to Manage Fecal Coliform Loading in Shellfish Harvesting Areas of Upper Chesapeake Bay, Maryland. Developing a Cost-Effective Methodology to Manage Fecal Coliform Loading in Shellfish Harvesting Areas of Upper Chesapeake Bay, Maryland.
Andrew D. Gronewold, Mark E. Borsuk, Robert L. Wolpert & Kenneth H. Reckhow. (2008) An Assessment of Fecal Indicator Bacteria-Based Water Quality Standards. Environmental Science & Technology 42:13, pages 4676-4682.
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Jian Shen, Jian-Jun Jia & G. McAllister Sisson. (2006) Inverse estimation of nonpoint sources of fecal coliform for establishing allowable load for Wye River, Maryland. Water Research 40:18, pages 3333-3342.
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