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Journal ArticleDOI

A preliminary study on coastal water quality monitoring and modeling.

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TLDR
Results indicated that drainage canals constitute a significant microbial loading to lake waters and the somewhat under estimation by model suggests re-suspension of sediment and re-introduction of the indicator organisms that attached to the sediment back into the water column.
Abstract
The overall objective of this study was to assess the impact of individual rainfall events on Lake Pontchartrain water quality and risk to swimmers Indicator organisms in lake water under dry weather conditions, in storm water runoff (prior to dilution with lake water), and in the outfall plume within the lake following storm events were monitored and quantified Results indicated that drainage canals constitute a significant microbial loading to lake waters Significant reductions of indicator microbes are observed in the water column following two to three days after storm pumping events into the lake A mathematical model incorporating advection, dispersion, and bacterial die-off gives fairly good prediction on E coli, enterococcoi, and fecal coliform titers The somewhat under estimation by model suggests re-suspension of sediment and re-introduction of the indicator organisms that attached to the sediment back into the water column Future direction of model development should include the mechanism of re-suspension and survival of indicator organisms in sediment

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Citations
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Journal ArticleDOI

Pharmaceuticals and personal care products (PPCPs) and endocrine disrupting chemicals (EDCs) in stormwater canals and Bayou St. John in New Orleans, Louisiana, USA.

TL;DR: Samples were collected from two stormwater canals and a recreational urban waterway known as Bayou St. John in New Orleans, Louisiana, USA and analyzed for a range of pharmaceuticals and personal care products (PPCPs) and endocrine disrupting chemicals (EDCs) and demonstrated the occurrence of PPCPs and EDCs.
Journal ArticleDOI

A generic, process‐based model of microbial pollution in aquatic systems

TL;DR: In this article, a process-based model of microbial pollution is presented, which is applicable for surface and coastal waters, based on a generic set of parameterisations that describe the dynamics of most protozoan, bacterial and viral organisms of interest, including pathogens and microbial indicator organisms.
Journal ArticleDOI

Modeling Fecal Indicator Bacteria Concentrations in Natural Surface Waters: A Review

TL;DR: The aim of this review is to present and evaluate the wide variety of models used so far in the scientific literature to simulate and predict FIB concentrations in natural surface waters, and to better understand current models and more efficiently set up future ones.
Journal ArticleDOI

Fecal coliform bacteria disappearance rates in a north-central Gulf of Mexico estuary

TL;DR: In this article, the authors used water quality data collected from Mississippi Sound before, during and after 12 rainfall events to assess the effects of rainfall on fecal coliform levels, estimate fecal co-coliform disappearance rates, and evaluate the influence of season on coliform loss rates.
Journal ArticleDOI

Microbial Source Tracking for Identification of Fecal Pollution

TL;DR: To assist authorities with the implementation of the changes suggested by more restricted legislation concering water quality in Europe, methods are needed which can identify the sources of fecal pollution.
References
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Journal ArticleDOI

Dilution and decay of aquatic herbicides in flowing channels

TL;DR: In this article, the behavior of herbicides injected into flowing irrigation channels for aquatic weed control is analyzed, and solutions to the one-dimensional convective-diffusion equation are given for instantaneous and step-function injections of a decaying tracer.
Journal ArticleDOI

Microbial contamination in Lake Pontchartrain Basin and best management practices on microbial contamination reduction.

TL;DR: Alternative Best Management Practices (BMPs) are suggested with emphasis on disinfection and engineered microbial reduction technologies for water quality enhancement in the Pontchartrain Basin.
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