Published April 23, 2015 | Version v1
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Modeling the dispersion of viable and total Escherichia coli cells in the artificial semi-enclosed bathing area of Santa Marinella (Latium, Italy)

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This is the accepted manuscript of the paper "Modeling the dispersion of viable and total Escherichia coli cells in the artificial semi-enclosed bathing area of Santa Marinella (Latium, Italy)", published as final paper in " Marine Pollution Bulletin 95 (2015) 141–154; https://doi.org/10.1016/j.marpolbul.2015.04.030"

Bonamano S, Madonia A, Borsellino C, Stefanì C, Caruso G, De Pasquale F, Piermattei V, Zappalà G, Marcelli M (2015). Modeling the dispersion of viable and total Escherichia coli cells in the artificial semi-enclosed bathing area of Santa Marinella (Latium, Italy). MARINE POLLUTION BULLETIN, ISSN: 0025-326X, doi: 10.1016/j.marpolbul.2015.04.030.

Coastal areas are strongly affected by episodes of fecal contamination due to polluted water inflows from inadequately treated sewages. The present study aims to investigate the dispersion of Escherichia coli in the artificial semi-enclosed bathing area of Santa Marinella (Latium, Italy) through in situ samplings carried out in summer 2012 and the application of a dynamic model. Collected samples were analyzed by the Culture-Based technique and the Fluorescent Antibody method in order to estimate both the viable culturable cells and the total E. coli population, respectively. The in situ datasets were used to test the proposed modeling approach and simulate the behavior of bacteria as particles subjected, or not, to decay. Next, the flushing time and the computation of the Microbiological Potential Risk Area allowed the evaluation of the contribution of physical and biological processes to coliform dispersion and the related potential risk for bathers.

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