Literature DB >> 12026089

Spatial and temporal modeling of microbial contaminants on grazing farmlands.

Yong Q Tian1, Peng Gong, John D Radke, James Scarborough.   

Abstract

This paper introduces an integrated spatial and temporal modeling system developed mathematically for assessing microbial contaminants on animal-grazed farmlands. The model uses fecal coliform, specifically Escherichia coli, as an indicator of fecal contamination and describes the sources, sinks, transport processes, and fate of E. coli contaminants in catchments and associated streams. Spatial features include grazing location, land topography, distance to a nearby stream, and distance through the stream network to the outlet. Temporal features are population dynamics on the land surface, in flow, and on streambeds. The model applies the principles of conservation of mass balance on two different types of pools: grid cells on land surfaces and networked stream segments. The model aims to improve the prediction of the effects of different land management strategies on the fecal contamination of waterways. This is achieved by characterizing the movement of fecal contaminants from land to streams and in-stream mobilization. Processes of attenuation, diffusion, and transport govern the movement. Our study site is a hill land catchment with an area of 140 ha and is used exclusively for animal grazing. The model was calibrated with previous research results, and then tested using the data collected at the outlet of the catchment. The sensitivity of the model predictions was analyzed for different scenarios: effect of stock rate, attenuation rate, and flow volumes. The similar pattern between monitored and predicted E. coli concentration proved that the model captures the key features that control the population dynamics of fecal contaminants. Further experiments are required to expand the model's functionality for covering more mitigation options.

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Mesh:

Year:  2002        PMID: 12026089     DOI: 10.2134/jeq2002.8600

Source DB:  PubMed          Journal:  J Environ Qual        ISSN: 0047-2425            Impact factor:   2.751


  5 in total

1.  Concentrations of pathogens and indicators in animal feces in the Sydney watershed.

Authors:  Peter Cox; Merran Griffith; Mark Angles; Daniel Deere; Christobel Ferguson
Journal:  Appl Environ Microbiol       Date:  2005-10       Impact factor: 4.792

2.  The current state of knowledge on the interaction of Escherichia coli within vegetative filter strips as a sustainable best management practice to reduce fecal pathogen loading into surface waters.

Authors:  Casianes Owino Olilo; Anastasia Wairimu Muia; Wilkister Nyaora Moturi; Japhet Ogalo Onyando; Ford Roegner Amber
Journal:  Energy Ecol Environ       Date:  2016-06-07

3.  Estimating the microbiological risks associated with inland flood events: Bridging theory and models of pathogen transport.

Authors:  Philip A Collender; Olivia C Cooke; Lee D Bryant; Thomas R Kjeldsen; Justin V Remais
Journal:  Crit Rev Environ Sci Technol       Date:  2016-12-09       Impact factor: 12.561

4.  Effect of vegetated filter strips on transport and deposition rates of Escherichia coli in overland flow in the eastern escarpments of the Mau Forest, Njoro River Watershed, Kenya.

Authors:  C O Olilo; J O Onyando; W N Moturi; A W Muia; P Ombui; W A Shivoga; A F Roegner
Journal:  Energy Ecol Environ       Date:  2016-02-14

5.  Estimating Escherichia coli loads in streams based on various physical, chemical, and biological factors.

Authors:  Dipankar Dwivedi; Binayak P Mohanty; Bruce J Lesikar
Journal:  Water Resour Res       Date:  2013-05       Impact factor: 5.240

  5 in total

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