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Animal Waste, Water Quality and Human Health

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Transport of microbial pollution in catchment systems 191Kay, D., Edwards, A. C., Ferrier, B., Francis, C., Kay, C., Rushby, L., Watkins, J., McDonald,A. T., Wyer, M., Crowther, J. <strong>and</strong> Wilkinson, J. (2007a). Catchment microbialdynamics: the emergence of a research agenda. Progress in Physical Geography,31(1), 59–76.Kay, D., Aitken, M., Crowther, J., Dickson, I., Edwards, A. C., Francis, C., Hopkins, M.,Jeffrey, W., Kay, C., McDonald, A. T., McDonald, D., Stapleton, C. M., Watkins,J., Wilkinson, J. <strong>and</strong> Wyer, M. (2007b). Reducing fluxes of faecal indicatorcompliance parameters to bathing waters from diffuse agricultural sources, theBrighouse Bay study, Scotl<strong>and</strong>. Environmental Pollution, 147, 139–149.Kay, D., Stapleton, C. M., Crowther, J., Wyer, M. D., Fewtrell, L., Edwards, A., McDonald,A. T., Watkins, J., Francis, F. <strong>and</strong> Wilkinson, J. (2008a). Faecal indicator organismcompliance parameter concentrations in sewage <strong>and</strong> treated effluents. <strong>Water</strong>Research, 42, 442–454.Kay, D., Crowther, J., Stapleton, C. M., Wyer, M. D., Anthony, S., Bradford, M., Edwards,A., Fewtrell, L., Francis, C., Hopkins, M., Kay, C., McDonald, A. T., Watkins, J. <strong>and</strong>Wilkinson, J. (2008b). Faecal indicator organism concentrations <strong>and</strong> catchment exportcoefficients in the UK. <strong>Water</strong> Research, 42, 2649–2661.Kim, G., Choi, E. S. <strong>and</strong> Lee, D. (2005). Diffuse <strong>and</strong> point pollution impacts on the pathogenindicator organism level in the Geum River, Korea. Science of the Total Environment,350, 94–105.Lee, R., Kay, D., Wilkinson, R. J., Fewtrell, L. <strong>and</strong> Stapleton, C. M. (2002). Impact ofintermittent discharges on the microbial quality of shellfish. R & D TechnicalReport P2-266/TR, ISBN: 1844320464. Bristol: Environment Agency.Lewis, D. J., Atwill, E. R., Lennox, M. S., Hou, L., Karle, B. <strong>and</strong> Tate, K. W. (2005).Linking on-farm dairy management practices to storm-flow fecal coliform loadingfor California coastal waters. Environmental Monitoring <strong>and</strong> Assessment, 107,407–425.Line, D. E. (2003). Changes in a stream’s physical <strong>and</strong> biological conditions followinglivestock exclusion. Transactions of the American Society of Agricultural Engineers,46, 287–293.Mattikalli, M. <strong>and</strong> Richards, S. (1996). Estimation of surface water quality changes inresponse to l<strong>and</strong> use change: application of the export coefficient model usingremote sensing <strong>and</strong> geographical information system. Journal of EnvironmentalManagement, 48, 263–282.McDonald, A. <strong>and</strong> Kay, D. (1981). Enteric bacterial Concentrations in Reservoir FeederStreams: baseflow characteristics <strong>and</strong> response to hydrograph events. <strong>Water</strong>Research, 15, 861–868.McDonald, A. T., Kay, D. <strong>and</strong> Jenkins, A. (1982). Generation of faecal <strong>and</strong> total coliformsurges in the absence of normal hydrometeorological stimuli. Applied <strong>and</strong>Environmental Microbiology, 44, 292–300.McGechan, M. <strong>and</strong> Vinten, A. (2003a). Parameterisation of the MACRO model to representtransport through the soil of livestock faeces-derived E.coli. Soil Use <strong>and</strong> Management,19, 321–323.

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